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  • File:Acosc1plotT.png
    These asymptotics are used in the numerical implementation [[acosc1]] available at [[acosc1.cin]].
    (851 × 2,728 (203 KB)) - 09:41, 21 June 2013
  • File:AcoscmapT300.png
    ...eplaced to the more efficient (simple, fast, robust and precise) numerical implementation of [[ArcCosc]]; perhaps, this is final version of the code.
    (3,517 × 3,492 (1.64 MB)) - 09:41, 21 June 2013
  • File:FourierExampleGauss04Ta.png
    Illustration of the numerical implementation of the [[Fourier transform]] at the sample of 4 nodes. The numerical Fourier transform $B$ is shown with red segmented line.
    (1,287 × 266 (35 KB)) - 09:39, 21 June 2013
  • File:Tetreal2215.jpg
    // The numerical implementation of the complex tet(complex,complex) <br>
    (876 × 881 (130 KB)) - 09:38, 21 June 2013
  • File:TetSheldonImaT.png
    is used for the numerical implementation of the integration with number of nodes 2048.
    (4,359 × 980 (598 KB)) - 09:40, 21 June 2013
  • File:Autran9tes20t1.jpg
    [[Agreement]] map for the numerical implementation of function [[AuTra]];
    (4,366 × 4,316 (1.68 MB)) - 08:30, 1 December 2018
  • File:Koritestplot.jpg
    Test of implementation of function [[kori]] through the built-in C++ function j0. ...e representation is not good; for other values (negative and complex) this implementation fails.
    (1,618 × 996 (144 KB)) - 08:40, 1 December 2018
  • File:LaguerreL60zeros.jpg
    in order to prepare, for example, the [[Gauss-Laguerre quadrature]] numerical implementation.
    (360 × 226 (11 KB)) - 08:41, 1 December 2018
  • File:Logic4T.jpg
    ...ementary functions; this case can be used for the testing of the numerical implementation of the holomorphic extension of the [[logistic sequence]],
    (2,195 × 2,208 (1.66 MB)) - 08:42, 1 December 2018