Deck 4: Section 3: Applications of Differentiation

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Question
Find the open interval(s) on which <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> is increasing or decreasing.

A) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
B) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
C) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
D) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
E) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
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Question
A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> radians. The distance (in meters) the ball bearing rolls in t seconds is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> . Determine the value of <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> after one second. Round numerical values in your answer to one decimal place.

A) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Find the relative extremum of <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:   <div style=padding-top: 35px> by applying the First Derivative Test.

A) relative minimum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:   <div style=padding-top: 35px>
B) relative maximum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:   <div style=padding-top: 35px>
C) relative minimum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:   <div style=padding-top: 35px>
D) relative minimum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:   <div style=padding-top: 35px>
E) relative maximum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:   <div style=padding-top: 35px>
Question
Find the open interval(s) on which the function <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px> is increasing in the interval <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px> Round numerical values in your answer to three decimal places.

A) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
B) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
C) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
D) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
E) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
Question
The resistance R of a certain type of resistor is <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>

A) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Identify the open intervals where the function <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px> is increasing or decreasing.

A) decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px> ; increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px>
B) decreasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px>
C) increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px> ; decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px>
D) increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px> ; decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px>
E) increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px> ; decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   <div style=padding-top: 35px>
Question
A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second <div style=padding-top: 35px> radians. The distance (in meters) the ball bearing rolls in t seconds is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second <div style=padding-top: 35px> . Determine the speed of the ball bearing after t seconds.

A) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second <div style=padding-top: 35px> meters per second
B) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second <div style=padding-top: 35px> meters per second
C) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second <div style=padding-top: 35px> meters per second
D) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second <div style=padding-top: 35px> meters per second
E) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second <div style=padding-top: 35px> meters per second
Question
Find the relative minima of <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   <div style=padding-top: 35px> on the interval <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   <div style=padding-top: 35px> by applying the First Derivative Test. Round numerical values in your answer to three decimal places.

A) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   <div style=padding-top: 35px>
B) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   <div style=padding-top: 35px>
C) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   <div style=padding-top: 35px>
D) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   <div style=padding-top: 35px>
E) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   <div style=padding-top: 35px>
Question
Find the relative maxima of <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   <div style=padding-top: 35px> on the interval <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   <div style=padding-top: 35px> by applying the First Derivative Test. Round numerical values in your answer to three decimal places.

A) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   <div style=padding-top: 35px>
B) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   <div style=padding-top: 35px>
C) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   <div style=padding-top: 35px>
D) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   <div style=padding-top: 35px>
E) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   <div style=padding-top: 35px>
Question
The resistance R of a certain type of resistor is <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.

A) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Find the open interval(s) on which the function <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px> is increasing in the interval <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px> Round numerical values in your answer to three decimal places.

A) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
B) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
C) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
D) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
E) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   <div style=padding-top: 35px>
Question
Identify the open intervals on which the function <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> is increasing or decreasing.

A) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
B) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
C) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
D) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
E) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px> decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   <div style=padding-top: 35px>
Question
For the function <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px> : (a) Find the critical numbers of f (if any);
(b) Find the open intervals where the function is increasing or decreasing; and
(c) Apply the First Derivative Test to identify all relative extrema.
Use a graphing utility to confirm your results.

A) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px> ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
B) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px> ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
C) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px> ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
D) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px> ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px> ; relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
E) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px> ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   <div style=padding-top: 35px>
Question
Identify the open intervals where the function <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   <div style=padding-top: 35px> is increasing or decreasing.

A) decreasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   <div style=padding-top: 35px>
B) increasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   <div style=padding-top: 35px>
C) <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   <div style=padding-top: 35px>
D) decreasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   <div style=padding-top: 35px> ; increasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   <div style=padding-top: 35px>
E) <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   <div style=padding-top: 35px>
Question
Use the graph of the function <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px> given below to estimate the open intervals on which the function is increasing or decreasing. <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px>

A) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px> ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px>
B) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px> ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px>
C) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px> ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px>
D) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px> ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px>
E) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px> ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   <div style=padding-top: 35px>
Question
Find the critical number of the function <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> .

A) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
For the function <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> : (a) Find the critical numbers of f (if any);
(b) Find the open intervals where the function is increasing or decreasing; and
(c) Apply the First Derivative Test to identify all relative extrema.
Then use a graphing utility to confirm your results.

A) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
B) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
C) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; no relative min.
D) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
E) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px> ; relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   <div style=padding-top: 35px>
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Deck 4: Section 3: Applications of Differentiation
1
Find the open interval(s) on which <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   is increasing or decreasing.

A) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
B) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
C) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
D) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
E) increasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Find the open interval(s) on which   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
increasing on increasing on   decreasing on  decreasing on increasing on   decreasing on
2
A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   radians. The distance (in meters) the ball bearing rolls in t seconds is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   . Determine the value of <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)   after one second. Round numerical values in your answer to one decimal place.

A) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)
B) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)
C) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)
D) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)
E) <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the value of   after one second. Round numerical values in your answer to one decimal place.</strong> A)   B)   C)   D)   E)
3
Find the relative extremum of <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:   by applying the First Derivative Test.

A) relative minimum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:
B) relative maximum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:
C) relative minimum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:
D) relative minimum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:
E) relative maximum: <strong>Find the relative extremum of   by applying the First Derivative Test.</strong> A) relative minimum:   B) relative maximum:   C) relative minimum:   D) relative minimum:   E) relative maximum:
relative maximum: relative maximum:
4
Find the open interval(s) on which the function <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   is increasing in the interval <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   Round numerical values in your answer to three decimal places.

A) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
B) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
C) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
D) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
E) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
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The resistance R of a certain type of resistor is <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)

A) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)
B) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)
C) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)
D) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)
E) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find  </strong> A)   B)   C)   D)   E)
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Identify the open intervals where the function <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   is increasing or decreasing.

A) decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   ; increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:
B) decreasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:
C) increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   ; decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:
D) increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   ; decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:
E) increasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:   ; decreasing: <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing:   ; increasing:   B) decreasing on   C) increasing:   ; decreasing:   D) increasing:   ; decreasing:   E) increasing:   ; decreasing:
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A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second radians. The distance (in meters) the ball bearing rolls in t seconds is <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second . Determine the speed of the ball bearing after t seconds.

A) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second meters per second
B) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second meters per second
C) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second meters per second
D) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second meters per second
E) speed: <strong>A ball bearing is placed on an inclined plane and begins to roll. The angle of elevation of the plane is   radians. The distance (in meters) the ball bearing rolls in t seconds is   . Determine the speed of the ball bearing after t seconds.</strong> A) speed:   meters per second B) speed:   meters per second C) speed:   meters per second D) speed:   meters per second E) speed:   meters per second meters per second
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8
Find the relative minima of <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   on the interval <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.

A) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:
B) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:
C) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:
D) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:
E) relative minima: <strong>Find the relative minima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative minima:   B) relative minima:   C) relative minima:   D) relative minima:   E) relative minima:
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Find the relative maxima of <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   on the interval <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.

A) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:
B) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:
C) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:
D) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:
E) relative maxima: <strong>Find the relative maxima of   on the interval   by applying the First Derivative Test. Round numerical values in your answer to three decimal places.</strong> A) relative maxima:   B) relative maxima:   C) relative maxima:   D) relative maxima:   E) relative maxima:
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10
The resistance R of a certain type of resistor is <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.

A) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)
B) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)
C) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)
D) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)
E) <strong>The resistance R of a certain type of resistor is   where R is measured in ohms and the temperature T is measured in degrees Celsius. Use a computer algebra system to find the critical number of the function. Round numerical values in your answer to the nearest whole number.</strong> A)   B)   C)   D)   E)
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11
Find the open interval(s) on which the function <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   is increasing in the interval <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:   Round numerical values in your answer to three decimal places.

A) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
B) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
C) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
D) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
E) increasing on: <strong>Find the open interval(s) on which the function   is increasing in the interval   Round numerical values in your answer to three decimal places.</strong> A) increasing on:   B) increasing on:   C) increasing on:   D) increasing on:   E) increasing on:
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Identify the open intervals on which the function <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   is increasing or decreasing.

A) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
B) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
C) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
D) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
E) increasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on   decreasing on <strong>Identify the open intervals on which the function   is increasing or decreasing.</strong> A) increasing on   decreasing on   B) increasing on   decreasing on   C) increasing on   decreasing on   D) increasing on   decreasing on   E) increasing on   decreasing on
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13
For the function <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   : (a) Find the critical numbers of f (if any);
(b) Find the open intervals where the function is increasing or decreasing; and
(c) Apply the First Derivative Test to identify all relative extrema.
Use a graphing utility to confirm your results.

A) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
B) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
C) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
D) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
E) (a) <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Use a graphing utility to confirm your results.</strong> A) (a)   (b) increasing:   ; decreasing:   (c) relative max:   B) (a)   (b) increasing:   ; decreasing:   (c) relative max:   C) (a)   (b) decreasing:   ; increasing:   (c) relative min:   D) (a)   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   E) (a)   (b) decreasing:   ; increasing:   (c) relative min:
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14
Identify the open intervals where the function <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   is increasing or decreasing.

A) decreasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)
B) increasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)
C) <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)
D) decreasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)   ; increasing on <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)
E) <strong>Identify the open intervals where the function   is increasing or decreasing.</strong> A) decreasing on   B) increasing on   C)   D) decreasing on   ; increasing on   E)
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15
Use the graph of the function <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   given below to estimate the open intervals on which the function is increasing or decreasing. <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on

A) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on
B) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on
C) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on
D) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on
E) increasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on   ; decreasing on <strong>Use the graph of the function   given below to estimate the open intervals on which the function is increasing or decreasing.  </strong> A) increasing on   ; decreasing on   B) increasing on   ; decreasing on   C) increasing on   ; decreasing on   D) increasing on   ; decreasing on   E) increasing on   ; decreasing on
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Find the critical number of the function <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)   .

A) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)
B) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)
C) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)
D) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)
E) <strong>Find the critical number of the function   .</strong> A)   B)   C)   D)   E)
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For the function <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   : (a) Find the critical numbers of f (if any);
(b) Find the open intervals where the function is increasing or decreasing; and
(c) Apply the First Derivative Test to identify all relative extrema.
Then use a graphing utility to confirm your results.

A) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
B) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
C) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; no relative min.
D) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(b) increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(c) relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
E) (a) x = 0 , <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(b) decreasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; increasing: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
(c) relative min: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   ; relative max: <strong>For the function   : (a) Find the critical numbers of f (if any); (b) Find the open intervals where the function is increasing or decreasing; and (c) Apply the First Derivative Test to identify all relative extrema. Then use a graphing utility to confirm your results.</strong> A) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   B) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:   C) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; no relative min. D) (a) x = 0 ,   (b) increasing:   ; decreasing:   (c) relative max:   ; relative min:   E) (a) x = 0 ,   (b) decreasing:   ; increasing:   (c) relative min:   ; relative max:
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