Exam 10: Series and Taylor Polynomials

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The repeating decimal The repeating decimal   is expressed as a geometric series   Write the decimal   as the ratio of two integers. ​​ is expressed as a geometric series The repeating decimal   is expressed as a geometric series   Write the decimal   as the ratio of two integers. ​​ Write the decimal The repeating decimal   is expressed as a geometric series   Write the decimal   as the ratio of two integers. ​​ as the ratio of two integers. ​​

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The value for which Newton's method fails for the function below is shown in the graph.Give the reason why the method fails. ​ The value for which Newton's method fails for the function below is shown in the graph.Give the reason why the method fails. ​   ​   ​The value for which Newton's method fails for the function below is shown in the graph.Give the reason why the method fails. ​   ​   ​

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​Determine the convergence or divergence of the following series. ​ ​Determine the convergence or divergence of the following series. ​   ​

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​Apply Taylor's Theorem to find the power series centered at ​Apply Taylor's Theorem to find the power series centered at   for the function   ​ for the function ​Apply Taylor's Theorem to find the power series centered at   for the function   ​

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​Bouncing Ball.A ball dropped from a height of 39 feet bounces to 0.6666666667 of its former height with each bounce.Find the total vertical distance that the ball travels. ​

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Find the limit of the following sequence. ​ Find the limit of the following sequence. ​   ​

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​Determine the convergence or divergence of the following series. ​ ​Determine the convergence or divergence of the following 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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​Determine the convergence or divergence of the p-series ​Determine the convergence or divergence of the p-series   ​

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​Apply Taylor's Theorem to find the power series centered at ​Apply Taylor's Theorem to find the power series centered at   for the function   ​ for the function ​Apply Taylor's Theorem to find the power series centered at   for the function   ​

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​You accept a job that pays a salary of $60,000 the first year.During the next 49 years,you will receive a 6% raise each year.What would be your total compensation over the 50-year period? Round your answer to the nearest integer. ​

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Determine the convergence or divergence of the following series. ​ Determine the convergence or divergence of the following series. ​

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A factory is polluting a river such that at every mile down river from the factory an environmental expert finds 15% less pollutant than at the preceding mile.If the pollutant's concentration is 600 ppm (parts per million)at the factory,what is its concentration 12 miles down river? ​

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Find the limit of the following sequence. ​ Find the limit of the following sequence. ​   ​

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Find the limit of the following sequence. ​ Find the limit of the following sequence. ​   ​

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​Use a graphing utility to approximate all the real zeros of the function ​Use a graphing utility to approximate all the real zeros of the function   by Newton's Method. ​ by Newton's Method. ​

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Find the limit of the following sequence. ​ Find the limit of the following sequence. ​   ​

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​Use a symbolic differentiation utility to find the Taylor polynomials (centred at zero)of degrees (a)2,(b)4,(c)6,(d)8. ​ ​Use a symbolic differentiation utility to find the Taylor polynomials (centred at zero)of degrees (a)2,(b)4,(c)6,(d)8. ​   ​

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​Determine the convergence or divergence of the series ​Determine the convergence or divergence of the series   Use a symbolic algebra utility to verify your result. ​​ Use a symbolic algebra utility to verify your result. ​​

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A company produces a new product for which it estimates the annual sales to be 5000 units.Suppose that in any given year 10% of the units (regardless of age)will become inoperative.How many units will be in use after n years? ​

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