Dispersive transport equations and multiscale models /
IMA Volumes 135: Transport in Transition Regimes and 136: Dispersive Transport Equations and Multiscale Models focus on the modeling of processes for which transport is one of the most complicated components. This includes processes that involve a wdie range of length scales over different spatio-te...
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| Format: | eBook |
| Language: | English |
| Published: |
New York :
Springer,
[2004]
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| Series: | IMA volumes in mathematics and its applications ;
v. 136. |
| Subjects: | |
| Online Access: | Connect to the full text of this electronic book |
Table of Contents:
- On the derivation of nonlinear Schrodinger and Vlasov equations
- Taking on the multiscale challenge
- Nonresonant smoothing for coupled wave + transport equations and the Vlasov-Maxwell system
- Integrated multiscale process simulation in microelectronics
- Constitutive relations for viscoelastic fluid models derived from kinetic theory
- Dispersive/hyperbolic hydrodynamic models for quantum transport (in semiconductor devices)
- A review on small debye length and quasi- neutral limits in macroscopic models for charged fluids
- Global solution of the Cauchy problem for the relativistic Vlasov-Poisson equation with cylindrically symmetric data
- Mesoscopic scale modeling for chemical vapor deposition in semiconductor manufacturing
- Asymptotic limits in macroscopic plasma models
- A Landau-Zener formula for two-scaled Wigner measures
- Mesoscopic modeling of surface processes
- Homogenous and heterogeneous models for silicon oxidation
- Feature-scale to wafer-scale modeling and simulation of physical vapor deposition
- WKB analysis in the semiclassical limit of a discrete NLS system
- Bifurcation analysis of cylindrical Couette flow with evaporation and condensation by the Boltzmann equation.-Magnetic instability in a collisionless plasma.-Combined list of wokshops participants for IMA volumes 135: transport in transition regimes and 136: dispersive transport equations and multiscale models.