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This book focuses on the recent development of fractional
differential equations, integro-differential equations, and
inclusions and inequalities involving the Hadamard derivative and
integral. Through a comprehensive study based in part on their
recent research, the authors address the issues related to initial
and boundary value problems involving Hadamard type differential
equations and inclusions as well as their functional counterparts.
The book covers fundamental concepts of multivalued analysis and
introduces a new class of mixed initial value problems involving
the Hadamard derivative and Riemann-Liouville fractional integrals.
In later chapters, the authors discuss nonlinear Langevin equations
as well as coupled systems of Langevin equations with fractional
integral conditions. Focused and thorough, this book is a useful
resource for readers and researchers interested in the area of
fractional calculus.
The main objective of this book is to extend the scope of the
q-calculus based on the definition of q-derivative [Jackson (1910)]
to make it applicable to dense domains. As a matter of fact,
Jackson's definition of q-derivative fails to work for impulse
points while this situation does not arise for impulsive equations
on q-time scales as the domains consist of isolated points covering
the case of consecutive points. In precise terms, we study quantum
calculus on finite intervals.In the first part, we discuss the
concepts of qk-derivative and qk-integral, and establish their
basic properties. As applications, we study initial and boundary
value problems of impulsive qk-difference equations and inclusions
equipped with different kinds of boundary conditions. We also
transform some classical integral inequalities and develop some new
integral inequalities for convex functions in the context of
qk-calculus. In the second part, we develop fractional quantum
calculus in relation to a new qk-shifting operator and establish
some existence and qk uniqueness results for initial and boundary
value problems of impulsive fractional qk-difference equations.
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