Deck 4: Exponential and Logarithmic Functions

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Question
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.241 B) undefined C) 1.707 D) 4.272 E) -1.707 <div style=padding-top: 35px> at <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.241 B) undefined C) 1.707 D) 4.272 E) -1.707 <div style=padding-top: 35px> . Round to 3 decimal places. (You may use your calculator.)

A) -2.241
B) undefined
C) 1.707
D) 4.272
E) -1.707
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Question
Let Q represent a mass of radioactive radium (226Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is <strong>Let Q represent a mass of radioactive radium (<sup>226</sup>Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is   Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.</strong> A) 3.67 g B) 4.00 g C) 0.25 g D) 0.92 g E) 0.00 g <div style=padding-top: 35px> Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.

A) 3.67 g
B) 4.00 g
C) 0.25 g
D) 0.92 g
E) 0.00 g
Question
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)   <div style=padding-top: 35px> without using a calculator.

A) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)   <div style=padding-top: 35px>
B) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)   <div style=padding-top: 35px>
C) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)   <div style=padding-top: 35px>
D) -1
E) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)   <div style=padding-top: 35px>
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Simplify the expression <strong>Simplify the expression   .</strong> A) The expression cannot be simplified. B) 2 C) 3 D) -3 E) -9 <div style=padding-top: 35px> .

A) The expression cannot be simplified.
B) 2
C) 3
D) -3
E) -9
Question
Rewrite the exponential equation <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in logarithmic form.

A) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 4.190 B) 4.590 C) 14.611 D) 5.412 E) 2.890 <div style=padding-top: 35px> at <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 4.190 B) 4.590 C) 14.611 D) 5.412 E) 2.890 <div style=padding-top: 35px> . Round to 3 decimal places.

A) 4.190
B) 4.590
C) 14.611
D) 5.412
E) 2.890
Question
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in terms of the common logarithm (base 10).

A) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in terms of the natural logarithm.

A) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Solve the equation <strong>Solve the equation   for x using the One-to-One Property.</strong> A) -9 B) -11 C) 11 D) 0 E) The equation has no solution. <div style=padding-top: 35px> for x using the One-to-One Property.

A) -9
B) -11
C) 11
D) 0
E) The equation has no solution.
Question
Identify the value of the function <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.061 B) 4.745 C) 3.061 D) 3.561 E) 2.561 <div style=padding-top: 35px> at <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.061 B) 4.745 C) 3.061 D) 3.561 E) 2.561 <div style=padding-top: 35px> . Round to 3 decimal places.

A) 2.061
B) 4.745
C) 3.061
D) 3.561
E) 2.561
Question
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) -12.354 B) 0.089 C) 0.039 D) -0.098 E) -0.081 <div style=padding-top: 35px> using the change of base formula. Round to 3 decimal places.

A) -12.354
B) 0.089
C) 0.039
D) -0.098
E) -0.081
Question
Write the exponential equation <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in logarithmic form.

A) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
What is the value of the function <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 26.822 B) 99.373 C) 45.553 D) 599.708 E) 7.721 <div style=padding-top: 35px> at <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 26.822 B) 99.373 C) 45.553 D) 599.708 E) 7.721 <div style=padding-top: 35px> ? Round to 3 decimal places.

A) 26.822
B) 99.373
C) 45.553
D) 599.708
E) 7.721
Question
Rewrite the logarithmic equation <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in exponential form.

A) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 2.468 B) 2.921 C) 11.060 D) 5.684 E) 0.342 <div style=padding-top: 35px> using the change of base formula. Round to 3 decimal places.

A) 2.468
B) 2.921
C) 11.060
D) 5.684
E) 0.342
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Identify the x-intercept of the function <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px> .

A) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
B) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
C) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
D) The function has no x-intercept.
E) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Simplify the expression <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)   <div style=padding-top: 35px> .

A) 9
B) <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)   <div style=padding-top: 35px>
C) <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)   <div style=padding-top: 35px>
D) The expression cannot be simplified.
E) <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)   <div style=padding-top: 35px>
Question
Identify the value of the function <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 6.572 B) 3.354 C) 2.854 D) 3.854 E) 4.354 <div style=padding-top: 35px> at <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 6.572 B) 3.354 C) 2.854 D) 3.854 E) 4.354 <div style=padding-top: 35px> . Round to 3 decimal places.

