Deck 11: An Introduction to Calculus: Limits, Derivatives, and Integrals
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Deck 11: An Introduction to Calculus: Limits, Derivatives, and Integrals
1
Solve the problem.


B
2
Solve the problem.


B
3

B
4
Find the derivative of the function at the specified point.


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5

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6
Find the derivative of the function at the specified point.


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7

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8
Find the derivative of the function at the specified point.


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9
Find the derivative of the function at the specified point.


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10

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11
Find the derivative of the function at the specified point.


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12

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13
Find the derivative of the function at the specified point.


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14

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15
Solve the problem.


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16
Solve the problem.


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17
Solve the problem.


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18

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19
Find the derivative of the function at the specified point.


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20

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21
Find the derivative of the function using the definition of derivative.


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22
Find the derivative of the function using the definition of derivative.


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23
Find the derivative of the function using the definition of derivative.


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24
Find the equation of the tangent line to the curve when x has the given value.


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25
Find the derivative of the function using the definition of derivative.


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26
Find the equation of the tangent line to the curve when x has the given value.


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27
Write the word or phrase that best completes each statement or answers the question.
Sketch a possible graph for a function f that has the stated properties.

Sketch a possible graph for a function f that has the stated properties.

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28
Find the equation of the tangent line to the curve when x has the given value.


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29
Find the derivative of the function using the definition of derivative.


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30
Find the equation of the tangent line to the curve when x has the given value.


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31
Find the derivative of the function using the definition of derivative.


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32
Find the equation of the tangent line to the curve when x has the given value.


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33
Find the derivative of the function using the definition of derivative.


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34
Find the equation of the tangent line to the curve when x has the given value.


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35
Find the derivative of the function using the definition of derivative.


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36
Use a graph of the function to find the derivative of the function at the given point, if it exists.


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37
Find the equation of the tangent line to the curve when x has the given value.


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38
Use a graph of the function to find the derivative of the function at the given point, if it exists.


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39
Write the word or phrase that best completes each statement or answers the question.
Sketch a possible graph for a function f that has the stated properties.

Sketch a possible graph for a function f that has the stated properties.

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40
Find the derivative of the function using the definition of derivative.


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41
Find the definite integral by computing an area.


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42
Find the definite integral by computing an area.


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43
Write the word or phrase that best completes each statement or answers the question.
Sketch a possible graph for a function f that has the stated properties.

Sketch a possible graph for a function f that has the stated properties.

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44
Choose the one alternative that best completes the statement or answers the question.
Solve the problem.

A) 16.5
B) 14.0
C) 12.0
D) 18.5
Solve the problem.

A) 16.5
B) 14.0
C) 12.0
D) 18.5
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45
Choose the one alternative that best completes the statement or answers the question.
Solve the problem.

A) 15.5
B) 12.5
C) 16.5
D) 10.0
Solve the problem.

A) 15.5
B) 12.5
C) 16.5
D) 10.0
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46
Write the word or phrase that best completes each statement or answers the question.
Sketch a possible graph for a function f that has the stated properties.

Sketch a possible graph for a function f that has the stated properties.

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47
Choose the one alternative that best completes the statement or answers the question.
Solve the problem.

A) 15.5
B) 18.75
C) 17.5
D) 14.5
Solve the problem.

A) 15.5
B) 18.75
C) 17.5
D) 14.5
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48
Compute the average of the RRAM and LRAM approximations to estimate the area between the graph of the function
and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

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49
Find the definite integral by computing an area.


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50
Choose the one alternative that best completes the statement or answers the question.
Solve the problem.

A) 20.7
B) 17.3
C) 15.7
D) 12.3
Solve the problem.

A) 20.7
B) 17.3
C) 15.7
D) 12.3
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51
Compute the average of the RRAM and LRAM approximations to estimate the area between the graph of the function
and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

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52
Find the definite integral by computing an area.


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53
Compute the average of the RRAM and LRAM approximations to estimate the area between the graph of the function
and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

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Unlock for access to all 167 flashcards in this deck.
Unlock Deck
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54
Choose the one alternative that best completes the statement or answers the question.
Solve the problem.

A) 14.5
B) 15.9
C) 9.6
D) 11.0
Solve the problem.

A) 14.5
B) 15.9
C) 9.6
D) 11.0
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55
Compute the average of the RRAM and LRAM approximations to estimate the area between the graph of the function
and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

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Unlock for access to all 167 flashcards in this deck.
Unlock Deck
k this deck
56
Find the definite integral by computing an area.


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57
Write the word or phrase that best completes each statement or answers the question.
Sketch a possible graph for a function f that has the stated properties.

Sketch a possible graph for a function f that has the stated properties.

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k this deck
58
Compute the average of the RRAM and LRAM approximations to estimate the area between the graph of the function
and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

and the x-axis over the given interval using the indicated number of subintervals. (The function is non-negative on the
given interval).

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Unlock for access to all 167 flashcards in this deck.
Unlock Deck
k this deck
59
Find the definite integral by computing an area.


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60
Write the word or phrase that best completes each statement or answers the question.
Sketch a possible graph for a function f that has the stated properties.

Sketch a possible graph for a function f that has the stated properties.

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61
Find the limit of the function by using direct substitution.


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62
Solve the problem.


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63
It can be shown that the area enclosed between the x-axis and one arch of the sine curve is 2. Use this fact to compute the
definite integral.

definite integral.

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64
It can be shown that the area enclosed between the x-axis and one arch of the sine curve is 2. Use this fact to compute the
definite integral.

definite integral.

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65
Find the limit of the function by using direct substitution.


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66
Find the definite integral by computing an area.


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67
Find the definite integral by computing an area.


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68
Solve the problem.
A ball is tossed straight up from level ground. The velocity of the ball at any time t (sec) is v(t) = 68 - 32t ft/sec. Find how far the ball has traveled at its maximum height.
A) 9 ft
B) 72 ft
C) 63 ft
D) 96 ft
A ball is tossed straight up from level ground. The velocity of the ball at any time t (sec) is v(t) = 68 - 32t ft/sec. Find how far the ball has traveled at its maximum height.
A) 9 ft
B) 72 ft
C) 63 ft
D) 96 ft
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69
Find the definite integral by computing an area.


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70
It can be shown that the area enclosed between the x-axis and one arch of the sine curve is 2. Use this fact to compute the
definite integral.

definite integral.

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71
It can be shown that the area enclosed between the x-axis and one arch of the sine curve is 2. Use this fact to compute the
definite integral.

definite integral.

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72
It can be shown that the area enclosed between the x-axis and one arch of the sine curve is 2. Use this fact to compute the
definite integral.

definite integral.

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73
It can be shown that the area enclosed between the x-axis and one arch of the sine curve is 2. Use this fact to compute the
definite integral.

definite integral.

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74
Solve the problem.


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75
Find the limit of the function by using direct substitution.


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76
Find the limit of the function by using direct substitution.


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77
Find the limit of the function by using direct substitution.


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78
Solve the problem.


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79
Solve the problem.


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80
Find the definite integral by computing an area.


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