Deck 3: Inverse Functions: Exponential, Logarithmic, and Inverse Trigonometric Functions
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Deck 3: Inverse Functions: Exponential, Logarithmic, and Inverse Trigonometric Functions
1
Use Newton's method to approximate the given number correct to eight decimal places 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)


2
The sum of two positive numbers is 16.What is the smallest possible value of the sum of their squares?
128
3
Find f, 
A)
B)
C)
D)
E) None of these

A)

B)

C)

D)

E) None of these

4
Given that the graph of f passes through the point (4,69)and that the slope of its tangent line at
is
,find f (1).
A) 6
B) 1
C) 12
D) 11
E) 0


A) 6
B) 1
C) 12
D) 11
E) 0
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5
Find the position function of a particle moving along a coordinate line that satisfies the given condition.
,s(1) = -1

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6
A particle is moving with the given data.Find the position of the particle
, 
A)
B)
C)
D)
E)


A)

B)

C)

D)

E)

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7
Find the most general antiderivative of the function. 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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8
Find two positive numbers whose product is 121 and whose sum is a minimum.
A) 6,24
B) 2,72
C) 4,36
D) 11,11
E) 3,48
A) 6,24
B) 2,72
C) 4,36
D) 11,11
E) 3,48
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9
A woman at a point A on the shore of a circular lake with radius 4 mi wants to arrive at the point C diametrically opposite on the other side of the lake in the shortest possible time.She can walk at the rate of 6 mi/h and row a boat at 2 mi/h .How should she proceed? (Find
).Round the result,if necessary,to the nearest hundredth. 
A) 0.44 radians
B) She should walk around the lake from point A to point C.
C) 0.46 radians
D) She should row from point A to point C radians
E) 0.62 radians


A) 0.44 radians
B) She should walk around the lake from point A to point C.
C) 0.46 radians
D) She should row from point A to point C radians
E) 0.62 radians
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10
Use Newton's method with the specified initial approximation
to find
,the third approximation to the root of the given equation.(Give your answer to four decimal places.) 



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11
What constant acceleration is required to increase the speed of a car from 20 ft/s to 45 ft/s in 4 s?
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12
Use Newton's method with the specified initial approximation
to find
,the third approximation to the root of the given equation.(Round your answer to four decimal places.) 
A)
B)
C)
D)
E)



A)

B)

C)

D)

E)

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13
Find f, 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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14
Find the position function of a particle moving along a coordinate line that satisfies the given conditions.
,s (0)= 5,v (0)= 0

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15
Find the most general antiderivative of the function. 

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16
Find the point on the line
that is closest to the origin.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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17
A car braked with a constant deceleration of 40
,producing skid marks measuring 60 ft before coming to a stop.How fast was the car traveling when the brakes were first applied?

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18
Use Newton's method with the specified initial approximation
to find
,the third approximation to the root of the given equation.(Round your answer to four decimal places.) 
A)
B)
C)
D)
E)



A)

B)

C)

D)

E)

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19
Find the most general antiderivative of the function. 

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20
Use Newton's method to approximate the indicated root of
in the interval
,correct to six decimal places.
Use
as the initial approximation.


Use

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21
Use the guidelines of this section to sketch the curve.
Select the graph of the curve.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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22
Find the maximum area of a rectangle that can be circumscribed about a given rectangle with length L = 8 and width W = 3. 

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23
The graph of the derivative
of a continuous function f is shown.On what intervals is f decreasing?
.
A)
B)
C)
D)
E) None of these


A)

B)

C)

D)

E) None of these
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24
Use the guidelines of this section to sketch the curve.
Select the graph of the curve.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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25
Use the guidelines of this section to sketch the curve.
Select the graph of the curve.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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26
Given 
(a)Find the intervals on which f is increasing or decreasing.
(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on
,decreasing on
and 
(b)Rel.max.
, rel.min. 
B) (a)Increasing on
and
decreasing on 
(b)Rel.max.
, rel.min. 
C) (a)Increasing on
and
decreasing on 
(b)Rel.max.
, rel.min. 
D) (a)Increasing on
,decreasing on
and 
(b)Rel.max.
, rel.min. 

