The equivalence groupoid of reduced general Burgers-Korteweg-de Vries equations with space-dependent coefficients is generated by a four-dimensional usual equivalence group together with the equivalence groups of explicitly listed normalized subclasses.
Enhanced group analysis and conservation laws of variable coefficient reaction-diffusion equations with power nonlinearities
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abstract
A class of variable coefficient (1+1)-dimensional nonlinear reaction-diffusion equations of the general form $f(x)u_t=(g(x)u^nu_x)_x+h(x)u^m$ is investigated. Different kinds of equivalence groups are constructed including ones with transformations which are nonlocal with respect to arbitrary elements. For the class under consideration the complete group classification is performed with respect to convenient equivalence groups (generalized extended and conditional ones) and with respect to the set of all point transformations. Usage of different equivalences and coefficient gauges plays the major role for simple and clear formulation of the final results. The corresponding set of admissible transformations is described exhaustively. Then, using the most direct method, we classify local conservation laws. Some exact solutions are constructed by the classical Lie method.
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Equivalence groupoid of a class of general Burgers-Korteweg-de Vries equations with space-dependent coefficients
The equivalence groupoid of reduced general Burgers-Korteweg-de Vries equations with space-dependent coefficients is generated by a four-dimensional usual equivalence group together with the equivalence groups of explicitly listed normalized subclasses.