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What is the Direct Comparison Test
*For the second one, it should be an ≥ bn
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)
*could also use the Limit Comparison Test
What is the Limit Comparison Test
When to use the Direct or Limit Comparison Test (you can use interchangeably but its recommend to use the Limit Comparison Test
.
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)
Determine if the series is convergent or divergent. If the series converges, find its sum (if it’s a geometric or telescoping series)