A) 6.572
B) 3.354
C) 2.854
D) 3.854
E) 4.354
Question
Rewrite the exponential equation <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in logarithmic form.

A) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
An initial investment of $1000 grows at an annual interest rate of 7% compounded continuously. How long will it take to double the investment?

A) 10.29 years
B) 9.29 years
C) 9.90 years
D) 10.90 years
E) 1 year
Question
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) 2.079 B) -13.038 C) 13.038 D) -6.125 E) undefined <div style=padding-top: 35px> at <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) 2.079 B) -13.038 C) 13.038 D) -6.125 E) undefined <div style=padding-top: 35px> . Round to 3 decimal places. (You may use your calculator.)

A) 2.079
B) -13.038
C) 13.038
D) -6.125
E) undefined
Question
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A) 3 B) 2 C) 1.5 D) 0.75 E) 1 <div style=padding-top: 35px> without using a calculator.

A) 3
B) 2
C) 1.5
D) 0.75
E) 1
Question
Simplify the expression <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified. <div style=padding-top: 35px> .

A) <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified. <div style=padding-top: 35px>
B) <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified. <div style=padding-top: 35px>
C) 3
D) <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified. <div style=padding-top: 35px>
E) The expression cannot be simplified.
Question
Identify the x-intercept of the function <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px> .

A) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
B) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
C) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
D) The function has no x-intercept.
E) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   <div style=padding-top: 35px>
Question
Use the One-to-One Property to solve the following equation for x. <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>

A) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
B) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
C) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
D) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
E) 2
Question
Solve the equation <strong>Solve the equation   for x using the One-to-One Property.</strong> A) -1 B) -101 C) -99 D) The equation has no solution. E) 101 <div style=padding-top: 35px> for x using the One-to-One Property.

A) -1
B) -101
C) -99
D) The equation has no solution.
E) 101
Question
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 2.700 B) 2.075 C) 2.250 D) 5.203 E) 2.415 <div style=padding-top: 35px> at <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 2.700 B) 2.075 C) 2.250 D) 5.203 E) 2.415 <div style=padding-top: 35px> . Round to 3 decimal places.

A) 2.700
B) 2.075
C) 2.250
D) 5.203
E) 2.415
Question
Write the exponential equation <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in logarithmic form.

A) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
The chemical acidity of a solution is measured in units of pH: <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   <div style=padding-top: 35px> , where <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   <div style=padding-top: 35px> is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   <div style=padding-top: 35px> than pure water's, which has a pH of 7?

A) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   <div style=padding-top: 35px>
B) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   <div style=padding-top: 35px>
C) 7
D) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   <div style=padding-top: 35px>
E) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   <div style=padding-top: 35px>
Question
Solve for x: <strong>Solve for x:   . Round to 3 decimal places.</strong> A) 0.663 B) 1.362 C) 3.663 D) -1.362 E) no solution <div style=padding-top: 35px> . Round to 3 decimal places.

A) 0.663
B) 1.362
C) 3.663
D) -1.362
E) no solution
Question
Rewrite the logarithmic equation <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in exponential form.

A) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in terms of the natural logarithm.

A) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Let Q represent a mass of radioactive radium (226Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is <strong>Let Q represent a mass of radioactive radium (<sup>226</sup>Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is   Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.</strong> A) 0.00 g B) 4.00 g C) 0.92 g D) 3.67 g E) 0.25 g <div style=padding-top: 35px> Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.

A) 0.00 g
B) 4.00 g
C) 0.92 g
D) 3.67 g
E) 0.25 g
Question
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) -0.154 B) 0.323 C) -0.355 D) 3.093 E) 0.390 <div style=padding-top: 35px> using the change of base formula. Round to 3 decimal places.

A) -0.154
B) 0.323
C) -0.355
D) 3.093
E) 0.390
Question
What is the value of the function <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 76.822 B) 136.659 C) 451.920 D) 163.610 E) 38.606 <div style=padding-top: 35px> at <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 76.822 B) 136.659 C) 451.920 D) 163.610 E) 38.606 <div style=padding-top: 35px> ? Round to 3 decimal places.

