Deck 1: Functions and Their Graphs

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Find the domain of the function. Find the domain of the function.  <div style=padding-top: 35px>
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Compare the graph of the following function with the graph of Compare the graph of the following function with the graph of    <div style=padding-top: 35px> Compare the graph of the following function with the graph of    <div style=padding-top: 35px>
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Evaluate the function at the specified value of the independent variable and simplify. Evaluate the function at the specified value of the independent variable and simplify.  <div style=padding-top: 35px>
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Evaluate the following function at the specified value of the independent variable and simplify. <strong>Evaluate the following function at the specified value of the independent variable and simplify.  </strong> A) 20 B) 0 C) -7 D) 13 E) undefined <div style=padding-top: 35px>

A) 20
B) 0
C) -7
D) 13
E) undefined
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Determine the domain and range of the inverse function Determine the domain and range of the inverse function   of the following function f .  <div style=padding-top: 35px> of the following function f . Determine the domain and range of the inverse function   of the following function f .  <div style=padding-top: 35px>
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Find the slope-intercept form of the line passing through the points. Find the slope-intercept form of the line passing through the points.  <div style=padding-top: 35px>
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Find the difference quotient and simplify your answer. Find the difference quotient and simplify your answer.  <div style=padding-top: 35px>
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Determine the domain of Determine the domain of    <div style=padding-top: 35px> Determine the domain of    <div style=padding-top: 35px>
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Hooke's Law states that the force F required to compress or stretch a spring (within its elastic limits) is proportional to the distance d that the spring is compressed or stretched
From its original length. That is, Fk= d, where k is the measure of the stiffness of the
Spring and is called the spring constant. The table below shows the elongation d in
Centimeters of a spring when a force of F kilograms is applied. <strong>Hooke's Law states that the force F required to compress or stretch a spring (within its elastic limits) is proportional to the distance d that the spring is compressed or stretched From its original length. That is, Fk= d, where k is the measure of the stiffness of the Spring and is called the spring constant. The table below shows the elongation d in Centimeters of a spring when a force of F kilograms is applied.   Find the equation of the line that seems to best fit the data.</strong> A) F =12.098d B) Fd= 3.024 C) F = 6.049d D) Fd= 4.537 E) F = 7.561d <div style=padding-top: 35px> Find the equation of the line that seems to best fit the data.

A) F =12.098d
B) Fd= 3.024
C) F = 6.049d
D) Fd= 4.537
E) F = 7.561d
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Which equation does not represent y as a function of x? Which equation does not represent y as a function of x?  <div style=padding-top: 35px>
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Given the following function, hx( ), find two functions f and g such that Given the following function, hx( ), find two functions f and g such that  <div style=padding-top: 35px>
Question
The scatter plots of different data are shown below. Determine whether there is a positive correlation, negative correlation, or no discernible correlation between the
Variables. <strong>The scatter plots of different data are shown below. Determine whether there is a positive correlation, negative correlation, or no discernible correlation between the Variables.  </strong> A) positive correlation B) negative correlation C) no discernible correlation <div style=padding-top: 35px>

A) positive correlation
B) negative correlation
C) no discernible correlation
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Determine algebraically whether the following function is one-to-one. Determine algebraically whether the following function is one-to-one.  <div style=padding-top: 35px>
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Determine an equation that may represented by the graph shown below. Determine an equation that may represented by the graph shown below.  <div style=padding-top: 35px>
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If f is an even function, determine if g is even, odd, or neither. ( <strong>If f is an even function, determine if g is even, odd, or neither. (  </strong> A) even B) odd C) cannot be determined D) neither <div style=padding-top: 35px>

A) even
B) odd
C) cannot be determined
D) neither
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Evaluate the following function for Evaluate the following function for   algebraically.  <div style=padding-top: 35px> algebraically. Evaluate the following function for   algebraically.  <div style=padding-top: 35px>
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Use the graph of Use the graph of  <div style=padding-top: 35px>
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Write the slope-intercept form of the equation of the line through the given point perpendicular to the given line. Write the slope-intercept form of the equation of the line through the given point perpendicular to the given line.  <div style=padding-top: 35px>
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The average lengths L of cellular phone calls in minutes from 1999 to 2004 are shown in the table below. <strong>The average lengths L of cellular phone calls in minutes from 1999 to 2004 are shown in the table below.   Use the regression feature of a graphing utility to find a linear model for the data. Let t Represent the year, with t = 9 corresponding to 1999. Use the model to predict the Average lengths of cellular phone calls for the year 2015. Round your answer to two Decimal places.</strong> A) 4.37 minutes B) 8.74 minutes C) 5.37 minutes D) 3.37 minutes E) 2.19 minutes <div style=padding-top: 35px> Use the regression feature of a graphing utility to find a linear model for the data. Let t
Represent the year, with t = 9 corresponding to 1999. Use the model to predict the
Average lengths of cellular phone calls for the year 2015. Round your answer to two
Decimal places.

