The function is .
Consider .
Power series formula: .
Apply derivative on each side with respect to .
.
The power series of is
.
Find the radius of convergence.
\Consider .
Ratio test :
\Let be a series with non zero terms.
1. converges absolutely if
.
2. diverges if
or
.
3. The ratio test is inconclusive if .
Here and
.
Find .
.
The series is converges when .
.
Therefore, the radius of the convergence is .
The power series of is
.
The radius of the convergence is .