AP Calculus BC Series and Convergence
Determine whether the Converges by Integral Test
series 1+1/4+1/9+1/16+...
+1/n^2 Converges or diverges
Use the integral test
Use the Direct Diverges by Direct Comparison Test
Comparison Test to
determine the
convergence or
divergence of the series:
The summation of n=1 to
infinity of 1/3⁴√(n)-1
Determine if the series Converges absolutely
converges absolutely,
converges conditionally or
diverges:
The summation from n=1 to
infinity of
(-1)^(n+1) (3n/2^n)
Determine whether the Converges by Integral Test
series 1+1/4+1/9+1/16+...
+1/n^2 Converges or diverges
Use the integral test
Use the Direct Diverges by Direct Comparison Test
Comparison Test to
determine the
convergence or
divergence of the series:
The summation of n=1 to
infinity of 1/3⁴√(n)-1
Determine if the series Converges absolutely
converges absolutely,
converges conditionally or
diverges:
The summation from n=1 to
infinity of
(-1)^(n+1) (3n/2^n)