A) 76.822
B) 136.659
C) 451.920
D) 163.610
E) 38.606
Question
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 0.402 B) 2.485 C) 9.411 D) 4.836 E) 2.100 <div style=padding-top: 35px> using the change of base formula. Round to 3 decimal places.

A) 0.402
B) 2.485
C) 9.411
D) 4.836
E) 2.100
Question
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in terms of the common logarithm (base 10).

A) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
The chemical acidity of a solution is measured in units of pH: <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px> , where <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px> is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px> than pure water's, which has a pH of 7?

A) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
B) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
C) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
D) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
E) 7
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Simplify the expression <strong>Simplify the expression   .</strong> A) The expression cannot be simplified. B) 3 C) -6 D) 1 E) -27 <div style=padding-top: 35px> .

A) The expression cannot be simplified.
B) 3
C) -6
D) 1
E) -27
Question
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.928 B) 3.391 C) -3.391 D) 2.150 E) undefined <div style=padding-top: 35px> at <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.928 B) 3.391 C) -3.391 D) 2.150 E) undefined <div style=padding-top: 35px> . Round to 3 decimal places. (You may use your calculator.)

A) -2.928
B) 3.391
C) -3.391
D) 2.150
E) undefined
Question
Solve for x: <strong>Solve for x:   . Round to 3 decimal places.</strong> A) 1.362 B) -1.362 C) 1.517 D) 0.517 E) no solution <div style=padding-top: 35px> . Round to 3 decimal places.

A) 1.362
B) -1.362
C) 1.517
D) 0.517
E) no solution
Question
Identify the value of the function <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.618 B) 3.118 C) 3.618 D) 4.118 E) 6.028 <div style=padding-top: 35px> at <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.618 B) 3.118 C) 3.618 D) 4.118 E) 6.028 <div style=padding-top: 35px> . Round to 3 decimal places.

A) 2.618
B) 3.118
C) 3.618
D) 4.118
E) 6.028
Question
Solve the equation <strong>Solve the equation   for x using the One-to-One Property.</strong> A) 11 B) -9 C) -11 D) 0 E) The equation has no solution. <div style=padding-top: 35px> for x using the One-to-One Property.

A) 11
B) -9
C) -11
D) 0
E) The equation has no solution.
Question
Let Q represent a mass of radioactive radium (226Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is <strong>Let Q represent a mass of radioactive radium (<sup>226</sup>Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is   Determine the quantity present after 300 years. Round to the nearest hundredth of a gram.</strong> A) 0.00 g B) 0.47 g C) 0.88 g D) 4.39 g E) 5.00 g <div style=padding-top: 35px> Determine the quantity present after 300 years. Round to the nearest hundredth of a gram.

A) 0.00 g
B) 0.47 g
C) 0.88 g
D) 4.39 g
E) 5.00 g
Question
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 5.287 B) 4.680 C) 20.055 D) 2.572 E) 1.690 <div style=padding-top: 35px> at <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 5.287 B) 4.680 C) 20.055 D) 2.572 E) 1.690 <div style=padding-top: 35px> . Round to 3 decimal places.

A) 5.287
B) 4.680
C) 20.055
D) 2.572
E) 1.690
Question
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A) 1.25 B) 2 C) 3 D) 2.5 E) 5 <div style=padding-top: 35px> without using a calculator.

A) 1.25
B) 2
C) 3
D) 2.5
E) 5
Question
Rewrite the logarithmic equation <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in exponential form.

A) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Rewrite the exponential equation <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in logarithmic form.

A) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px> without using a calculator.

A) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
B) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
C) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
D) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
E) -1
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Identify the x-intercept of the function <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept. <div style=padding-top: 35px> .

A) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept. <div style=padding-top: 35px>
B) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept. <div style=padding-top: 35px>
C) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept. <div style=padding-top: 35px>
D) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept. <div style=padding-top: 35px>
E) The function has no x-intercept.
Question
An initial investment of $6000 grows at an annual interest rate of 7% compounded continuously. How long will it take to double the investment?

