Annotation of OpenXM/src/asir-contrib/packages/doc/top/misc.oxw, Revision 1.13
1.13 ! takayama 1: @c $OpenXM: OpenXM/src/asir-contrib/packages/doc/top/misc.oxw,v 1.12 2012/02/25 06:07:49 takayama Exp $
1.1 takayama 2: /*&C
3: @node Misc,,, Top
4: */
5: /*&ja
6:
7: @chapter $B$=$NB>$N%^%K%e%"%k(B
8:
9: $B$3$N@a$G$O(B asir-contrib $B$N$=$NB>$N%^%K%e%"%k$r>R2p$9$k(B.
10:
11: $B$=$l$+$i$^$@J,N`$,$*$o$C$F$$$J$$4X?t$r2r@b$9$k(B.
12: $B$3$l$i$N4X?t$O>-Mh$OJL$NFHN)$7$?@a$X0\$9M=Dj$G$"$k(B.
13:
14:
15: */
16:
17: /*&en
18:
19: @chapter Other Manuals
20: This section introduces other manuals in the asir-contrib project.
21:
22: This section also describes functions that have not yet been classifed.
23: These will be moved to independent sections in a future.
24:
25: */
26:
27:
1.9 takayama 28: /*&en
29:
30: @subsection dsolv (Solving the initial ideal for holonomic systems)
31: @uref{../dsolv-html/dsolv-en.html}
32: @subsection ok_diff (Okutani's library for differential operators)
33: @uref{../ok_diff-html/ok_diff-en.html}
34: @subsection ok_dmodule (Okutani's library for D-modules)
35: @uref{../ok_dmodule-html/ok_dmodule-en.html}
36: @subsection (Plucker relations)
37: @uref{../plucker-html/plucker-en.html}
38: @subsection pfpcoh (Ohara's library for homology/cohomology groups for p F q )
39: @uref{../pfpcoh-html/pfpcoh-en.html}
40: @subsection (gnuplot ox server for graphics)
41: @uref{../gnuplot-html/gnuplot-en.html}
42: @subsection mathematica (Mathematica (TM) ox server)
43: @uref{../mathematica-html/mathematica-en.html}
44: @subsection om (om (java) ox server for translating CMO and OpenMath)
45: @uref{../om-html/om-en.html}
46: @subsection phc (PHC ox server for solving systems of algebraic equations by the homotopy method)
47: @uref{../phc-html/phc-en.html}
48: @subsection sm1 (Kan/sm1 ox server for the ring of differential operators)
49: @uref{../sm1-html/sm1-en.html}
50: @subsection tigers (tigers ox server for toric universal Grobner bases)
51: @uref{../tigers-html/tigers-en.html}
52: @subsection f_res (Comuting resultant)
53: @uref{../f_res-html/f_res-en.html}
54: @subsection mt_graph (3D grapher)
55: @uref{../mk_graph-html/mk_graph-en.html}
1.10 takayama 56: @subsection noro_mwl (Mordel Weil Lattice)
57: @uref{../noro_mwl-html/noro_mwl-en.html}
58: @subsection nn_ndbf (local b-function)
59: @uref{../nn_ndbf-html/nn_ndbf-en.html}
1.12 takayama 60: @subsection ns_twistedlog (twisted logarithmic cohomology group)
61: @uref{../ns_twistedlog-html/ns_twistedlog-en.html}
1.13 ! takayama 62: @subsection nk_fb_gen_c (Fisher Bingham MLE)
! 63: @uref{../nk_fb_gen_c-html/nk_fb_gen_c-en.html}
1.9 takayama 64:
65: */
66:
67: /*&ja
1.1 takayama 68:
1.9 takayama 69: @subsection dsolv (Solving the initial ideal for holonomic systems)
70: @uref{../dsolv-html/dsolv-ja.html}
71: @subsection ok_diff (Okutani's library for differential operators)
72: @uref{../ok_diff-html/ok_diff-ja.html}
73: @subsection ok_dmodule (Okutani's library for D-modules)
74: @uref{../ok_dmodule-html/ok_dmodule-ja.html}
75: @subsection (Plucker relations)
76: @uref{../plucker-html/plucker-ja.html}
77: @subsection pfpcoh (Ohara's library for homology/cohomology groups for p F q )
78: @uref{../pfpcoh-html/pfpcoh-ja.html}
79: @subsection (gnuplot ox server for graphics)
80: @uref{../gnuplot-html/gnuplot-ja.html}
81: @subsection mathematica (Mathematica (TM) ox server)
82: @uref{../mathematica-html/mathematica-ja.html}
83: @subsection om (om (java) ox server for translating CMO and OpenMath)
84: @uref{../om-html/om-ja.html}
85: @subsection phc (PHC ox server for solving systems of algebraic equations by the homotopy method)
86: @uref{../phc-html/phc-ja.html}
87: @subsection sm1 (Kan/sm1 ox server for the ring of differential operators)
88: @uref{../sm1-html/sm1-ja.html}
89: @subsection tigers (tigers ox server for toric universal Grobner bases)
90: @uref{../tigers-html/tigers-ja.html}
91: @subsection f_res (Comuting resultant)
92: @uref{../f_res-html/f_res-ja.html}
93: @subsection mt_graph (3D grapher)
94: @uref{../mk_graph-html/mk_graph-ja.html}
1.10 takayama 95: @subsection noro_mwl (Mordel Weil Lattice)
96: @uref{../noro_mwl-html/noro_mwl-ja.html}
97: @subsection nn_ndbf (local b-function)
98: @uref{../nn_ndbf-html/nn_ndbf-ja.html}
1.11 takayama 99: @subsection noro_pd (New Primary Ideal Decomposition)
100: @uref{../noro_pd-html/noro_pd-ja.html}
1.12 takayama 101: @subsection ns_twistedlog (twisted logarithmic cohomology group)
102: @uref{../ns_twistedlog-html/ns_twistedlog-ja.html}
1.13 ! takayama 103: @subsection nk_fb_gen_c (Fisher Bingham MLE)
! 104: @uref{../nk_fb_gen_c-html/nk_fb_gen_c-ja.html}
1.1 takayama 105:
106: */
107:
108: /*&ja
109:
1.9 takayama 110: @subsection todo_parametrize
111: @uref{../todo_parametrize-html/todo_parametrize-ja.html}
1.1 takayama 112:
113: $B%Q%C%1!<%8(B @code{todo_parametrize/todo_parametrize.rr} $B$r%m!<%I$9$k$3$H$K$h$j(B,
114: $BM-M}6J@~$N%Q%i%a!<%?I=<($r8+IU$1$k4X?t$G$"$k(B,
115: @code{paramerize} $B$,MxMQ$G$-$k$h$&$K$J$k(B.
