In this paper, we present the theoretical approach developed by us in the network of dielectric fractional theories. In particular, we mention the general aspects of the non-equilibrium thermodynamics, and after an introduction to the interaction between biological tissues and electrical fields, we highlight the role of phenomenological and state equations; therefore, we recall a general formulation on linear response theory. In Section 6, we introduce the classical fractional model. All of this is essential to show the role and the importance of fractional models in the context of thermodynamic dielectric investigations (of living or inert matter), giving a complete vision of the fractional approach. In Section 7 and Section 8, we introduc...
Based on the new theoretical approach and the self-consistent iteration procedure for calculating th...
Space-fractional operators have been used with success in a variety of practical applications to des...
New lumped-element models of red blood cell mechanics can be constructed using fractional order gene...
In this work, we propose a fractional complex permittivity model of dielectric media with memory. De...
After remarking on non-equilibrium thermodynamics with internal variables, this paper highlights the...
We investigate a class of fractional time-partial differential equations describing the dynamics of ...
This review provides the latest developments and trends in the application of fractional calculus (F...
Fractional calculus is a mathematical approach dealing with derivatives and integrals of arbitrary a...
AbstractFractional (non-integer order) calculus can provide a concise model for the description of t...
Based on the Mori-Zwanzig formalism it becomes possible to suggest a general decoupling procedure, w...
Moving from the study of plasmonic materials with relaxation, in this work we propose a fractional A...
Space-fractional operators have been used with success in a variety of practical applica-tions to de...
In this paper we study the electric conductivity of continuous media in the contest of the non-equil...
In this short paper, we outline the basic results obtained for dielectric relaxation based on the fr...
Recently fractional calculus has been successfully applied in the description of complex dynamics an...
Based on the new theoretical approach and the self-consistent iteration procedure for calculating th...
Space-fractional operators have been used with success in a variety of practical applications to des...
New lumped-element models of red blood cell mechanics can be constructed using fractional order gene...
In this work, we propose a fractional complex permittivity model of dielectric media with memory. De...
After remarking on non-equilibrium thermodynamics with internal variables, this paper highlights the...
We investigate a class of fractional time-partial differential equations describing the dynamics of ...
This review provides the latest developments and trends in the application of fractional calculus (F...
Fractional calculus is a mathematical approach dealing with derivatives and integrals of arbitrary a...
AbstractFractional (non-integer order) calculus can provide a concise model for the description of t...
Based on the Mori-Zwanzig formalism it becomes possible to suggest a general decoupling procedure, w...
Moving from the study of plasmonic materials with relaxation, in this work we propose a fractional A...
Space-fractional operators have been used with success in a variety of practical applica-tions to de...
In this paper we study the electric conductivity of continuous media in the contest of the non-equil...
In this short paper, we outline the basic results obtained for dielectric relaxation based on the fr...
Recently fractional calculus has been successfully applied in the description of complex dynamics an...
Based on the new theoretical approach and the self-consistent iteration procedure for calculating th...
Space-fractional operators have been used with success in a variety of practical applications to des...
New lumped-element models of red blood cell mechanics can be constructed using fractional order gene...