(a)Find the intervals on which f is increasing or decreasing.
(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on



(b)Rel.max.


B) (a)Increasing on



(b)Rel.max.


C) (a)Increasing on



(b)Rel.max.


D) (a)Increasing on



(b)Rel.max.


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27
Given 
(a)Find the intervals on which f is increasing or decreasing.
(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on
, Decreasing on 
(b)Rel.min.
B) (a)Increasing on
(b)None
C) (a)Decreasing on
(b)None
D) (a)Increasing on
, Decreasing on 
(b)Rel.max.

(a)Find the intervals on which f is increasing or decreasing.
(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on


(b)Rel.min.

B) (a)Increasing on

(b)None
C) (a)Decreasing on

(b)None
D) (a)Increasing on


(b)Rel.max.

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28
The function
satisfies the hypotheses of Rolle's Theorem on the interval
.Find all values of c that satisfy the conclusion of the theorem.
A) -5
B) -6
C) -6,-4
D) -5,-4


A) -5
B) -6
C) -6,-4
D) -5,-4
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29
The graph of the first derivative
of a function f is shown below.At what values of x does f have a local maximum or minimum? 


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30
Given
. (a)Find the intervals on which f is increasing or decreasing.
(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on
, Decreasing on 
(b)Rel.max.
B) (a)Increasing on
, Decreasing on 
(b)Rel.min.
C) (a)Increasing on
, Decreasing on 
(b)Rel.min.
D) (a)Increasing on
, Decreasing on 
(b)Rel.max.

(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on


(b)Rel.max.

B) (a)Increasing on


(b)Rel.min.

C) (a)Increasing on


(b)Rel.min.

D) (a)Increasing on


(b)Rel.max.

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31
A farmer with 710 ft of fencing wants to enclose a rectangular area and then divide it into four pens with fencing parallel to one side of the rectangle.What is the largest possible total area of the four pens?
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32
Use the guidelines of this section to sketch the curve.
Select the graph of the curve.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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33
What is the minimum vertical distance between the parabolas
and
?


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34
A steel pipe is being carried down a hallway 14 ft wide.At the end of the hall there is a right-angled turn into a narrower hallway 6 ft wide.What is the length of the longest pipe that can be carried horizontally around the corner? 

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35
Determine where the graph of the function
is concave upward and where it is concave downward.Also,find all inflection points of the function.
A)
B)
C)
D)

A)

B)

C)

D)

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36
Given
(a)Find the intervals on which f is increasing or decreasing.
(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on
and
,decreasing on 
(b)Rel.max.
, rel.min. 
B) (a)Increasing on
and
decreasing on
and 
(b)Rel.max.
, rel.min. 
C) (a)Increasing on
and
,decreasing on
and 
(b)Rel.max.
, rel.min. 
D) (a)Increasing on
,decreasing on
and 
(b)Rel.max.
, rel.min. 

(a)Find the intervals on which f is increasing or decreasing.
(b)Find the relative maxima and relative minima of f.
A) (a)Increasing on



(b)Rel.max.


B) (a)Increasing on




(b)Rel.max.


C) (a)Increasing on




(b)Rel.max.


D) (a)Increasing on



(b)Rel.max.


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37
Use the Second Derivative Test to find the relative extrema,if any,of the function
.
A) Rel.max.
, rel.min. 
B) Rel.max.
, rel.min. 
C) Rel.max.
, rel.min. 
D) Rel.max.
, rel.min. 

A) Rel.max.


B) Rel.max.


C) Rel.max.


D) Rel.max.


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38
Use the guidelines of this section to sketch the curve.
Select the graph of the curve.
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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39
Find a cubic function
that has a local maximum value of 115 at 1 and a local minimum value of -1,184 at 7.

