Deck 2: Derivatives
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Deck 2: Derivatives
1
If find the domain of
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
2
Choose an equation from the following that expresses the fact that a function f is continuous at the number 6 .
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
3
The cost (in dollars) of producing x units of a certain commodity is
Find the average rate of change with respect to x when the production level is changed from 



4
At what point is the function not differentiable.
A) 4
B) 0
C) 1
D) -1
E) -4
A) 4
B) 0
C) 1
D) -1
E) -4
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5
Determine where f is discontinuous.
A)
B) 0 only
C) only
D) 11 only
E)
A)
B) 0 only
C) only
D) 11 only
E)
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6
Find an equation of the tangent line to the curve at the point .
A)
B)
C)
D)
E) None of these
A)
B)
C)
D)
E) None of these
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7
Find the slope of the tangent line to the curve at the point .
A)
B) 40
C)
D) 4
E) 25
A)
B) 40
C)
D) 4
E) 25
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8
Find an equation of the tangent line to the parabola at the point .
A)
B) .
C)
D) .
E)
A)
B) .
C)
D) .
E)
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9
Use continuity to evaluate the limit.
A)
B)
C)
D) 0
E) 1
A)
B)
C)
D) 0
E) 1
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10
Let Find the following limits.
A) 3 and 1
B) 3 and
C) both 1
D) both 3
E) 3 and
A) 3 and 1
B) 3 and
C) both 1
D) both 3
E) 3 and
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11
For the function f whose graph is shown, state the following.



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12
The symbol can be used to denote the greatest integer function, which is defined by the greatest integer n such that Use the graph of the function to find the indicated limit, if it exists.
A) 1
B) 0.7
C) 0
D) -0.7
A) 1
B) 0.7
C) 0
D) -0.7
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13
Use the definition of the derivative to find
A)
B)
C) 27
D) 18
E) does not exist
A)
B)
C) 27
D) 18
E) does not exist
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14
If find the defination of derivative to find
A)
B)
C)
D)
E) None of these
A)
B)
C)
D)
E) None of these
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15
The cost (in dollars) of producing x units of a certain commodity is Find the instantaneous rate of change with respect to x when (This is called the marginal cost.)
A)
B)
C)
D) .
E)
A)
B)
C)
D) .
E)
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16
If a cylindrical tank holds
gallons of water, which can be drained from the bottom of the tank in an hour, then Torricelli's Law gives the volume of water remaining in the tank after t minutes as
Find the rate at which the water is flowing out of the tank (the instantaneous rate of change of V with respect to t) as a function of t.


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17
Find the vertical asymptotes of the function.
A)
B)
C)
D)
E) None of these
A)
B)
C)
D)
E) None of these
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18
If the tangent line to passes through the point
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
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19
If an equation of the tangent line to the curve at the point where
A)
B)
C)
D)
E) None of these
A)
B)
C)
D)
E) None of these
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20
Find the derivative of the function. 

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21
A machinist is required to manufacture a circular metal disk with area 1000 . If the machinist is allowed an error tolerance of in the area of the disk, how close to the ideal radius must the machinist control the radius? Round your answer to the nearest hundred thousandth.
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
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22
Write an equation that expresses the fact that a function f is continuous at the number
.

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23
For what value of the constant c is the function f continuous on
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
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24
How would you define in order to make f continuous at 3 ?
A)
B)
C)
D)
E) None of these
A)
B)
C)
D)
E) None of these
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25
Find a function g that agrees with f for
and is continuous on
. 



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26
Use the given graph of
to find a number
such that
whenever
.
Round your answer to two decimal places.




Round your answer to two decimal places.

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27
If f and g are continuous functions with
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
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28
How close to
do we have to take x so that 


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29
Use a graph to find a number
such that
whenever
.
Round your answer to the nearest thousandth.



Round your answer to the nearest thousandth.
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30
How would you define
in order to make f continuous at
? 



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31
If f and g are continuous functions with 

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32
Use a graph to find a number
such that
whenever
.



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33
Find the point at which the given function is discontinuous. 

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34
For
determine whether f is continuous from the right, from the left, or neither. 


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35
Find the limit.
A) 7
B)
C)
D) 6
E) does not exist
A) 7
B)
C)
D) 6
E) does not exist
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36
Evaluate the limit.
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
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37
Determine where f is discontinuous. 

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38
Use the definition of the limit to find values of
that corresponds to
.
Round your answer to the nearest thousandth.



