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Titlebook: Asymptotic Methods for Investigating Quasiwave Equations of Hyperbolic Type; Yu. Mitropolskii,G. Khoma,M. Gromyak Book 1997 Springer Scien

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Poisson and Pure Jump-Type Markov Processes,itions (initial or initial and boundary) imposed on them. The systematic application of the asymptotic methods to the investigation of nonstationary processes in nonlinear distributed parameter systems has begun in [62, 66].
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Gaussian Processes and Brownian Motion,on processes in systems which can be described by the second order partial differential equations of hyperbolic type. The chapter also establishes the weakest sufficient condition for a solution of these equations to exist and be unique and considers its representation as a Fourier series.
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Poisson and Pure Jump-Type Markov Processes,itions (initial or initial and boundary) imposed on them. The systematic application of the asymptotic methods to the investigation of nonstationary processes in nonlinear distributed parameter systems has begun in [62, 66].
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Periodic Solutions of the Second Order Integro-Differential Equations of Hyperbolic Type, hyperbolic type. Studying the existence of classical and continuous periodic solutions of these equations, we single out and investigate .-systems of the first and second class. The latter leads us to -periodic systems of the firts and second kind.
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Asymptotic Methods for the Second Order Partial Differential Equations of Hyperbolic Type,itions (initial or initial and boundary) imposed on them. The systematic application of the asymptotic methods to the investigation of nonstationary processes in nonlinear distributed parameter systems has begun in [62, 66].
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https://doi.org/10.1007/978-94-011-5752-0Boundary value problem; mathematical physics; ordinary differential equation; partial differential equa
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978-94-010-6426-2Springer Science+Business Media Dordrecht 1997
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Foundations of Modern ProbabilityIn the present chapter we prove several lemmas and theorems related to the construction of algorithms for finding periodic solutions of the nonlinear wave ordinary differential equations of second order [77, 148–155]. These lemmas and theorems will be used to study partial differential equations (of hyperbolic type) in subsequent chapters.
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