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40
Find the maximum or minimum point(s)of the function 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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41
Find the critical numbers of
.
A) 0,3,
B) 0,2,
C)
D) 0,2,
E) 0,3,

A) 0,3,

B) 0,2,

C)

D) 0,2,

E) 0,3,

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42
Find the absolute maximum and absolute minimum values,if any,of the function
on [0,25]
A) Abs.max.
. abs.min. ![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_aff3_87fe_334048a10e66_TB2067_11.jpg)
B) Abs.max.
. abs.min. ![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_d705_87fe_05d7d01c2dff_TB2067_11.jpg)
C) Abs.max.
. abs.min. ![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_fe17_87fe_7dd1395f282e_TB2067_11.jpg)
D) Abs.max.
. abs.min. ![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52d_2529_87fe_7b8eb1f877dd_TB2067_11.jpg)
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_88e1_87fe_2fb6b8fd3caf_TB2067_11.jpg)
A) Abs.max.
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_aff2_87fe_3f022f4bc3fc_TB2067_11.jpg)
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_aff3_87fe_334048a10e66_TB2067_11.jpg)
B) Abs.max.
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_d704_87fe_75b9ef436de7_TB2067_11.jpg)
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_d705_87fe_05d7d01c2dff_TB2067_11.jpg)
C) Abs.max.
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_d706_87fe_1d872ef15adf_TB2067_11.jpg)
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_fe17_87fe_7dd1395f282e_TB2067_11.jpg)
D) Abs.max.
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52c_fe18_87fe_b5b0904735d8_TB2067_11.jpg)
![<strong>Find the absolute maximum and absolute minimum values,if any,of the function on [0,25]</strong> A) Abs.max. . abs.min. B) Abs.max. . abs.min. C) Abs.max. . abs.min. D) Abs.max. . abs.min.](https://storage.examlex.com/TB2067/11eaae29_f52d_2529_87fe_7b8eb1f877dd_TB2067_11.jpg)
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43
The function
satisfies the hypotheses of Rolle's Theorem on the interval
.Find all values of c that satisfy the conclusion of the theorem.
A)
B)
C)
D)


A)

B)

C)

D)

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44
Verify that the function satisfies the three hypotheses of Rolle's Theorem on the given interval.Then find all numbers c that satisfy the conclusion of Rolle's Theorem
, 
A)
, 
B)
, 
C)
, 
D)
, 
E) None of these


A)


B)


C)


D)


E) None of these
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45
Find all the critical numbers of the function. 

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46
Sketch the graph of
on
and find its absolute maximum and absolute minimum values,if any.


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47
Find the absolute minimum value(s) of
on the interval [0,6].
![Find the absolute minimum value(s) of on the interval [0,6].](https://storage.examlex.com/TB2067/11eaae29_f52e_5db8_87fe_a31219391429_TB2067_11.jpg)
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48
Find the number c that satisfies the conclusion of the Mean Value Theorem on the given interval.
, 
A)

B)
C)
D)
E) None of these


A)


B)

C)

D)

E) None of these
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49
Find the critical number(s),if any of the function 
A) 0,
B)
C) 0,
D)

A) 0,

B)

C) 0,

D)

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50
At 4:00 P.M. a car's speedometer reads 25
.At 4:15 it reads 72
.At some time between 4:00 and 4:15 the acceleration is exactly x
.Find x.



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51
Find the critical number(s),if any,of the function
.
A)
B)
C) None of these
D)

A)

B)

C) None of these
D)

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52
Find the critical number(s),if any,of the function 
A)
B)
C)
D) -4

A)

B)

C)

D) -4
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53
Verify that the function satisfies the three hypotheses of Rolle's Theorem on the given interval.Then find all numbers c that satisfy the conclusion of Rolle's Theorem 
A)
B)
C)
D)
E)

A)

B)

C)

D)

E)

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54
Find the critical numbers of the function. 

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55
The graph below is the graph of function f on the interval
Find the absolute maximum and absolute minimum values of f (if they exist)and where they are attained. 


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56
Find the absolute maximum and absolute minimum values,if any,of the function
on
.
A) Abs.max.
. abs.min. 
B) Abs.max. https://storage.examlex.com/TB2067/
. abs.min. 
C) Abs.max. https://storage.examlex.com/TB2067/
. abs.min. 
D) Abs.max. https://storage.examlex.com/TB2067/
. abs.min. 


A) Abs.max.


B) Abs.max. https://storage.examlex.com/TB2067/


C) Abs.max. https://storage.examlex.com/TB2067/


D) Abs.max. https://storage.examlex.com/TB2067/


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