A) 9.90 years
B) 1 year
C) 10.29 years
D) 10.90 years
E) 9.29 years
Question
Use the One-to-One Property to solve the following equation for x. <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)   <div style=padding-top: 35px>

A) 2
B) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)   <div style=padding-top: 35px>
Question
What is the value of the function <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 42.051 B) 37.296 C) 7.597 D) 26.492 E) 82.783 <div style=padding-top: 35px> at <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 42.051 B) 37.296 C) 7.597 D) 26.492 E) 82.783 <div style=padding-top: 35px> ? Round to 3 decimal places.

A) 42.051
B) 37.296
C) 7.597
D) 26.492
E) 82.783
Question
Write the exponential equation <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in logarithmic form.

A) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Graph the function using translations. <strong>Graph the function using translations.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>

A) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px> without using a calculator.

A) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
B) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
C) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
D) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 <div style=padding-top: 35px>
E) -1
Question
Find the value of b that would cause the graph of y = bx to look like the graph indicated. <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>

A) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in terms of the common logarithm (base 10).

A) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A) 1.25 B) 5 C) 2 D) 3 E) 2.5 <div style=padding-top: 35px> without using a calculator.

A) 1.25
B) 5
C) 2
D) 3
E) 2.5
Question
Use the One-to-One Property to solve the following equation for x. <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>

A) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
B) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
C) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
D) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2 <div style=padding-top: 35px>
E) 2
Question
An initial investment of $9000 grows at an annual interest rate of 5% compounded continuously. How long will it take to double the investment?

A) 13.86 years
B) 14.86 years
C) 14.40 years
D) 13.40 years
E) 1 year
Question
Graph the function. <strong>Graph the function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>

A) <strong>Graph the function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Graph the function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Graph the function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Graph the function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> in terms of the natural logarithm.

A) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Simplify the expression <strong>Simplify the expression   .</strong> A) 4 B) -12 C) 1 D) -108 E) The expression cannot be simplified. <div style=padding-top: 35px> .

A) 4
B) -12
C) 1
D) -108
E) The expression cannot be simplified.
Question
The chemical acidity of a solution is measured in units of pH: <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px> , where <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px> is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px> than pure water's, which has a pH of 7?

A) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
B) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
C) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
D) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 <div style=padding-top: 35px>
E) 7
Question
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 0.630 B) -0.692 C) -1.745 D) -0.573 E) 0.273 <div style=padding-top: 35px> using the change of base formula. Round to 3 decimal places.

A) 0.630
B) -0.692
C) -1.745
D) -0.573
E) 0.273
Question
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 3.738 B) 0.521 C) 1.921 D) 7.273 E) 1.623 <div style=padding-top: 35px> using the change of base formula. Round to 3 decimal places.

A) 3.738
B) 0.521
C) 1.921
D) 7.273
E) 1.623
Question
Solve for x: <strong>Solve for x:   . Round to 3 decimal places.</strong> A) 2.407 B) 0.407 C) 1.362 D) -1.362 E) no solution <div style=padding-top: 35px> . Round to 3 decimal places.

A) 2.407
B) 0.407
C) 1.362
D) -1.362
E) no solution
Question
Simplify the expression <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified. <div style=padding-top: 35px> .

A) <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified. <div style=padding-top: 35px>
B) <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified. <div style=padding-top: 35px>
C) 6
D) <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified. <div style=padding-top: 35px>
E) The expression cannot be simplified.
Question
Identify the graph of the function. <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>

A) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
Question
Graph the exponential function. <strong>Graph the exponential function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>

A) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
B) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
C) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
D) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)   <div style=padding-top: 35px>
Question
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px> to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   <div style=padding-top: 35px>
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Deck 4: Exponential and Logarithmic Functions
1
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.241 B) undefined C) 1.707 D) 4.272 E) -1.707 at <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.241 B) undefined C) 1.707 D) 4.272 E) -1.707 . Round to 3 decimal places. (You may use your calculator.)

A) -2.241
B) undefined
C) 1.707
D) 4.272
E) -1.707
-1.707
2
Let Q represent a mass of radioactive radium (226Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is <strong>Let Q represent a mass of radioactive radium (<sup>226</sup>Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is   Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.</strong> A) 3.67 g B) 4.00 g C) 0.25 g D) 0.92 g E) 0.00 g Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.

