\documentstyle[12pt,epsf,epsfig,wrapfig]{article}
\pagestyle{empty}
%
%   LaTeX format for a contributed Abstract to the
%
%                         P H O T O N 9 9
%                          Freiburg
%                       May  23 - 27, 1999
%
%                  Copied with permission from PHOTON 97
%                  Copied without permission from SPIN 96
%
\setlength{\hoffset}          {0mm}
\setlength{\voffset}          {0mm}
\setlength{\oddsidemargin}    {0mm}
\setlength{\evensidemargin}   {0mm}
\setlength{\topmargin}        {10mm}
\setlength{\headheight}       {15pt}
\setlength{\headsep}          {15pt}
\setlength{\textheight}       {230mm}
\setlength{\textwidth}        {150mm}
\setlength{\marginparsep}     {3mm}
\setlength{\marginparwidth}   {18mm}
%
\begin{document}
\begin{flushright}
% filled out be conference secratariat
Abstract \#000, \today
\end{flushright}
\begin{center}
{\large \bf
\boldmath Study of the photon remnant in resolved 
photoproduction and low $Q^2$ processes at HERA.
\\ }
\vspace{5mm}
M.~Erdmann$^1$
(for the H1 Collaboration)
\\
\vspace{5mm}
{\small\it
(1) University Karlsruhe / DESY, Notkestr. 85, D-22607 Hamburg, Germany
\\
}
\end{center}

Using data taken with the H1 detector at HERA, events with jets in the
final state are used to study the transverse momentum of the photon
remnant in photoproduction and low-$Q^2$ ($1.4<Q^2<25$~GeV${}^2$) events
in the region $x_\gamma<0.75$, where $x_\gamma$ gives a measure of the 
fractional momentum of the parton form the photon side. The average
transverse momentum of the photon remnant in the $\gamma^* p$ system
is found
to increase weakly  with $Q^2$ and with  the scale of the hard process
in both data samples. 
Different QCD Monte Carlo models are contrasted with the data.

\end{document}


