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12 Nov 2019
5. Use the Limit Comparison test to determine if the series converges or diverges. 6. Use the Root test to determine lithe series converges or diverges. 7. Use the Alternating test to determine if the series converges or diverges.
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Casey Durgan
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Related questions
9. Use the Comparison test determine whether the series converges or diverges. 10. Use the Limit Comparison test determine whether the series converges or diverges. 11. Use the Alternating Series Test to determine whether the series converges. Σ(-1)"+12n+1 n-1
5. (10 pts) Use the Limit Comparison test to determine if the series converges or diverges. In t (-1)"-1 6. (5 pts) Use the Root test to determine if the series converges or diverges.
00-3" 8" + 7', + 1 3, Determine whether the series Σ A) The series converges by the Divergence Test B) The series diverges by the Divergence Test. C) The series converges since it is a convergent geometric series. D) The series diverges since it is a divergent geometric series. E) The series converges by the Limit Comparison Test converges or dliverges. Limit Comparison Tet G) The series converges by the Alternating Series Test H) The series diverges by the Alternating Series Test
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