AbstractA nonlinear integro-differential equation that models a coagulation and multiple fragmentation process in which discrete fragmentation mass loss can occur is examined using the theory of strongly continuous semigroups of operators. Under the assumptions that the coagulation kernel K is bounded and the fragmentation rate function a satisfies a linear growth condition, global existence and uniqueness of solutions that lose mass in accordance with the model are established. In the case when no coagulation is present and the fragmentation process is governed by power-law kernels, an explicit formula is given for the substochastic semigroup associated with the resulting mass-loss fragmentation equation
We examine an infinite system of ordinary differential equations that models the coagulation and fra...
In this paper we give an elementary proof of the unique, global-in-time solvability of the coagulati...
AbstractIn this paper we show that continuous fragmentation operators are sectorial for a large rang...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
We examine an infinite system of ordinary differential equations that models the coagulation and fra...
In this paper we give an elementary proof of the unique, global-in-time solvability of the coagulati...
AbstractIn this paper we show that continuous fragmentation operators are sectorial for a large rang...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A nonlinear integro-differential equation that models a coagulation and multiple fragmentation proce...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
A non-linear integro-differential equation modelling coagulation and fragmentation is investigated u...
We examine an infinite system of ordinary differential equations that models the coagulation and fra...
In this paper we give an elementary proof of the unique, global-in-time solvability of the coagulati...
AbstractIn this paper we show that continuous fragmentation operators are sectorial for a large rang...