Difference between revisions of "Series Problems"
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::<span class="exam"><math>\sum_{n=1}^\infty \frac{(n^2+1)^{2n}}{(2n^2+1)^n}</math> | ::<span class="exam"><math>\sum_{n=1}^\infty \frac{(n^2+1)^{2n}}{(2n^2+1)^n}</math> | ||
− | == [[ | + | == [[Series Problems,_Problem_8|<span class="biglink"><span style="font-size:80%"> Problem 8 </span>]] == |
− | <span class="exam"> | + | ::<span class="exam"><math>\sum_{n=1}^\infty \frac{6n-12}{n^2-4n+5}</math> (using the Integral Test) |
− | == [[ | + | == [[Series Problems,_Problem_9|<span class="biglink"><span style="font-size:80%"> Problem 9 </span>]] == |
− | <span class="exam"> | + | ::<span class="exam"><math>\sum_{n=1}^\infty \frac{n-1}{n^2\sqrt{n}}</math> |
+ | |||
+ | == [[Series Problems,_Problem_10|<span class="biglink"><span style="font-size:80%"> Problem 10 </span>]] == | ||
+ | |||
+ | ::<span class="exam"><math>\sum_{n=1}^\infty \frac{\sin(\frac{n\pi}{2})}{n^3}</math> | ||
+ | |||
+ | == [[Series Problems,_Problem_11|<span class="biglink"><span style="font-size:80%"> Problem 11 </span>]] == | ||
+ | |||
+ | ::<span class="exam"><math>\sum_{n=1}^\infty \frac{3^n+4^n}{5^n}</math> | ||
+ | |||
+ | == [[Series Problems,_Problem_12|<span class="biglink"><span style="font-size:80%"> Problem 12 </span>]] == | ||
+ | |||
+ | ::<span class="exam"><math>\sum_{n=1}^\infty \frac{n^2+1}{5^n}</math> | ||
+ | |||
+ | == [[Series Problems,_Problem_13|<span class="biglink"><span style="font-size:80%"> Problem 13 </span>]] == | ||
+ | |||
+ | ::<span class="exam"><math>\sum_{n=1}^\infty \frac{e^{\frac{1}{n}}}{n^2}</math> | ||
+ | |||
+ | == [[Series Problems,_Problem_14|<span class="biglink"><span style="font-size:80%"> Problem 14 </span>]] == | ||
+ | |||
+ | ::<span class="exam"><math>\sum_{n=1}^\infty \sin(n)</math> | ||
+ | |||
+ | == [[Series Problems,_Problem_15|<span class="biglink"><span style="font-size:80%"> Problem 15 </span>]] == | ||
+ | |||
+ | ::<span class="exam"><math>\sum_{n=1}^\infty n^2e^{-n^3}</math> |
Latest revision as of 13:43, 22 October 2017
These questions are meant to be practice problems for series.
Determine whether the series converge or diverge.
Click on the boxed problem numbers to go to a solution.
Problem 1
Problem 2
Problem 3
Problem 4
Problem 5
Problem 6
Problem 7
Problem 8
- (using the Integral Test)