Question: DO To test the series for convergence, you can use the P-test. (You could also use the Integral Test, as K 12 is the case

 DO To test the series for convergence, you can use theP-test. (You could also use the Integral Test, as K 12 isthe case with all series of this type. ) According to theP-test: 00 O diverges 1 O the P-test does not apply to

K 1 K2 O converges k 1 Now compute $4, the partialsum consisting of the first 4 terms ofcc. 1 To test theseries E3 r- p as is the case with all series ofthis type} According to the P-test: for convergence, you can use the

DO To test the series for convergence, you can use the P-test. (You could also use the Integral Test, as K 12 is the case with all series of this type. ) According to the P-test: 00 O diverges 1 O the P-test does not apply to K 1 K2 O converges k 1 Now compute $4, the partial sum consisting of the first 4 terms ofcc. 1 To test the series E3 r- p as is the case with all series of this type} According to the P-test: for convergence, you can use the P-test. [You could also use the Integral Test, 'I' 1 {E} converges E r? p m 1 Z: diverges k 1 \"53 m 1 {3' the P-test does not apply.r to Z: k 1 T$33 II:- 1 Now compute S4, the partial sum consisting of the first 4 terms of Z ' f: 1 S4: Find the value(s) of p for which the series is convergent. Please note that, on an exam or quiz, you would be expected to defend your reasoning by showing your work. 1 n 4 n In(n) [In(In(n))jp+6 PEFind the value(s) of p for which the series is convergent. Please note that, on an exam or quiz, you would be expected to defend your reasoning by showing your work. DO In(n) nP16 n 9 PE

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