
The uniqueness and existence of solutions of a nonlocal problem proved for an equation of mixed type. This equation contains diffusion equation of fractional order. The boundary condition contains a linear combination of generalized operators of fractional order with the Gauss hypergeometric function. The solution of the problem is given explicitly.
Для уравнения смешанного типа, содержащего уравнение диффузии дробного порядка, доказаны единственность и существование решения нелокальной задачи, краевое условие которой представляет собой линейную комбинацию обобщенных операторов дробного порядка с гипергеометрической функцией Гаусса. Приведено явное решение исследуемой задачи.
КРАЕВАЯ ЗАДАЧА,ОБОБЩЕННЫЙ ОПЕРАТОР ДРОБНОГО ИНТЕГРО-ДИФФЕРЕНЦИРОВАНИЯ,ДИФФЕРЕНЦИАЛЬНОЕ УРАВНЕНИЕ ДРОБНОГО ПОРЯДКА,ГИПЕРГЕОМЕТРИЧЕСКАЯ ФУНКЦИЯ ГАУССА,BOUNDARY VALUE PROBLEM,GENERALIZED FRACTIONAL INTEGRO-DIFFERENTIATION OPERATOR,DIFFERENTIAL EQUATION OF FRACTIONAL ORDER,GAUSS HYPERGEOMETRIC FUNCTION
КРАЕВАЯ ЗАДАЧА,ОБОБЩЕННЫЙ ОПЕРАТОР ДРОБНОГО ИНТЕГРО-ДИФФЕРЕНЦИРОВАНИЯ,ДИФФЕРЕНЦИАЛЬНОЕ УРАВНЕНИЕ ДРОБНОГО ПОРЯДКА,ГИПЕРГЕОМЕТРИЧЕСКАЯ ФУНКЦИЯ ГАУССА,BOUNDARY VALUE PROBLEM,GENERALIZED FRACTIONAL INTEGRO-DIFFERENTIATION OPERATOR,DIFFERENTIAL EQUATION OF FRACTIONAL ORDER,GAUSS HYPERGEOMETRIC FUNCTION
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