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Analytical Solution Methods for Boundary Value Problems (Hardcover)
Loot Price: R1,924
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Analytical Solution Methods for Boundary Value Problems (Hardcover)
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Analytical Solution Methods for Boundary Value Problems is an
extensively revised, new English language edition of the original
2011 Russian language work, which provides deep analysis methods
and exact solutions for mathematical physicists seeking to model
germane linear and nonlinear boundary problems. Current analytical
solutions of equations within mathematical physics fail completely
to meet boundary conditions of the second and third kind, and are
wholly obtained by the defunct theory of series. These solutions
are also obtained for linear partial differential equations of the
second order. They do not apply to solutions of partial
differential equations of the first order and they are incapable of
solving nonlinear boundary value problems. Analytical Solution
Methods for Boundary Value Problems attempts to resolve this issue,
using quasi-linearization methods, operational calculus and spatial
variable splitting to identify the exact and approximate analytical
solutions of three-dimensional non-linear partial differential
equations of the first and second order. The work does so uniquely
using all analytical formulas for solving equations of mathematical
physics without using the theory of series. Within this work,
pertinent solutions of linear and nonlinear boundary problems are
stated. On the basis of quasi-linearization, operational
calculation and splitting on spatial variables, the exact and
approached analytical solutions of the equations are obtained in
private derivatives of the first and second order. Conditions of
unequivocal resolvability of a nonlinear boundary problem are found
and the estimation of speed of convergence of iterative process is
given. On an example of trial functions results of comparison of
the analytical solution are given which have been obtained on
suggested mathematical technology, with the exact solution of
boundary problems and with the numerical solutions on well-known
methods.
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