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\magnification=\magstep3
\hsize=19truecm
\vsize=19truecm
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\parindent=0mm
\font\eins=cmb10 scaled \magstep 3
\font\zwei=cmr12
\font\mini=cmr7
\def\frac#1#2{{{#1} \over {#2}}}
\hbox{}
\vfill
\centerline{\eins Application to Euler's Constant}
\bigskip\bigskip
Put
\quad\quad{$\displaystyle f(x) := {\sum\limits_{n=0}^{\infty} \frac{x^n}{{n!}^2}}$}\hfill\break
\hphantom{Put}\quad\quad{$\displaystyle g(x) := {\sum\limits_{n=0}^{\infty} \left( \frac{1}{1} + \cdots + \frac{1}{n} \right) \frac{x^n}{{n!}^2}}$}\hfill\break
\bigskip\bigskip
Then
\hfill{$\displaystyle \frac{g(x)}{f(x)} = \frac{1}{2} \log x + \gamma + O \left( e^{-4 \sqrt{x}} \right) $.}\hfill\break
\bigskip\bigskip
Choose $\displaystyle {x = {\left\lceil \frac{N \log 2}{4} \right\rceil}^2}$.
\vfill
\hbox{}
\eject
\end