Exam 9: Infinite Series

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Find the values of x for which the series Find the values of x for which the series   converges. converges.

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Use the Direct Comparison Test (if possible) to determine whether the series Use the Direct Comparison Test (if possible) to determine whether the series

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Use the binomial series to find the Maclaurian series for the function. ​​ Use the binomial series to find the Maclaurian series for the function. ​​

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Consider the series Consider the series   . The sum of the series is   Find the sum of the series   . ​ . The sum of the series is Consider the series   . The sum of the series is   Find the sum of the series   . ​ Find the sum of the series Consider the series   . The sum of the series is   Find the sum of the series   . ​ . ​

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

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Use the binomial series to find the Maclaurian series for the function Use the binomial series to find the Maclaurian series for the function   . .

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Suppose the annual spending by tourists in a resort city is $100 million. Approximately 75% of that revenue is again spent in the resort city, and of that amount approximately 75% is again spent in the same city, and so on. Summing all of this spending indefinitely, leads to the geometric series Suppose the annual spending by tourists in a resort city is $100 million. Approximately 75% of that revenue is again spent in the resort city, and of that amount approximately 75% is again spent in the same city, and so on. Summing all of this spending indefinitely, leads to the geometric series   . Find the sum of this series. . Find the sum of this series.

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Find the interval of convergence of the power series. (Be sure to include a check for convergence at the endpoints of the interval.) Find the interval of convergence of the power series. (Be sure to include a check for convergence at the endpoints of the interval.)

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

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Identify the interval of convergence of a power series Identify the interval of convergence of a power series   . .

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Write an equivalent series of the series Write an equivalent series of the series   with the index of summation beginning at   . with the index of summation beginning at Write an equivalent series of the series   with the index of summation beginning at   . .

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Consider the sequence Consider the sequence   whose nth term is given by   where P is the principal,   is the account balance in dollars after n months, and r is the interest rate compounded annually. Find the sixth term of the sequence if   and   . Round your answer to two decimal places. ​ whose nth term is given by Consider the sequence   whose nth term is given by   where P is the principal,   is the account balance in dollars after n months, and r is the interest rate compounded annually. Find the sixth term of the sequence if   and   . Round your answer to two decimal places. ​ where P is the principal, Consider the sequence   whose nth term is given by   where P is the principal,   is the account balance in dollars after n months, and r is the interest rate compounded annually. Find the sixth term of the sequence if   and   . Round your answer to two decimal places. ​ is the account balance in dollars after n months, and r is the interest rate compounded annually. Find the sixth term of the sequence if Consider the sequence   whose nth term is given by   where P is the principal,   is the account balance in dollars after n months, and r is the interest rate compounded annually. Find the sixth term of the sequence if   and   . Round your answer to two decimal places. ​ and Consider the sequence   whose nth term is given by   where P is the principal,   is the account balance in dollars after n months, and r is the interest rate compounded annually. Find the sixth term of the sequence if   and   . Round your answer to two decimal places. ​ . Round your answer to two decimal places. ​

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Identify the interval of convergence of a power series Identify the interval of convergence of a power series   . .

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Explain how to use the geometric series Explain how to use the geometric series   to find the series for the function   . to find the series for the function Explain how to use the geometric series   to find the series for the function   . .

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is the infinite series is the infinite series   . .

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Find the third degree Taylor polynomial centered at Find the third degree Taylor polynomial centered at   for the function. ​   ​ for the function. ​ Find the third degree Taylor polynomial centered at   for the function. ​   ​

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is the series is the series   converges. converges.

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Use the power series Use the power series   to determine a power series centered at 0 for the function   . . to determine a power series centered at 0 for the function Use the power series   to determine a power series centered at 0 for the function   . . . .

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

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If the rate of inflation is If the rate of inflation is   per year and the average price of a car is currently $35,000, the average price after n years is   . Compute the average price after 8 years. Round your answer to two decimal places. per year and the average price of a car is currently $35,000, the average price after n years is If the rate of inflation is   per year and the average price of a car is currently $35,000, the average price after n years is   . Compute the average price after 8 years. Round your answer to two decimal places. . Compute the average price after 8 years. Round your answer to two decimal places.

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