116: $B>\$7$/$O(B @xref{$B4X?t4J0W%^%K%e%"%k(B,$B35MW(B,$B35MW(B,todo_parametrize_ja.texi,Risa/Asir $BBe?t6J@~O@MQ%Q%C%1!<%8@bL@=q(B} $B$r8+$h(B
117: (@uref{http://www.math.kobe-u.ac.jp/OpenXM/Current/doc/asir-contrib/html-ja/todo_parametrize/todo_parametrize_ja_toc.html, Web $BHG(B Risa/Asir $BBe?t6J@~O@MQ%Q%C%1!<%8@bL@=q(B}).
118: $B$3$N%Q%C%1!<%8$N%^%K%e%"%k$X$NE}9g$O$^$@$G$-$F$$$J$$(B.
119: $B$3$N%Q%C%1!<%8$O$^$@(B module $B9=B$$rMxMQ$7$F$$$J$$$N$G(B, $B4{B8$N%i%$%V%i%j$H(B
120: $BL>A0$N>WFM$N2DG=@-$,$"$k(B.
121: */
122:
123: /*&en
124:
1.2 takayama 125: @subsection [[todo_parametrize]]
1.1 takayama 126: todo_parametrize/todo_parametrize_toc
127:
128: With loading the file @code{todo_parametrize/todo_parametrize.rr}
129: the function @code{paramerize} is installed.
130: The function finds a parametric expression of a given rational curve.
131: As to details, see
132: @xref{,,,todo_parametrize_ja, A package for algebraic curves} (in Japanese).
133:
134: */
135:
136: /*&C
137: @example
138: [1205] load("todo_parametrize/todo_parametrize.rr");
139: 1
140: [1425] parametrize(y^2-x^3);
141: [155*t^2+20*t+1,720*t^4+1044*t^3+580*t^2,155*t^4+20*t^3+t^2,(-x)/(y)]
142: [1426] parametrize(y^2+x^3);
143: [-t,1,t^3,(-x)/(y)]
144: @end example
145: */
1.3 takayama 146:
1.4 takayama 147: /*&ja
148:
1.9 takayama 149: @subsection taji_alc
150: @uref{../taji_alc-html/taji_alc-ja.html}
1.4 takayama 151:
152: $B%Q%C%1!<%8(B @code{taji_alc.rr} $B$r%m!<%I$9$k$3$H$K$h$j(B,
153: $B0lJQ?tBe?tE*%3%[%b%m%872$K4XO"$9$k4X?t$r%m!<%I$G$-$k(B.
1.6 takayama 154: (@uref{http://www.math.kobe-u.ac.jp/OpenXM/Current/doc/asir-contrib/ja/taji_alc-html/taji_alc-ja_toc.html, Web $BHG(B Risa/Asir $B0lJQ?tBe?tE*6I=j%3%[%b%m%8!<N`$K4X$9$k(B Risa/Aisr $B%Q%C%1!<%8@bL@=q(B}).
1.9 takayama 155:
1.4 takayama 156:
157: */
158:
159: /*&en
160:
1.9 takayama 161: @subsection taji_alc
162:
1.4 takayama 163:
164: With loading the file @code{taji_alc.rr}
165: functions for algebraic local cohomology groups in one variable are imported.
166:
167: */
168:
169: /*&C
170: @example
171: import("taji_alc.rr");
172: taji_alc.laurent_expansion(x,(x-1)^3);
173: @end example
174: */
175:
176:
1.3 takayama 177:
178: /*&ja
179:
180: @subsection Texinifo $B$G$J$$%^%K%e%"%k(B, $BO@J8Ey(B.
181:
182: @uref{http://www.math.kobe-u.ac.jp/OpenXM/Current/doc/index-doc-ja.html, OpenXM documents}.
183: $B$K$O(B texinfo $B$G=q$+$l$F$$$J$$(B asir-contrib $B$N%U%!%$%k$d4X?t$N%^%K%e%"%k(B, $B$*$h$S(B
184: $B4XO"O@J8$X$N%j%s%/$,$"$k(B.
185:
1.4 takayama 186: (yang, fj_curve, nk_mora $BEy(B)
187:
1.3 takayama 188: */
189:
190: /*&en
191:
192: @subsection Manual and papers which are not written in texinfo.
193:
194: Links to manuals and papers related to files and commands in asir-contrib are
195: at
196: @uref{http://www.math.kobe-u.ac.jp/OpenXM/Current/doc/index-doc-en.html, OpenXM documents}.
197:
198: */
199:
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