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39
Which of the given functions is discontinuous?
A)
B)
A)
B)
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40
If for all x, find .
A)
B) 1
C)
D) 8
E) does not exist
A)
B) 1
C)
D) 8
E) does not exist
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41
If , then if exists, find the value where it exists.
A)
B) 1
C)
D) 2
E) 3
A)
B) 1
C)
D) 2
E) 3
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42
If find
A) 1
B) 35
C) 0
D)
E)
A) 1
B) 35
C) 0
D)
E)
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43
Find the limit .
A) -1
B) -12
C) 6
D) 12
A) -1
B) -12
C) 6
D) 12
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44
Find the limit .
A)
B)
C)
D) 1
A)
B)
C)
D) 1
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45
Find the limit. 

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46
Find the limit
.

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47
Find the limit , if it exists.
A) 3
B) 5
C) 2
D) Does not exist
A) 3
B) 5
C) 2
D) Does not exist
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48
Evaluate the limit, if it exists.
A)
B)
C)
D) 1
E) does not exist
A)
B)
C)
D) 1
E) does not exist
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49
Evaluate the limit. 

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50
If
for all x find the limit. 


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51
Evaluate the limit. 

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52
Find the limit by evaluating the derivative of a suitable function at an appropriate value of x. (Hint: Use the definition of the derivative.)
A) 25
B) 75
C) 0
D)
A) 25
B) 75
C) 0
D)
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53
Is there a number a such that exists? If so, find the value of a and the value of the limit.
A) , limit equals
B) , limit equals
C) , limit equals
D) , limit equals
E) , limit equals
A) , limit equals
B) , limit equals
C) , limit equals
D) , limit equals
E) , limit equals
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54
Find the limit. 

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55
Find the limit.
A)
B)
C) 0
D) 3
E) 7
A)
B)
C) 0
D) 3
E) 7
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56
Find the limit.
A) 18
B) 0
C) 9
D) 5
E) 11
A) 18
B) 0
C) 9
D) 5
E) 11
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57
Evaluate .
A) 0
B) -2
C) 2
D) Undefined
A) 0
B) -2
C) 2
D) Undefined
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58
Evaluate the limit. 

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59
Evaluate the limit. 

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60
Find the limit , if it exists.
A) Does not exist
B)
C)
D)
A) Does not exist
B)
C)
D)
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61
Evaluate the function
at the given numbers (correct to six decimal places). Use the results to guess the value of the limit




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62
Complete the table by computing
at the given values of x, accurate to five decimal places. Use the results to guess at the indicated limit, if it exists, to three decimal places.
x
4.9
4.99
4.999
5.001
5.01
5.1


4.9
4.99
4.999
5.001
5.01
5.1

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63
Use the graph of the function to state the value of if it exists.
A)
B) 1
C)
D) ∞
E) does not exist
A)
B) 1
C)
D) ∞
E) does not exist
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64
Write the expression as a derivative of a function of x. 

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65
By graphing the function
and zooming in toward the point where the graph crosses the y-axis, estimate the value of 


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66
Use the graph of to guess at the limit , if it exists. 
A) 3
B) Does not exist
C) 2
D) 1

A) 3
B) Does not exist
C) 2
D) 1
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67
Use the graph of the function to state the value of , if it exists.
A) -∞
B)
C)
D) ∞
E) does not exist
A) -∞
B)
C)
D) ∞
E) does not exist
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68
Use the graph of the function to find each limit.
,
, 




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69
Complete the table by computing
at the given values of x, accurate to five decimal places. Use the results to guess at the indicated limit, if it exists, to three decimal places.











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70
If a ball is thrown into the air with a velocity of , its height (in feet) after t seconds is given by . Find the velocity when
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
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71
Consider the following function.
Determine the values of a for which
exists.


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72
Find the vertical asymptotes of the function. 

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73
Estimate the value of the following limit by graphing the function . Round your answer correct to two decimal places.
A)
B)
C)
D) 3.18
E)
A)
B)
C)
D) 3.18
E)
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74
If a rock is thrown upward on the planet Mars with a velocity of , its height in meters t seconds later is given by . Find the average velocity over the time interval .
A)
B)
C)
D)
E)
A)
B)
C)
D)
E)
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75
Sketch the graph of the function f and evaluate
A)
1
B)
3
C)
3
D)
1
A)

1
B)

3
C)

3
D)

1
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76
Use the graph of the function to find each limit.
,
, 




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77
Sketch the graph of the function f and evaluate
A)
Does not exist
B)
2
C)
Does not exist
D)
5
A)

Does not exist
B)

2
C)

Does not exist
D)

5
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78
How close to 2 do we have to take x so that
is within a distance of 0.01 from 13?

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79
Complete the table by computing
at the given values of x, accurate to five decimal places. Use the results to guess at the indicated limit, if it exists, to three decimal places.
x










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80
Find the limit
, if it exists.

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