Deck 13: Limits: a Preview of Calculus
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Deck 13: Limits: a Preview of Calculus
1
Use a table of values to estimate the value of
. Use a graphing device to confirm your answer graphically.

It appears that
.




2
Evaluate
, and justify each step by indicating the appropriate Limit Law(s).


3
Evaluate the limit if it exists. 


4
Evaluate
.

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5
For the function g whose graph is given, state the value of the given quantity if it exists.
a)
b)
c)

a)

b)

c)

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6
Evaluate
.

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7
Evaluate
, and justify each step by indicating the appropriate Limit Law(s).

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8
For the function g whose graph is given, state the value of the given quantity if it exists.
a)
b)
c)

a)

b)

c)

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9
For the function
whose graph is given, state the value of the given quantity.
A)
B)
C)
D)


A)

B)

C)

D)


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10
Use a graphing device to determine whether
exists. If the limit exists, estimate its value to two decimal places.

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11
Complete the table of values (to five decimal places) and use the table to estimate the value of
. 


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12
Evaluate the limit if it exists. 

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13
Evaluate
.

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14
Evaluate
.

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15
Evaluate the limit if it exists. 

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16
Evaluate
.

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17
Use a table of values to estimate the value of
. Use a graphing device to confirm your answer.

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18
For the function g whose graph is given, state the value of the given quantity if it exists.
a)
b)

a)

b)

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19
Use a table of values to estimate the value of
. Use a graphing device to confirm your answer graphically.

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20
Evaluate the limit if it exists. 

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21
Find the value of
, if it exists. If the limit does not exist, explain why.

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22
Find the derivative of the function at the given number.
at 4

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23
Find the derivative of the function at the given number.
at 2

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24
Find the derivative of
at the point
.


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25
Find the derivative of the function at the given number.
at 4

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26
Find
, where a is in the domain of f. 


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27
Find the slope of the tangent line of the graph of
at the point
.


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28
Find the derivative of
at the point
.


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29
If
, find
.


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30
Find the slope of the tangent line of the graph of
at the point
.


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31
Find the value of
, if it exists. If the limit does not exist, explain why.

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32
If
, find
.


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33
Find the derivative of the function at the given number.
at 1

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34
Find the equation of the tangent line to the curve
at the point
.



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35
Find the equation of the tangent line to the curve
at the point
.



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36
Find the derivative of the function at the given number.
at 1

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37
Find the value of
, if it exists. If the limit does not exist, explain why.

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38
Find the derivative of the function at the given number.
at 2

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39
Find the slope of the tangent line of the graph of
at the point
.


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40
Find the derivative of
at the point
.


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41
Estimate the area under the graph of
from
to
using
(a) four approximating rectangles and right endpoints.
(b) four approximating rectangles and left endpoints.
(c) eight approximating rectangles and right endpoints.



(a) four approximating rectangles and right endpoints.
(b) four approximating rectangles and left endpoints.
(c) eight approximating rectangles and right endpoints.
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42
Use a table of values to estimate the value of
. Then use a graphing device to confirm your result graphically.

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43
Determine whether the sequence
converges or diverges. If it converges, find the limit.

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44
Find
.

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45
Use a table of values to estimate the value of
. Then use a graphing device to confirm your result graphically.

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46
Determine whether the sequence
converges or diverges. If it converges, find the limit.

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47
Determine whether the sequence
converges or diverges. If it converges, find the limit.

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48
Determine whether the sequence
converges or diverges. If it converges, find the limit.

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49
Determine whether the sequence
converges or diverges. If it converges, find the limit.

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50
A particle moves in a straight line with its displacement of motion described by equation
, where
is measured in feet and
is measured in seconds. Find the velocity of
at
,
,
, and
.








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51
Find
.

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52
Find
.

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53
Use a table of values to estimate the value of
. Then use a graphing device to confirm your result graphically.

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54
Estimate the area under the graph of
from
to
using
(a) four approximating rectangles and right endpoints.
(b) four approximating rectangles and left endpoints.
(c) eight approximating rectangles and right endpoints.



(a) four approximating rectangles and right endpoints.
(b) four approximating rectangles and left endpoints.
(c) eight approximating rectangles and right endpoints.
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55
Determine whether the sequence
converges or diverges. If it converges, find the limit.

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56
Estimate the area under the graph of
from
to
using
(a) four approximating rectangles and right endpoints.
(b) four approximating rectangles and left endpoints.
(c) eight approximating rectangles and right endpoints.



(a) four approximating rectangles and right endpoints.
(b) four approximating rectangles and left endpoints.
(c) eight approximating rectangles and right endpoints.
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57
Use a table of values to estimate the value of
. Then use a graphing device to confirm your result graphically.

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58
Determine whether the sequence
converges or diverges. If it converges, find the limit.

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59
Use the definition of area as a limit to find the area of the region that lies under the graph of
over the interval
.


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60
A stone is dropped into a pond causing a circular ripple in the water. Find the rate of change of the area
of the circle with respect to the radius when
ft.


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61
Use the definition of area as a limit to find the area of the region that lies under the graph of
over the interval
.


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62
Use the definition of area as a limit to find the area of the region that lies under the graph of
over the interval
.


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63
Use the definition of area as a limit to find the area of the region that lies under the graph of
over the interval
.


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64
Use the definition of area as a limit to find the area of the region that lies under the graph of
over the interval
.


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65
Use the definition of area as a limit to find the area of the region that lies under the graph of
over the interval
.


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66
Use the definition of area as a limit to find the area of the region that lies under the graph of
over the interval
.


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