# Pt find the value of z 1 3ln x x 5 determine whether

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11.(1 pt) Find the value ofZ13ln(x)x5Determine whethern=1(3ln(n)n5)Enter A if series is convergent, B if series is divergent.12.(1 pt) Find the values ofpfor which the series converges.n=1lnnn2p(1 pt) Compute the value of the following improper inte-gral. If it converges, enter its value. Enterinfinityif it divergesto, and-infinityif it diverges to-. Otherwise, enterdi-verges.Z15x2e-x3dx=Does the seriesn=15n2e-n3converge or diverge??15.(1 pt) Use the integral test to determine whether each ofthe following series converges or diverges. For each, fill in theintegrand and the value of the integral.Enterdivergesif theintegral diverges. Then indicate the convergence of the sum.A.n=11
13.(1 pt) Find the value of the integralZ2dx3x(ln(3x))2.Rcdn=(Evaluate your integral with bottom limit c=1.)This sumDetermine whether the seriesn=213n(ln(3n))2is convergent. Enter C if the series is convergent, D if the seriesis divergent.n=1n+7n2+14n+1Compare withRcdn=(Evaluate your integral with bottom limit c=1.)This sumA. convergesB. diverges14.(1 pt) Compute the value of the following improper inte-gral. If it converges, enter its value. Enterinfinityif it divergesto, and-infinityif it diverges to-. Otherwise, enterdi-verges.Z15x2e-x3dx=Does the seriesn=15n2e-n3converge or diverge??15.(1 pt) Use the integral test to determine whether each ofthe following series converges or diverges. For each, fill in theintegrand and the value of the integral.Enterdivergesif theintegral diverges. Then indicate the convergence of the sum.A.n=11
Compare withRcdn=(Evaluate your integral with bottom limit c=1.)This sum
B.n=1n+7n2+14n+1Compare withRcdn=(Evaluate your integral with bottom limit c=1.)This sumA. convergesB. diverges
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