Name: Use the Integral Test to determine whether the following series diverge or converge. 1. En=1n State f(x)=. Show the f(x) is continuous for x >1 (Hint: Use the idea of domain) Show that f(x) is decreasing for x 21 (Hint: Use the first derivative test) Use the integral test to determine if the function converges or diverges.

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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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MATH 183: Sec 11.3- Pre-Work
Use the Integral Test to determine whether the following series diverge or converge.
Name:
1. En=1
State f (x)=
Show the f(x) is continuous for x > 1 (Hint: Use the idea of domain)
Show that f(x) is decreasing for x >1 (Hint: Use the first derivative test)
Use the integral test to determine if the function converges or diverges.
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Transcribed Image Text:1 / 1 100% MATH 183: Sec 11.3- Pre-Work Use the Integral Test to determine whether the following series diverge or converge. Name: 1. En=1 State f (x)= Show the f(x) is continuous for x > 1 (Hint: Use the idea of domain) Show that f(x) is decreasing for x >1 (Hint: Use the first derivative test) Use the integral test to determine if the function converges or diverges. Show All MacBook Pro F12 F11 F9 F7 F4 * 2$ & 6 8 9. Y U F G J K V B N M. ンー ....
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