Ratio Test :
\(i) If
, then the series is
is absolutely convergent.
(ii) If
or
, then the series is
is divergent.
(iii) If
, then the ratio test is inconclusive.
The integral is The power series form of
.
The power series form of
.
The power series form of
.


.
Apply integral on each side.
\


.
Theerefore, the power series is
.
The series is 
Consider
.


Substitute
in
.



If
then
.

The series is converges for
.
.
The radius of convergence is
.
Therefore, the power series is
and
.
The power sserie is
and
.