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  • 4) Projekt <math>C</math> kann nur fertiggestellt werden, wenn Projekt <math> == Lösung mit CoCoA ==
    6 KB (964 words) - 10:11, 18 July 2008
  • So we have a field with 2^2 = 4 elements, namely one representation of F_4. The elements of the field are 0 ...e used to represent F_4[y_1, y_2, y_3]. Therefore, we map Z[y[1..3]] to Z/(4)[y[1..3]] and interpret each integer via the above described map. So the po
    3 KB (438 words) - 10:31, 7 October 2020
  • describes three different algorithms; the one implemented in CoCoA is Toric([[1,3,2],[3,4,8]]);
    3 KB (487 words) - 10:02, 24 October 2007
  • 4. The second form of the function does not require the prefix <tt>R::</tt> Module([-ab + c^2 + a, a^3b^2 - 2a^2bc^2 + ac^4], [a, -ab + c^2])
    3 KB (578 words) - 10:02, 24 October 2007
  • ...tes to C:\cygwin\home\Administrator. Change to /home/Administrator/gmp-4.1.4. Now we have to configure gmp by typing Administrator@sprocket ~/gmp-4.1.4
    8 KB (1,272 words) - 09:21, 16 October 2007
  • Analogously to the CoCoA-5 function <code>interreduced</code>, the SAGBI package contains the functi ...*y^2*z^4 +15*x^4*y^4*z^4 -20*x^6*z^6 -10*x^4*y^2*z^6 +20*x^3*y^3*z^6 +20*x^4*z^8 +20*x^2*y^2*z^8 -10*x^2*z^10 +6*x*y*z^10 -y^2*z^10 +3*z^12;
    12 KB (2,168 words) - 20:21, 8 November 2020
  • * print special: prints only polynomials which maxDeg<4 or Len<19: The input file has the same format as the communication between CoCoA 4.6 and the CoCoAServer. To create input you need to run the following sequen
    3 KB (445 words) - 17:46, 20 October 2007
  • PrintLn " Version : CoCoA 5.3.2"; -- x^2*z^2 +x*y*z^2 +(1/2)*y^2*z^2 +(-1/2)*z^4
    8 KB (1,176 words) - 15:56, 9 February 2021
  • The files in this directory comprise the documentation for the CoCoA Library. All the documentation for the CoCoA Library is made available under the
    20 KB (3,296 words) - 06:31, 20 July 2005

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