% $OpenXM: OpenXM/doc/calc2000p/func2.tex,v 1.1 2000/07/20 04:43:55 takayama Exp $ \documentclass[twocolumn]{article} \usepackage{color} \title{\huge \color{blue} 4252 functions are available on our servers and libraries (continued)} \author{} \date{} \begin{document} \maketitle \noindent \fbox{\huge {\color{green} $D$-modules}} ($D$ is the Weyl algebra) \noindent {\color{red} gb } (Gr\"obner basis), {\color{red} syz} (syzygy), {\color{red} annfs} (Annhilating ideal of $f^s$), {\color{red} bfunction}, {\color{red} vMinRes} (V-minimal free resolution), {\color{red} restriction} in the derived category of $D$-modules, {\color{red} integration} in the derived category, {\color{red} tensor} in the derived category, {\color{red} slope}. \medbreak \noindent \fbox{\huge {\color{green} Cohomology groups}} \noindent {\color{red} deRham} (The de Rham cohomology groups of ${\bf C}^n \setminus V(f)$, {\color{red} ext} (Ext modules for a holonomic $D$-module $M$ and the ring of formal power series). \medbreak \noindent \fbox{\huge {\color{green} Differential equations}} \noindent Helping to derive and prove {\color{red} combinatorial} and {\color{red} special function identities}, {\color{red} gkz} (GKZ hypergeometric differential equations), {\color{red} indicial} (indicial equations), {\color{red} dsolv} (series solutions of holonomic systems). \end{document}