9781107021051-1107021057-Computational Methods for Electromagnetic Phenomena: Electrostatics in Solvation, Scattering, and Electron Transport

Computational Methods for Electromagnetic Phenomena: Electrostatics in Solvation, Scattering, and Electron Transport

ISBN-13: 9781107021051
ISBN-10: 1107021057
Edition: 1
Author: Wei Cai
Publication date: 2013
Publisher: Cambridge University Press
Format: Hardcover 461 pages
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Book details

ISBN-13: 9781107021051
ISBN-10: 1107021057
Edition: 1
Author: Wei Cai
Publication date: 2013
Publisher: Cambridge University Press
Format: Hardcover 461 pages

Summary

Computational Methods for Electromagnetic Phenomena: Electrostatics in Solvation, Scattering, and Electron Transport (ISBN-13: 9781107021051 and ISBN-10: 1107021057), written by authors Wei Cai, was published by Cambridge University Press in 2013. With an overall rating of 4.1 stars, it's a notable title among other Chemical (Applied, Physics, Electromagnetism, Engineering) books. You can easily purchase or rent Computational Methods for Electromagnetic Phenomena: Electrostatics in Solvation, Scattering, and Electron Transport (Hardcover) from BooksRun, along with many other new and used Chemical books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $0.3.

Description

A unique and comprehensive graduate text and reference on numerical methods for electromagnetic phenomena, from atomistic to continuum scales, in biology, optical-to-micro waves, photonics, nanoelectronics and plasmas. The state-of-the-art numerical methods described include: • Statistical fluctuation formulae for the dielectric constant • Particle-Mesh-Ewald, Fast-Multipole-Method and image-based reaction field method for long-range interactions • High-order singular/hypersingular (Nyström collocation/Galerkin) boundary and volume integral methods in layered media for Poisson-Boltzmann electrostatics, electromagnetic wave scattering and electron density waves in quantum dots • Absorbing and UPML boundary conditions • High-order hierarchical Nédélec edge elements • High-order discontinuous Galerkin (DG) and Yee finite difference time-domain methods • Finite element and plane wave frequency-domain methods for periodic structures • Generalized DG beam propagation method for optical waveguides • NEGF(Non-equilibrium Green's function) and Wigner kinetic methods for quantum transport • High-order WENO and Godunov and central schemes for hydrodynamic transport • Vlasov-Fokker-Planck and PIC and constrained MHD transport in plasmas

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