Deck 2: A Preview of Calculus
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Deck 2: A Preview of Calculus
1


D
2
Decide whether the following problem can be solved using precalculus, or whether calculus is required. If the problem can be solved using precalculus, solve it. If the
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.

A
3
Decide whether the following problem can be solved using precalculus, or whether calculus is required. If the problem can be solved using precalculus, solve it. If the
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.
Find the distance traveled in 16 seconds by an object traveling at a constant velocity of 20 feet
Per second.
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.
Find the distance traveled in 16 seconds by an object traveling at a constant velocity of 20 feet
Per second.

C
4


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6
the rectangles in the following graph to approximate the area of the region 

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7


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8
Decide whether the following problem can be solved using precalculus, or whether calculus is required. If the problem can be solved using precalculus, solve it. If the
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.

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9
Complete the table and use the result to estimate the limit. 

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10
Complete the table and use the result to estimate the limit. 

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11
Decide whether the following problem can be solved using precalculus, or whether calculus is required. If the problem can be solved using precalculus, solve it. If the
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.

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12

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13


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14
Decide whether the following problem can be solved using precalculus, or whether calculus is required. If the problem can be solved using precalculus, solve it. If the
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.

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15
the rectangles in the following graph to approximate the area of the region 

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16
Decide whether the following problem can be solved using precalculus, or whether calculus is required. If the problem can be solved using precalculus, solve it. If the
Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.

Problem seems to require calculus, use a graphical or numerical approach to estimate the
Solution.


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17




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18
Complete the table and use the result to estimate the limit. 

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19
Complete the table and use the result to estimate the limit. 

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20


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21


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22
the limit. 

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23
the limit. 

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24
the limit. 

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25
sphere has a volume of 4.76 cubic inches. What is the radius of the sphere? Round your answer to four decimal places. 

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26
the limit. 

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27
ring has a inner circumference of 9 centimeters. If the ring's inner circumference can vary between 8 centimeters and 10 centimeters how can the radius vary? Round your answer to
Five decimal places.
A)Radius can vary between 6.48456 centimeters and 10.13212 centimeters.
B)Radius can vary between 1.59577 centimeters and 1.78412 centimeters.
C)Radius can vary between 1.27324 centimeters and 1.59155 centimeters.
D)Radius can vary between 2.54648 centimeters and 3.18310 centimeters.
E)Radius can vary between 0.43239 centimeter and 2.43239 centimeters.
Five decimal places.
A)Radius can vary between 6.48456 centimeters and 10.13212 centimeters.
B)Radius can vary between 1.59577 centimeters and 1.78412 centimeters.
C)Radius can vary between 1.27324 centimeters and 1.59155 centimeters.
D)Radius can vary between 2.54648 centimeters and 3.18310 centimeters.
E)Radius can vary between 0.43239 centimeter and 2.43239 centimeters.
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28
Complete the table and use the result to estimate the limit. 

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29
Determine the following limit. (Hint: Use the graph to calculate the limit.) 

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30


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31


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32


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33


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34
Determine the following limit. (Hint: Use the graph to calculate the limit.) 

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35
the limit. 

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36


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37
the lmit. 

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38
Determine the following limit. (Hint: Use the graph to calculate the limit.)



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39
the limit. 

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40
ring has a inner circumference of 10 centimeters. What is the radius of the ring? Round your answer to four decimal places. 

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41


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42
the limit (if it exists). 

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43


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45


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46
the graph to determine the following limits, and discuss the continuity of the 

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47


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48


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49
the limit (if it exists). 

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50
the limit (if it exists). 

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51
Determine the limit (if it exists). 

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52
the graph as shown to determine the following limits, and discuss the continuity of the function at



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53
the limit (if it exists). 

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54
Determine the limit (if it exists). 

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55
the following limit (if it exists). Write a simpler function that agrees with the given function at all but one point. 

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56


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57
the graph as shown to determine the following limits, and discuss the continuity of the function at
. 


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58
Determine the limit (if it exists). 

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59
the limit (if it exists). 

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60
the limit (if it exists). 

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61


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62
all the vertical asymptotes (if any) of the graph of the function 

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63


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64
the left and from the right by completing the tables below.
A)
B)
C)
D)
A)
B)
C)
D)
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65
the constant a such that the function 

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66


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67
the constant a such that the function 

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68


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69


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70
the value of c guaranteed by the Intermediate Value Theorem. 

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71


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74


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76
all the vertical asymptotes (if any) of the graph of the function 

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77


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78


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79
the value of c guaranteed by the Intermediate Value Theorem. 

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80


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