1989International Journal of Mathematics and Mathematical SciencesOpen access

Application of decomposition to hyperbolic, parabolic, and elliptic partial differential equations

G. Adomian

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Abstract

The decomposition method is applied to examples of hyperbolic, parabolic, and elliptic partial differential equations without use of linearizatlon techniques. We consider first a nonlinear dissipative wave equation; second, a nonlinear equation modeling convectlon‐diffusion processes; and finally, an elliptic partial differential equation.

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The decomposition method is applied to examples of hyperbolic, parabolic, and elliptic partial differential equations without use of linearizatlon techniques. We consider first a nonlinear dissipative wave equation; second, a nonlinear equation modeling convectlon‐diffusion processes; and finally, an elliptic partial differential equation.

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Available abstract

The decomposition method is applied to examples of hyperbolic, parabolic, and elliptic partial differential equations without use of linearizatlon techniques. We consider first a nonlinear dissipative wave equation; second, a nonlinear equation modeling convectlon‐diffusion processes; and finally, an elliptic partial differential equation.

Key concepts: Elliptic partial differential equation, Mathematics, Hyperbolic partial differential equation, Parabolic partial differential equation, First-order partial differential equation, Partial differential equation, Mathematical analysis, Symbol of a differential operator

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