Runge–Kutta methods

Results: 80



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1

MATHEMATICS OF COMPUTATION Volume 00, Number 0, Pages 000–000 SXXSTIFFLY ACCURATE RUNGE–KUTTA METHODS FOR NONLINEAR EVOLUTION PROBLEMS

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Source URL: www.math.tu-berlin.de

- Date: 2012-02-06 05:28:15
    2

    Volume Preservation by Runge-Kutta Methods Marcus Webb University of Cambridge Joint work with P. Bader, D.I. McLaren, G.R.W. Quispel (La Trobe University, Melbourne) 15th September 2015

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    Source URL: www.damtp.cam.ac.uk

    - Date: 2015-09-15 05:59:27
      3Mathematical analysis / Differential calculus / RungeKutta methods / Numerical analysis / Numerical methods for ordinary differential equations / Stiff equation / Truncation error / CashKarp method / Richardson extrapolation

      Noname manuscript No. (will be inserted by the editor) A Linearly Fourth Order Multirate Runge-Kutta Method with Error Control Pak-Wing Fok

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      Source URL: udel.edu

      Language: English - Date: 2015-03-08 19:12:29
      4Applied mathematics / Science / Harmonic oscillator / Numerical methods for ordinary differential equations / Stability / Runge–Kutta methods / Damping / Differential equation / Numerical analysis / Ordinary differential equations / Mathematics / Stiff equation

      Stability analysis in a model of the human inner ear, part 3 Project proposal In the 1980s a computational (numerical) model of the human inner ear was developed in a cooperation between the depts. of Biophysics and Appl

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      Source URL: ta.twi.tudelft.nl

      Language: English - Date: 2014-05-08 16:00:44
      5Physics / Numerical analysis / Dynamical systems / Runge–Kutta methods / Spectral method / Multibody system / Optimal control / Symplectic integrator / Stiff equation / Mathematical analysis / Mathematics / Mechanics

      Schriftenverzeichnis von Peter Rentrop

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      Source URL: www-m2.ma.tum.de

      Language: English - Date: 2013-06-07 02:50:21
      6Runge–Kutta methods / Differential calculus / Numerical analysis / Stiff equation / Differential equation / Ordinary differential equation / Numerical integration / Derivative / Numerical methods for ordinary differential equations / Calculus / Mathematical analysis / Mathematics

      Chapter 7 Ordinary Differential Equations Matlab has several different functions for the numerical solution of ordinary differential equations. This chapter describes the simplest of these functions and then

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      Source URL: www.mathworks.com

      Language: English - Date: 2013-09-25 13:50:03
      7Science / Linear multistep method / Integrator / Stiff equation / Numerical analysis / Numerical integration / Pseudospectral optimal control / Numerical methods for ordinary differential equations / Mathematics / Runge–Kutta methods / Applied mathematics

      Accurate and stable time integrators

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      Source URL: www.mssanz.org.au

      Language: English - Date: 2013-01-16 21:24:51
      8Runge–Kutta methods / Numerical methods for ordinary differential equations / Stiff equation / Partial differential equation / Linear multistep method / Euler method / Explicit and implicit methods / Predictor–corrector method / Midpoint method / Numerical analysis / Calculus / Mathematical analysis

      Index P -th order accurate 135 local truncation error 205

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      Source URL: vmm.math.uci.edu

      Language: English - Date: 2010-07-07 15:29:34
      9Runge–Kutta methods / Numerical methods for ordinary differential equations / Integration

      The Advanced Research WRF (ARW) Dynamics Solver Bill Skamarock Jimy Dudhia

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      Source URL: www2.mmm.ucar.edu

      Language: English - Date: 2014-02-03 19:37:13
      10Runge–Kutta methods / Numerical analysis / Linear multistep method / Spectral method / Partial differential equation / Explicit and implicit methods / Stiff equation / Numerical methods for ordinary differential equations / Calculus / Mathematical analysis / Differential calculus

      Chapter 5 Numerical Methods 5.1. Introduction In the previous chapters we have developed a theoretical understanding of initial value problems for ODEs. Only rarely can these problems be solved in closed form, and even

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      Source URL: vmm.math.uci.edu

      Language: English - Date: 2010-07-07 15:31:11
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