語系
Ruzhansky, Michael.
概要
作品: | 1 作品在 8 項出版品 1 種語言 |
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書目資訊
Methods of Fourier analysis and approximation theory
by:
Ruzhansky, Michael.; SpringerLink (Online service); Tikhonov, Sergey.
(書目-電子資源)
Evolution equations of hyperbolic and schrodinger typeasymptotics, estimates and nonlinearities /
by:
Ruzhansky, Michael.; SpringerLink (Online service); Sugimoto, Mitsuru.; Wirth, Jens.
(書目-電子資源)
Hardy inequalities on homogeneous groups100 years of Hardy inequalities /
by:
Ruzhansky, Michael.; SpringerLink (Online service); Suragan, Durvudkhan.
(書目-電子資源)
Analysis and partial differential equationsperspectives from developing countries : Imperial College London, UK, 2016 /
by:
Delgado, Julio.; Ruzhansky, Michael.; SpringerLink (Online service)
(書目-電子資源)
Advances in real and complex analysis with applications
by:
Ruzhansky, Michael.; SpringerLink (Online service)
(書目-電子資源)
Modern aspects of the theory of partial differential equations
by:
Ruzhansky, Michael.; SpringerLink (Online service); Wirth, Jens.
(書目-電子資源)
Pseudo-differential operators and symmetriesbackground analysis and advanced topics /
by:
Ruzhansky, Michael.; SpringerLink (Online service); Turunen, Ville.
(書目-電子資源)
Fourier analysispseudo-differential operators, time-frequency analysis and partial differential equations /
by:
Ruzhansky, Michael.; SpringerLink (Online service); Turunen, Ville.
(書目-電子資源)
Quantization on Nilpotent lie groups
by:
Fischer, Veronique.; Ruzhansky, Michael.; SpringerLink (Online service)
(書目-電子資源)
Analytic methods in interdisciplinary applications
by:
Mityushev, Vladimir V.; Ruzhansky, Michael.; SpringerLink (Online service)
(書目-電子資源)
主題
Schrodinger equation.
Operator Theory.
Numerical Analysis.
Potential theory (Mathematics)
Pseudodifferential operators.
Global Analysis and Analysis on Manifolds.
Evolution equations.
Real Functions.
Nilpotent Lie groups.
Topological Groups, Lie Groups.
Mathematics.
Analysis.
Approximation theory.
Potential Theory.
Functional Analysis.
Fourier Analysis.
Numbers, Complex.
Harmonic analysis.
Global differential geometry.
Partial Differential Equations.
Fourier analysis.
Mathematical analysis.
Mathematical Physics.
Calculus of Variations and Optimal Control; Optimization.
Abstract Harmonic Analysis.
Sequences, Series, Summability.
Functional analysis.
Differential Geometry.
Differential equations, Partial.
Differential equations, Hyperbolic.
Mathematical Applications in the Physical Sciences.
Topological groups.