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Titlebook: Geometrical Formulation of Renormalization-Group Method as an Asymptotic Analysis; With Applications to Teiji Kunihiro,Yuta Kikuchi,Kyosuke

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发表于 2025-3-25 04:41:26 | 显示全部楼层
Introduction to Relativistic Dissipative Fluid Dynamics and Its Derivation from Relativistic Boltzmaluid dynamic equation from the underlying microscopic theory such as the relativistic Boltzmann equation (RBE). Then after some of basic properties of the RBE are described, we make a detailed account of the Chapman-Enskog and the Israel-Stewart methods for deriving fluid dynamic equations from the RBE, with some critical comments.
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Teiji Kunihiro,Yuta Kikuchi,Kyosuke TsumuraSheds light on geometrical notion of renormalization group theory.Offers systematic asymptotic analysis in evolution equations.Describes contents a priori and clearly
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Creating Shortages of Human Assets naïve perturbation series of solutions of ordinary differential equations. This chapter also constitutes an elementary introduction to some standard methods for solving linear inhomogeneous ordinary differential equations in the undergraduate level, and a detailed account is given of the method of
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Narendra N. Dalei,Anshuman Guptad geometrically on the basis of the theory of envelopes of curves: The central ingredient of the method is identified with a construction of the envelope curve of the perturbative solutions around arbitrary initial time. A unique point of the method is to allow the appearance of secular terms in con
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Economic Appraisal: The Nuts and Bolts,e Hopf-bifurcation point in Brusselator with and without a diffusion term. Then a couple of examples are analyzed in the RG method, the unperturbed operators of both of which are not semi-simple and have a Jordan cell structure; one is an extended Takens model and the other is the Benney equation, f
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In defense of institutionalism,luid dynamic equation from the underlying microscopic theory such as the relativistic Boltzmann equation (RBE). Then after some of basic properties of the RBE are described, we make a detailed account of the Chapman-Enskog and the Israel-Stewart methods for deriving fluid dynamic equations from the
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