Exam 2: The Derivative
Exam 1: Limits and Continuity186 Questions
Exam 2: The Derivative198 Questions
Exam 3: Topics in Deifferentiation171 Questions
Exam 4: The Derivative in Graphing and Applications656 Questions
Exam 5: Integration323 Questions
Exam 6: Applications of the Definite Integral in Geometry, Science and Engineering314 Questions
Exam 7: Principle of Integral Evaluation269 Questions
Exam 8: Mathematical Modeling With Differential Equations77 Questions
Exam 9: Infinte Series288 Questions
Exam 10: Parametric and Polar Curves; Conic Sections199 Questions
Exam 11: Three-Dimensional Space; Vectors173 Questions
Exam 12: Vector-Valued Functions147 Questions
Exam 13: Partial Derivatives194 Questions
Exam 14: Multiple Integrals117 Questions
Exam 15: Topics in Vector Calculus149 Questions
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Given
, find the slope of the graph of f at the x-value x0 = 3.

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(Short Answer)
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Correct Answer:
108
Find the instantaneous rate of change of
with respect to x at x0 = 5.

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(Multiple Choice)
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Correct Answer:
D
Find an equation for the tangent line to the graph of y = x sin x at x =
(Multiple Choice)
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Find the equations of the tangent and normal to the graph of
at x = 4.

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Find the equation of the line tangent to the graph of y = sin x at the point where x = 0.
(Multiple Choice)
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Answer true or false. Use a graphing utility to graph y = 4t3 on [0, 3]. If this graph represents a position versus time curve for a particle, the instantaneous velocity of the particle is increasing over the graphed domain.
(True/False)
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Use a graphing utility to show that
does not have a derivative everywhere.

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The volume of a sphere is given by
where r is the radius of the sphere. Use the method of Section 3.2 to find the instantaneous rate of change of V with respect to r when r = 6.

(Essay)
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Let
. Find the instantaneous rate of change of y with respect to x at the point x = 2.

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Use a graphing utility to obtain the graph of
. Determine the slope of the tangent line to the graph at x = 0.

(Multiple Choice)
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Answer true or false. Using a graphing utility it can be shown that
is differentiable everywhere on [-10, 10].
![Answer true or false. Using a graphing utility it can be shown that is differentiable everywhere on [-10, 10].](https://storage.examlex.com/TB6988/11ead0bc_8d76_49f6_99a0_b9c3006f5fc9_TB6988_11.jpg)
(True/False)
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The graph shows the position versus time curve for a particle moving on a straight line. Is the instantaneous velocity increasing or decreasing with time? 

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