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Jets From Young Stars III: Numerical MHD and Instabilities (Repost)

Posted By: AvaxGenius
Jets From Young Stars III: Numerical MHD and Instabilities (Repost)

Jets From Young Stars III: Numerical MHD and Instabilities by S. Massaglia, G. Bodo, A. Mignone, P. Rossi
English | PDF | 2008 | 182 Pages | ISBN : 3540769668 | 3.5 MB

This volume contains the lecture notes of the Third JETSET School on Jets from Young Stars focussing on Numerical MHD and Instabilities. The introductory lectures presented here cover the basic concepts of the numerical methods for the integration of hydrodynamic and magnetohydrodynamic equations and of the applications of these methods to the treatment of the instabilities relevant for the physics of stellar jets.

Controllability of Partial Differential Equations Governed by Multiplicative Controls

Posted By: AvaxGenius
Controllability of Partial Differential Equations Governed by Multiplicative Controls

Controllability of Partial Differential Equations Governed by Multiplicative Controls by Alexander Y. Khapalov
English | PDF | 2010 | 296 Pages | ISBN : 3642124127 | 3.2 MB

The goal of this monograph is to address the issue of the global controllability of partial differential equations in the context of multiplicative (or bilinear) controls, which enter the model equations as coefficients. The mathematical models we examine include the linear and nonlinear parabolic and hyperbolic PDE's, the Schrödinger equation, and coupled hybrid nonlinear distributed parameter systems modeling the swimming phenomenon. The book offers a new, high-quality and intrinsically nonlinear methodology to approach the aforementioned highly nonlinear controllability problems.

Principles of Partial Differential Equations

Posted By: AvaxGenius
Principles of Partial Differential Equations

Principles of Partial Differential Equations by Alexander Komech
English | PDF(True) | 2009 | 165 Pages | ISBN : 1441910956 | 3.2 MB

This concise book covers the classical tools of PDE theory used in today's science and engineering: characteristics, the wave propagation, the Fourier method, distributions, Sobolev spaces, fundamental solutions, and Green's functions. The approach is problem-oriented, giving the reader an opportunity to master solution techniques.