Annotation of OpenXM/doc/calc2000p/func2.tex, Revision 1.1
1.1 ! takayama 1: % $OpenXM$
! 2: \documentclass[twocolumn]{article}
! 3: \usepackage{color}
! 4: \title{\huge \color{blue} 4252 functions are available
! 5: on our servers and libraries (continued)}
! 6: \author{} \date{}
! 7: \begin{document}
! 8: \maketitle
! 9:
! 10: \noindent
! 11: \fbox{\huge {\color{green} $D$-modules}} ($D$ is the Weyl algebra)
! 12:
! 13: \noindent
! 14: {\color{red} gb } (Gr\"obner basis),
! 15: {\color{red} syz} (syzygy),
! 16: {\color{red} annfs} (Annhilating ideal of $f^s$),
! 17: {\color{red} bfunction},
! 18: {\color{red} vMinRes} (V-minimal free resolution),
! 19: {\color{red} restriction} in the derived category of $D$-modules,
! 20: {\color{red} integration} in the derived category,
! 21: {\color{red} tensor} in the derived category,
! 22: {\color{red} slope}.
! 23:
! 24: \medbreak
! 25: \noindent
! 26: \fbox{\huge {\color{green} Cohomology groups}}
! 27:
! 28: \noindent
! 29: {\color{red} deRham} (The de Rham cohomology groups of
! 30: ${\bf C}^n \setminus V(f)$,
! 31: {\color{red} ext} (Ext modules for a holonomic $D$-module $M$
! 32: and the ring of formal power series).
! 33:
! 34: \medbreak
! 35: \noindent
! 36: \fbox{\huge
! 37: {\color{green} Differential equations}}
! 38:
! 39: \noindent
! 40: Helping to derive and prove {\color{red} combinatorial} and
! 41: {\color{red} special function identities},
! 42: {\color{red} gkz} (GKZ hypergeometric differential equations),
! 43: {\color{red} indicial} (indicial equations),
! 44: {\color{red} dsolv} (series solutions of holonomic systems).
! 45:
! 46:
! 47: \end{document}
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