A) 3.67 g
B) 4.00 g
C) 0.25 g
D) 0.92 g
E) 0.00 g
3.67 g
3
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)   without using a calculator.

A) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)
B) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)
C) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)
D) -1
E) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D) -1 E)
4
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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5
Simplify the expression <strong>Simplify the expression   .</strong> A) The expression cannot be simplified. B) 2 C) 3 D) -3 E) -9 .

A) The expression cannot be simplified.
B) 2
C) 3
D) -3
E) -9
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6
Rewrite the exponential equation <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   in logarithmic form.

A) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
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7
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 4.190 B) 4.590 C) 14.611 D) 5.412 E) 2.890 at <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 4.190 B) 4.590 C) 14.611 D) 5.412 E) 2.890 . Round to 3 decimal places.

A) 4.190
B) 4.590
C) 14.611
D) 5.412
E) 2.890
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8
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   in terms of the common logarithm (base 10).

A) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
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9
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   in terms of the natural logarithm.

A) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
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10
Solve the equation <strong>Solve the equation   for x using the One-to-One Property.</strong> A) -9 B) -11 C) 11 D) 0 E) The equation has no solution. for x using the One-to-One Property.

A) -9
B) -11
C) 11
D) 0
E) The equation has no solution.
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11
Identify the value of the function <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.061 B) 4.745 C) 3.061 D) 3.561 E) 2.561 at <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.061 B) 4.745 C) 3.061 D) 3.561 E) 2.561 . Round to 3 decimal places.

A) 2.061
B) 4.745
C) 3.061
D) 3.561
E) 2.561
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12
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) -12.354 B) 0.089 C) 0.039 D) -0.098 E) -0.081 using the change of base formula. Round to 3 decimal places.

A) -12.354
B) 0.089
C) 0.039
D) -0.098
E) -0.081
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13
Write the exponential equation <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   in logarithmic form.

A) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
B) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
C) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
D) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
E) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
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14
What is the value of the function <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 26.822 B) 99.373 C) 45.553 D) 599.708 E) 7.721 at <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 26.822 B) 99.373 C) 45.553 D) 599.708 E) 7.721 ? Round to 3 decimal places.

A) 26.822
B) 99.373
C) 45.553
D) 599.708
E) 7.721
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15
Rewrite the logarithmic equation <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   in exponential form.

A) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
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16
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 2.468 B) 2.921 C) 11.060 D) 5.684 E) 0.342 using the change of base formula. Round to 3 decimal places.

A) 2.468
B) 2.921
C) 11.060
D) 5.684
E) 0.342
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17
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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18
Identify the x-intercept of the function <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   .

A) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
B) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
C) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
D) The function has no x-intercept.
E) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
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19
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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20
Simplify the expression <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)   .

A) 9
B) <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)
C) <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)
D) The expression cannot be simplified.
E) <strong>Simplify the expression   .</strong> A) 9 B)   C)   D) The expression cannot be simplified. E)
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21
Identify the value of the function <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 6.572 B) 3.354 C) 2.854 D) 3.854 E) 4.354 at <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 6.572 B) 3.354 C) 2.854 D) 3.854 E) 4.354 . Round to 3 decimal places.

A) 6.572
B) 3.354
C) 2.854
D) 3.854
E) 4.354
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22
Rewrite the exponential equation <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   in logarithmic form.

A) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
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23
An initial investment of $1000 grows at an annual interest rate of 7% compounded continuously. How long will it take to double the investment?

A) 10.29 years
B) 9.29 years
C) 9.90 years
D) 10.90 years
E) 1 year
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24
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) 2.079 B) -13.038 C) 13.038 D) -6.125 E) undefined at <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) 2.079 B) -13.038 C) 13.038 D) -6.125 E) undefined . Round to 3 decimal places. (You may use your calculator.)

A) 2.079
B) -13.038
C) 13.038
D) -6.125
E) undefined
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25
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A) 3 B) 2 C) 1.5 D) 0.75 E) 1 without using a calculator.

