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Titlebook: Linear Differential Equations in the Complex Domain; From Classical Theor Yoshishige Haraoka Book 2020 The Editor(s) (if applicable) and Th

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Yoshishige Haraokaonnecting it with non-phenomenological approaches.IncorporatCritically evaluating and synthesizing all the previous research on the phenomenology of Czech philosopher Jan Patočka, the book brings a new voice into contemporary philosophical discussions. It elucidates the development of Patočka’s phen
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Yoshishige Haraokators, and the attachment of prepositional phrases, adverbials, and relative clauses can be disambiguated intonationally (Jackendoff, 1972;Bolinger, 1989;Renzi, 1988). While there has been some experimental investigation of the role prosody plays in influencing hearers’ interpretation of certain synt
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0075-8434 ly scattered throughout the literature.Gives a clear introduThis book provides a detailed introduction to recent developments in the theory of linear differential systems and integrable total differential systems. Starting from the basic theory of linear ordinary differential equations and integrabl
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Middle Convolutionsystems, and how to describe it. As an illustrative example, we give an explicit description of the middle convolution for linear Pfaffian systems of KZ (Knizhnik-Zamolodchikov) type appeared in Example . in Chap. .. We also study the properties and applications of our middle convolution.
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Book 2020ms. Starting from the basic theory of linear ordinary differential equations and integrable systems, it proceeds to describe Katz theory and its applications, extending it to the case of several variables. In addition, connection problems, deformation theory, and the theory of integral representatio
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Introduction, forefront, and then explain the deformation theory and the theory of completely integrable systems in several variables so that the reader will get sufficient knowledge. In the following, we illustrate the contents of this book by using several examples.
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Connection Problem vibration of the string as a motion of each point on . ∈ [0, .] in .-direction. We denote the deviation in .-direction of a point at . at the time . by .(., .). Then the function .(., .) in two variables represents the vibration.
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Integral Representations of Solutions of Euler Typeion. The study of such integrals is one of the main topics in differential equations in the complex domain, however, we do not develop the general theory of integrals of Euler type. Instead, we shall study several illustrative examples, which will make the readers understand the main notions and main ideas.
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