Partial Differential EquationsSpringer, 1982 - 249 páginas This book is a very well-accepted introduction to the subject. In it, the author identifies the significant aspects of the theory and explores them with a limited amount of machinery from mathematical analysis. Now, in this fourth edition, the book has again been updated with an additional chapter on Lewy 's example of a linear equation without solutions. |
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Página 50
... positive eigenvalues of the matrix B. Let , say , the number r be such that λ1 > λ2 ... > λ , > 0 > d , + 1 > ... > dλN • ( 5.31 ) The characteristics C ; of the ith family then have positive slopes for i = 1 , ... , r , negative ones ...
... positive eigenvalues of the matrix B. Let , say , the number r be such that λ1 > λ2 ... > λ , > 0 > d , + 1 > ... > dλN • ( 5.31 ) The characteristics C ; of the ith family then have positive slopes for i = 1 , ... , r , negative ones ...
Página 65
... positive numbers M , r such that for all xe N 1 – f ( x ) = Σ ; ( Daƒ ( y ) ) ( x − y ) a α a ! | D3fx ( x ) | ≤ M | B | ! r- | B | for all ẞe Z " and all k . ( 3.9a ) ( 3.9b ) Real analytic ƒ enjoy the property of unique continuation ...
... positive numbers M , r such that for all xe N 1 – f ( x ) = Σ ; ( Daƒ ( y ) ) ( x − y ) a α a ! | D3fx ( x ) | ≤ M | B | ! r- | B | for all ẞe Z " and all k . ( 3.9a ) ( 3.9b ) Real analytic ƒ enjoy the property of unique continuation ...
Página 171
... positive definite for all ( x , t ) on S1 . Let A , A1 , ... , A " be symmetric , A positive definite , and R2 be space - like . Let u e C1 ( R ) be a solution of Luw for ( x , t ) = R2 u = f ( x ) for t = 0 , | x | ≤ a . ( 3.27d ) ...
... positive definite for all ( x , t ) on S1 . Let A , A1 , ... , A " be symmetric , A positive definite , and R2 be space - like . Let u e C1 ( R ) be a solution of Luw for ( x , t ) = R2 u = f ( x ) for t = 0 , | x | ≤ a . ( 3.27d ) ...
Contenido
Chapter | 1 |
Examples | 2 |
Analytic Solution and Approximation Methods in a Simple Example Problems 4 Quasilinear Equations | 4 |
Derechos de autor | |
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analytic functions assume ball boundary bounded uniformly Cauchy data Cauchy problem Cauchy sequence Chapter characteristic curves class C² coefficients compact support complex constant continuous converge defined denote derivatives of orders difference quotients Dirichlet problem domain of dependence elliptic exists follows formula Fourier function f fundamental solution Gårding Gårding's inequality given harmonic function heat equation hence Hint Ho(N holds identity implies inequality initial data initial values initial-value problem integral surface Laplace equation Lemma linear matrix maximum principle neighborhood non-characteristic norm obtained open set partial differential equation plane polynomial power series prescribed proof real analytic real numbers satisfies scalar Show solution u(x,t solved space square integrable sufficiently small test functions theorem u₁ vanish variables vector wave equation x₁ ΘΩ