A) 3
B) 2
C) 1.5
D) 0.75
E) 1
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26
Simplify the expression <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified. .

A) <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified.
B) <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified.
C) 3
D) <strong>Simplify the expression   .</strong> A)   B)   C) 3 D)   E) The expression cannot be simplified.
E) The expression cannot be simplified.
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27
Identify the x-intercept of the function <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)   .

A) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
B) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
C) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
D) The function has no x-intercept.
E) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D) The function has no x-intercept. E)
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28
Use the One-to-One Property to solve the following equation for x. <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2

A) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
B) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
C) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
D) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
E) 2
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29
Solve the equation <strong>Solve the equation   for x using the One-to-One Property.</strong> A) -1 B) -101 C) -99 D) The equation has no solution. E) 101 for x using the One-to-One Property.

A) -1
B) -101
C) -99
D) The equation has no solution.
E) 101
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30
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 2.700 B) 2.075 C) 2.250 D) 5.203 E) 2.415 at <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 2.700 B) 2.075 C) 2.250 D) 5.203 E) 2.415 . Round to 3 decimal places.

A) 2.700
B) 2.075
C) 2.250
D) 5.203
E) 2.415
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31
Write the exponential equation <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   in logarithmic form.

A) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
B) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
C) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
D) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
E) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
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32
The chemical acidity of a solution is measured in units of pH: <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   , where <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)   than pure water's, which has a pH of 7?

A) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)
B) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)
C) 7
D) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)
E) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.4, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C) 7 D)   E)
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33
Solve for x: <strong>Solve for x:   . Round to 3 decimal places.</strong> A) 0.663 B) 1.362 C) 3.663 D) -1.362 E) no solution . Round to 3 decimal places.

A) 0.663
B) 1.362
C) 3.663
D) -1.362
E) no solution
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34
Rewrite the logarithmic equation <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   in exponential form.

A) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
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35
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   in terms of the natural logarithm.

A) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
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36
Let Q represent a mass of radioactive radium (226Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is <strong>Let Q represent a mass of radioactive radium (<sup>226</sup>Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is   Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.</strong> A) 0.00 g B) 4.00 g C) 0.92 g D) 3.67 g E) 0.25 g Determine the quantity present after 200 years. Round to the nearest hundredth of a gram.

A) 0.00 g
B) 4.00 g
C) 0.92 g
D) 3.67 g
E) 0.25 g
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37
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) -0.154 B) 0.323 C) -0.355 D) 3.093 E) 0.390 using the change of base formula. Round to 3 decimal places.

A) -0.154
B) 0.323
C) -0.355
D) 3.093
E) 0.390
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38
What is the value of the function <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 76.822 B) 136.659 C) 451.920 D) 163.610 E) 38.606 at <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 76.822 B) 136.659 C) 451.920 D) 163.610 E) 38.606 ? Round to 3 decimal places.

A) 76.822
B) 136.659
C) 451.920
D) 163.610
E) 38.606
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39
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 0.402 B) 2.485 C) 9.411 D) 4.836 E) 2.100 using the change of base formula. Round to 3 decimal places.

A) 0.402
B) 2.485
C) 9.411
D) 4.836
E) 2.100
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40
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   in terms of the common logarithm (base 10).

A) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
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41
The chemical acidity of a solution is measured in units of pH: <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 , where <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 than pure water's, which has a pH of 7?

A) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
B) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
C) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
D) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.3, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
E) 7
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42
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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43
Simplify the expression <strong>Simplify the expression   .</strong> A) The expression cannot be simplified. B) 3 C) -6 D) 1 E) -27 .

A) The expression cannot be simplified.
B) 3
C) -6
D) 1
E) -27
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44
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.928 B) 3.391 C) -3.391 D) 2.150 E) undefined at <strong>Evaluate the function   at   . Round to 3 decimal places. (You may use your calculator.)</strong> A) -2.928 B) 3.391 C) -3.391 D) 2.150 E) undefined . Round to 3 decimal places. (You may use your calculator.)

A) -2.928
B) 3.391
C) -3.391
D) 2.150
E) undefined
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45
Solve for x: <strong>Solve for x:   . Round to 3 decimal places.</strong> A) 1.362 B) -1.362 C) 1.517 D) 0.517 E) no solution . Round to 3 decimal places.

