Exam 9: Infinite Series
Exam 1: Preparation for Calculus125 Questions
Exam 2: Limits and Their Properties85 Questions
Exam 3: Differentiation193 Questions
Exam 4: Applications of Differentiation154 Questions
Exam 5: Integration184 Questions
Exam 6: Differential Equations93 Questions
Exam 7: Applications of Integration119 Questions
Exam 8: Integration Techniques and Improper Integrals130 Questions
Exam 9: Infinite Series181 Questions
Exam 10: Conics, Parametric Equations, and Polar Coordinates114 Questions
Exam 11: Vectors and the Geometry of Space130 Questions
Exam 12: Vector-Valued Functions85 Questions
Exam 13: Functions of Several Variables173 Questions
Exam 14: Multiple Integration143 Questions
Exam 15: Vector Anal142 Questions
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Use the Integral Test to determine the convergence or divergence of the series. 

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Determine the convergence or divergence of the series using any appropriate test from this chapter. Identify the test used. 

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Determine the minimal number of terms required to approximate the sum of the series with an error of less than 0.008. 

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Use the Integral Test to determine the convergence or divergence of the series. 

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Find a first-degree polynomial function P1 whose value and slope agree with the value and slope of f at
. What is P1 called? 


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Approximate the sum of the series by using the first six terms. 

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Use the Direct Comparison Test (if possible) to determine whether the series
converges or diverges.

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Determine the convergence or divergence of the series
using any appropriate test.

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Write the first five terms of the sequence of partial sums. 

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Use the definition to find the Taylor series (centered at c) for the function. 

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Use the Ratio Test to determine the convergence or divergence of the series
.

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Determine the minimal number of terms required to approximate the sum of the series with an error of less than 0.007. 

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Consider the function given by
. Find the interval of convergence for
.


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Suppose a ball is dropped from a height of 16 feet. Each time it drops h feet, it rebounds 0.86h feet. Find the total distance traveled by the ball. Round your answer to two decimal places.
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