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Intel ODE Solver Library Functions list: rkm9st(5), mk52lfn(5), mk52lfa(5), rkm9mkn(5), rkm9mka(5).rkm9st(init, x1, x2, intvls, D) A specialized routine for solving non-stiff and middle-stiff ODE systems using the explicit method, which is based on the 4th order Merson’s method and the 1st order multistage method of up to and including 9 stages with stability control. mk52lfn(init, x1, x2, intvls, D) A specialized routine for solving stiff ODE systems using the implicit method based on L-stable (5,2)-method with the numerical Jacobi matrix, which is computed by the routine. mk52lfa(init, x1, x2, intvls, D) A specialized routine for solving stiff ODE systems using the implicit method based on L-stable (5,2)-method with numerical or analytical computation of the Jacobi matrix. The user must provide a routine for this computation. rkm9mkn(init, x1, x2, intvls, D) A specialized routine for solving ODE systems with a variable or a priori unknown stiffness; automatically chooses the explicit or implicit scheme in every step and computes the numerical Jacobi matrix when necessary. rkm9mka(init, x1, x2, intvls, D) A specialized routine for solving ODE systems with a variable or a priori unknown stiffness; automatically chooses the explicit or implicit scheme in every step. The user must provide a routine for numerical or analytical computation of the Jacobi matrix. Arguments: - init is either a vector of n real initial values, where n is the number of unknowns (or a single scalar initial value, in the case of a single ODE). - x1 and x2 are real, scalar endpoints of the interval over which the solution to the ODE(s) is evaluated. Initial values in init are the values of the ODE function(s) evaluated at x1. - intvls is the integer number of discretization intervals used to interpolate the solution function. The number of solution points is the number of intervals + 1. - D is a vector function of the form D(x,y) specifying the right-hand side of the system iode.examples.sm (205kb) downloaded 196 time(s). iode.kinetic1.sm (8kb) downloaded 110 time(s). iode.kinetic2.sm (15kb) downloaded 90 time(s). iode.kinetic3.sm (15kb) downloaded 93 time(s). iode.integrate.sm (11kb) downloaded 103 time(s). iode.test1.sm (23kb) downloaded 98 time(s). iode.test2.sm (23kb) downloaded 88 time(s). iode.Amplitude detector.sm (21kb) downloaded 98 time(s). Box_models.sm (101kb) downloaded 74 time(s). iode.examples.pdf (417kb) downloaded 157 time(s). iode.kinetic1.pdf (75kb) downloaded 87 time(s). iode.kinetic2.pdf (91kb) downloaded 64 time(s). iode.kinetic3.pdf (89kb) downloaded 68 time(s). iode.integrate.pdf (89kb) downloaded 75 time(s). iode.test1.pdf (117kb) downloaded 72 time(s). iode.test2.pdf (122kb) downloaded 68 time(s). iode.Amplitude detector.pdf (148kb) downloaded 71 time(s). Box_models.pdf (146kb) downloaded 59 time(s).Documents: Intel ODE Solver Library Reference Manual (2018).pdf (240kb) downloaded 48 time(s).See also: ● Mathcad Toolbox● DotNumerics● SADEL● Matlab C++ Math Library● OSLO● lsoda● GNU Scientific Library (GSL)Edited by user 14 July 2022 12:48:44(UTC)
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Russia ☭ forever Viacheslav N. Mezentsev |
3 users thanked uni for this useful post.
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on 01/02/2019(UTC), on 01/02/2019(UTC), on 01/02/2019(UTC)
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