A) 4.37 minutes
B) 8.74 minutes
C) 5.37 minutes
D) 3.37 minutes
E) 2.19 minutes
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Decide whether the two functions shown in the graph below appear to be inverse functions of each other. <strong>Decide whether the two functions shown in the graph below appear to be inverse functions of each other.  </strong> A) yes B) no C) not enough information <div style=padding-top: 35px>

A) yes
B) no
C) not enough information
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Deck 1: Functions and Their Graphs
1
Find the domain of the function. Find the domain of the function.
A
2
Compare the graph of the following function with the graph of Compare the graph of the following function with the graph of    Compare the graph of the following function with the graph of
B
3
Evaluate the function at the specified value of the independent variable and simplify. Evaluate the function at the specified value of the independent variable and simplify.
A
4
Evaluate the following function at the specified value of the independent variable and simplify. <strong>Evaluate the following function at the specified value of the independent variable and simplify.  </strong> A) 20 B) 0 C) -7 D) 13 E) undefined

A) 20
B) 0
C) -7
D) 13
E) undefined
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6
Determine the domain and range of the inverse function Determine the domain and range of the inverse function   of the following function f .  of the following function f . Determine the domain and range of the inverse function   of the following function f .
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7
Find the slope-intercept form of the line passing through the points. Find the slope-intercept form of the line passing through the points.
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8
Find the difference quotient and simplify your answer. Find the difference quotient and simplify your answer.
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9
Determine the domain of Determine the domain of    Determine the domain of
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10
Hooke's Law states that the force F required to compress or stretch a spring (within its elastic limits) is proportional to the distance d that the spring is compressed or stretched
From its original length. That is, Fk= d, where k is the measure of the stiffness of the
Spring and is called the spring constant. The table below shows the elongation d in
Centimeters of a spring when a force of F kilograms is applied. <strong>Hooke's Law states that the force F required to compress or stretch a spring (within its elastic limits) is proportional to the distance d that the spring is compressed or stretched From its original length. That is, Fk= d, where k is the measure of the stiffness of the Spring and is called the spring constant. The table below shows the elongation d in Centimeters of a spring when a force of F kilograms is applied.   Find the equation of the line that seems to best fit the data.</strong> A) F =12.098d B) Fd= 3.024 C) F = 6.049d D) Fd= 4.537 E) F = 7.561d Find the equation of the line that seems to best fit the data.

A) F =12.098d
B) Fd= 3.024
C) F = 6.049d
D) Fd= 4.537
E) F = 7.561d
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11
Which equation does not represent y as a function of x? Which equation does not represent y as a function of x?
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12
Given the following function, hx( ), find two functions f and g such that Given the following function, hx( ), find two functions f and g such that
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13
The scatter plots of different data are shown below. Determine whether there is a positive correlation, negative correlation, or no discernible correlation between the
Variables. <strong>The scatter plots of different data are shown below. Determine whether there is a positive correlation, negative correlation, or no discernible correlation between the Variables.  </strong> A) positive correlation B) negative correlation C) no discernible correlation

A) positive correlation
B) negative correlation
C) no discernible correlation
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14
Determine algebraically whether the following function is one-to-one. Determine algebraically whether the following function is one-to-one.
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15
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16
Determine an equation that may represented by the graph shown below. Determine an equation that may represented by the graph shown below.
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17
If f is an even function, determine if g is even, odd, or neither. ( <strong>If f is an even function, determine if g is even, odd, or neither. (  </strong> A) even B) odd C) cannot be determined D) neither

A) even
B) odd
C) cannot be determined
D) neither
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18
Evaluate the following function for Evaluate the following function for   algebraically.  algebraically. Evaluate the following function for   algebraically.
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19
Use the graph of Use the graph of
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20
Write the slope-intercept form of the equation of the line through the given point perpendicular to the given line. Write the slope-intercept form of the equation of the line through the given point perpendicular to the given line.
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45
The average lengths L of cellular phone calls in minutes from 1999 to 2004 are shown in the table below. <strong>The average lengths L of cellular phone calls in minutes from 1999 to 2004 are shown in the table below.   Use the regression feature of a graphing utility to find a linear model for the data. Let t Represent the year, with t = 9 corresponding to 1999. Use the model to predict the Average lengths of cellular phone calls for the year 2015. Round your answer to two Decimal places.</strong> A) 4.37 minutes B) 8.74 minutes C) 5.37 minutes D) 3.37 minutes E) 2.19 minutes Use the regression feature of a graphing utility to find a linear model for the data. Let t
Represent the year, with t = 9 corresponding to 1999. Use the model to predict the
Average lengths of cellular phone calls for the year 2015. Round your answer to two
Decimal places.

A) 4.37 minutes
B) 8.74 minutes
C) 5.37 minutes
D) 3.37 minutes
E) 2.19 minutes
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55
Decide whether the two functions shown in the graph below appear to be inverse functions of each other. <strong>Decide whether the two functions shown in the graph below appear to be inverse functions of each other.  </strong> A) yes B) no C) not enough information

A) yes
B) no
C) not enough information
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