<--- Back to Details
First PageDocument Content
Numerical analysis / Differential calculus / Computational science / Computational fluid dynamics / Ordinary differential equations / RungeKutta methods / Particle-in-cell / Numerical methods for ordinary differential equations / Temporal discretization / Stiff equation / Finite volume method / Parareal
Date: 2008-08-19 15:53:19
Numerical analysis
Differential calculus
Computational science
Computational fluid dynamics
Ordinary differential equations
RungeKutta methods
Particle-in-cell
Numerical methods for ordinary differential equations
Temporal discretization
Stiff equation
Finite volume method
Parareal

Implicit-Explicit Time Integration of a High-Order Particle-in-Cell Method with Hyperbolic Divergence Cleaning. G.B. Jacobs a J.S. Hesthaven b a Department b Division

Add to Reading List

Source URL: attila.sdsu.edu

Download Document from Source Website

File Size: 286,60 KB

Share Document on Facebook

Similar Documents

Classroom Voting Patterns in Differential Calculus Kelly Cline Department of Mathematics, Engineering, and Computer Science Carroll College 1601 North Benton Avenue Helena, MTUSA.

Classroom Voting Patterns in Differential Calculus Kelly Cline Department of Mathematics, Engineering, and Computer Science Carroll College 1601 North Benton Avenue Helena, MTUSA.

DocID: 1uTrt - View Document

Classroom Voting Questions: Multivariable Calculus 14.3 Local Linearity and the Differential 1. Let f (2, 3) = 7, fx (2, 3) = −1, and fy (2, 3) = 4. Then the tangent plane to the surface z = f (x, y) at the point (2, 3

Classroom Voting Questions: Multivariable Calculus 14.3 Local Linearity and the Differential 1. Let f (2, 3) = 7, fx (2, 3) = −1, and fy (2, 3) = 4. Then the tangent plane to the surface z = f (x, y) at the point (2, 3

DocID: 1uFiE - View Document

AP Calculus 11.4 Separation of Variables Worksheet  Name Circle which of the following differential equations are separable and cross out the equations that are not separable. Do not solve the equations.

AP Calculus 11.4 Separation of Variables Worksheet Name Circle which of the following differential equations are separable and cross out the equations that are not separable. Do not solve the equations.

DocID: 1utgn - View Document

EART 111 Mathematics in the Earth Sciences Fall 2016 Syllabus Details Brief Description Vectors, 3D geometry, partial differentiation, vector calculus, matrix algebra, differential equations. Emphasis is on practical app

EART 111 Mathematics in the Earth Sciences Fall 2016 Syllabus Details Brief Description Vectors, 3D geometry, partial differentiation, vector calculus, matrix algebra, differential equations. Emphasis is on practical app

DocID: 1rWBM - View Document

TRANSFER OF ENERGY TO HIGH FREQUENCIES IN THE CUBIC DEFOCUSING ¨ NONLINEAR SCHRODINGER EQUATION J. COLLIANDER, M. KEEL, G. STAFFILANI, H. TAKAOKA, AND T. TAO

TRANSFER OF ENERGY TO HIGH FREQUENCIES IN THE CUBIC DEFOCUSING ¨ NONLINEAR SCHRODINGER EQUATION J. COLLIANDER, M. KEEL, G. STAFFILANI, H. TAKAOKA, AND T. TAO

DocID: 1rtQ6 - View Document