A) 1.362
B) -1.362
C) 1.517
D) 0.517
E) no solution
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46
Identify the value of the function <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.618 B) 3.118 C) 3.618 D) 4.118 E) 6.028 at <strong>Identify the value of the function   at   . Round to 3 decimal places.</strong> A) 2.618 B) 3.118 C) 3.618 D) 4.118 E) 6.028 . Round to 3 decimal places.

A) 2.618
B) 3.118
C) 3.618
D) 4.118
E) 6.028
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47
Solve the equation <strong>Solve the equation   for x using the One-to-One Property.</strong> A) 11 B) -9 C) -11 D) 0 E) The equation has no solution. for x using the One-to-One Property.

A) 11
B) -9
C) -11
D) 0
E) The equation has no solution.
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48
Let Q represent a mass of radioactive radium (226Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is <strong>Let Q represent a mass of radioactive radium (<sup>226</sup>Ra) (in grams), whose half-life is 1599 years. The quantity of radium present after t years is   Determine the quantity present after 300 years. Round to the nearest hundredth of a gram.</strong> A) 0.00 g B) 0.47 g C) 0.88 g D) 4.39 g E) 5.00 g Determine the quantity present after 300 years. Round to the nearest hundredth of a gram.

A) 0.00 g
B) 0.47 g
C) 0.88 g
D) 4.39 g
E) 5.00 g
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49
Evaluate the function <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 5.287 B) 4.680 C) 20.055 D) 2.572 E) 1.690 at <strong>Evaluate the function   at   . Round to 3 decimal places.</strong> A) 5.287 B) 4.680 C) 20.055 D) 2.572 E) 1.690 . Round to 3 decimal places.

A) 5.287
B) 4.680
C) 20.055
D) 2.572
E) 1.690
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50
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A) 1.25 B) 2 C) 3 D) 2.5 E) 5 without using a calculator.

A) 1.25
B) 2
C) 3
D) 2.5
E) 5
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51
Rewrite the logarithmic equation <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)   in exponential form.

A) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithmic equation   in exponential form.</strong> A)   B)   C)   D)   E)
Unlock Deck
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52
Rewrite the exponential equation <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   in logarithmic form.

A) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
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53
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 without using a calculator.

A) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
B) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
C) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
D) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
E) -1
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54
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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55
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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56
Identify the x-intercept of the function <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept. .

A) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept.
B) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept.
C) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept.
D) <strong>Identify the x-intercept of the function   .</strong> A)   B)   C)   D)   E) The function has no x-intercept.
E) The function has no x-intercept.
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57
An initial investment of $6000 grows at an annual interest rate of 7% compounded continuously. How long will it take to double the investment?

A) 9.90 years
B) 1 year
C) 10.29 years
D) 10.90 years
E) 9.29 years
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58
Use the One-to-One Property to solve the following equation for x. <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)

A) 2
B) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)
C) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)
D) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)
E) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A) 2 B)   C)   D)   E)
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59
What is the value of the function <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 42.051 B) 37.296 C) 7.597 D) 26.492 E) 82.783 at <strong>What is the value of the function   at   ? Round to 3 decimal places.</strong> A) 42.051 B) 37.296 C) 7.597 D) 26.492 E) 82.783 ? Round to 3 decimal places.

A) 42.051
B) 37.296
C) 7.597
D) 26.492
E) 82.783
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60
Write the exponential equation <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)   in logarithmic form.

A) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
B) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
C) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
D) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
E) <strong>Write the exponential equation   in logarithmic form.</strong> A)   B)   C)   D)   E)
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61
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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62
Graph the function using translations. <strong>Graph the function using translations.  </strong> A)   B)   C)   D)

A) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)
B) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)
C) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)
D) <strong>Graph the function using translations.  </strong> A)   B)   C)   D)
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63
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1 without using a calculator.

A) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
B) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
C) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
D) <strong>Find the exact value of   without using a calculator.</strong> A)   B)   C)   D)   E) -1
E) -1
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64
Find the value of b that would cause the graph of y = bx to look like the graph indicated. <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)

A) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)
B) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)
C) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)
D) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)
E) <strong>Find the value of b that would cause the graph of y = b<sup>x </sup> to look like the graph indicated.  </strong> A)   B)   C)   D)   E)
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65
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)   in terms of the common logarithm (base 10).

A) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithm   in terms of the common logarithm (base 10).</strong> A)   B)   C)   D)   E)
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66
Find the exact value of <strong>Find the exact value of   without using a calculator.</strong> A) 1.25 B) 5 C) 2 D) 3 E) 2.5 without using a calculator.

A) 1.25
B) 5
C) 2
D) 3
E) 2.5
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67
Use the One-to-One Property to solve the following equation for x. <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2

A) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
B) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
C) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
D) <strong>Use the One-to-One Property to solve the following equation for x.  </strong> A)   B)   C)   D)   E) 2
E) 2
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68
An initial investment of $9000 grows at an annual interest rate of 5% compounded continuously. How long will it take to double the investment?

A) 13.86 years
B) 14.86 years
C) 14.40 years
D) 13.40 years
E) 1 year
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69
Graph the function. <strong>Graph the function.  </strong> A)   B)   C)   D)

A) <strong>Graph the function.  </strong> A)   B)   C)   D)
B) <strong>Graph the function.  </strong> A)   B)   C)   D)
C) <strong>Graph the function.  </strong> A)   B)   C)   D)
D) <strong>Graph the function.  </strong> A)   B)   C)   D)
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70
Rewrite the logarithm <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)   in terms of the natural logarithm.

A) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
B) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
C) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
D) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
E) <strong>Rewrite the logarithm   in terms of the natural logarithm.</strong> A)   B)   C)   D)   E)
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71
Simplify the expression <strong>Simplify the expression   .</strong> A) 4 B) -12 C) 1 D) -108 E) The expression cannot be simplified. .

A) 4
B) -12
C) 1
D) -108
E) The expression cannot be simplified.
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72
The chemical acidity of a solution is measured in units of pH: <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 , where <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7 than pure water's, which has a pH of 7?

A) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
B) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
C) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
D) <strong>The chemical acidity of a solution is measured in units of pH:   , where   is the hydrogen ion concentration in the solution. If a sample of rain has a pH of 3.2, how many times higher is its   than pure water's, which has a pH of 7?</strong> A)   B)   C)   D)   E) 7
E) 7
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73
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 0.630 B) -0.692 C) -1.745 D) -0.573 E) 0.273 using the change of base formula. Round to 3 decimal places.

A) 0.630
B) -0.692
C) -1.745
D) -0.573
E) 0.273
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74
Evaluate the logarithm <strong>Evaluate the logarithm   using the change of base formula. Round to 3 decimal places.</strong> A) 3.738 B) 0.521 C) 1.921 D) 7.273 E) 1.623 using the change of base formula. Round to 3 decimal places.

A) 3.738
B) 0.521
C) 1.921
D) 7.273
E) 1.623
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75
Solve for x: <strong>Solve for x:   . Round to 3 decimal places.</strong> A) 2.407 B) 0.407 C) 1.362 D) -1.362 E) no solution . Round to 3 decimal places.

A) 2.407
B) 0.407
C) 1.362
D) -1.362
E) no solution
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76
Simplify the expression <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified. .

A) <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified.
B) <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified.
C) 6
D) <strong>Simplify the expression   .</strong> A)   B)   C) 6 D)   E) The expression cannot be simplified.
E) The expression cannot be simplified.
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77
Identify the graph of the function. <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)

A) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)
B) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)
C) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)
D) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)
E) <strong>Identify the graph of the function.  </strong> A)   B)   C)   D)   E)
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78
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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79
Graph the exponential function. <strong>Graph the exponential function.  </strong> A)   B)   C)   D)

A) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)
B) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)
C) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)
D) <strong>Graph the exponential function.  </strong> A)   B)   C)   D)
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80
Condense the expression <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)   to the logarithm of a single term.

A) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
B) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
C) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
D) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
E) <strong>Condense the expression   to the logarithm of a single term.</strong> A)   B)   C)   D)   E)
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Unlock Deck
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