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Computational Electromagnetic-Aerodynamics
Computational Electromagnetic-Aerodynamics
287,18
319,09 €
  • We will send in 10–14 business days.
Presents numerical algorithms, procedures, and techniques required to solve engineering problems relating to the interactions between electromagnetic fields and fluid flow and interdisciplinary technology for aerodynamics, electromagnetics, chemical-physic kinetics, and plasmadynamics Integrates interlinking computational model and simulation techniques of aerodynamics and electromagnetics Combines classic plasma drift-diffusion theory and electron impact ionization modeling for electromagneti…
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Presents numerical algorithms, procedures, and techniques required to solve engineering problems relating to the interactions between electromagnetic fields and fluid flow and interdisciplinary technology for aerodynamics, electromagnetics, chemical-physic kinetics, and plasmadynamics

  • Integrates interlinking computational model and simulation techniques of aerodynamics and electromagnetics
  • Combines classic plasma drift-diffusion theory and electron impact ionization modeling for electromagnetic-aerodynamic interactions
  • Describes models of internal degrees of freedom for vibration relaxation and electron excitations

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  • Author: Joseph J S Shang
  • Publisher:
  • ISBN-10: 1119155924
  • ISBN-13: 9781119155928
  • Format: 15.8 x 23.6 x 2.8 cm, kieti viršeliai
  • Language: English English

Presents numerical algorithms, procedures, and techniques required to solve engineering problems relating to the interactions between electromagnetic fields and fluid flow and interdisciplinary technology for aerodynamics, electromagnetics, chemical-physic kinetics, and plasmadynamics

  • Integrates interlinking computational model and simulation techniques of aerodynamics and electromagnetics
  • Combines classic plasma drift-diffusion theory and electron impact ionization modeling for electromagnetic-aerodynamic interactions
  • Describes models of internal degrees of freedom for vibration relaxation and electron excitations

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