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A cohesive and comprehensive account of the modern theory of
iterative functional equations. Many of the results included have
appeared before only in research literature, making this an
essential volume for all those working in functional equations and
in such areas as dynamical systems and chaos, to which the theory
is closely related. The authors introduce the reader to the theory
and then explore the most recent developments and general results.
Fundamental notions such as the existence and uniqueness of
solutions to the equations are stressed throughout, as are
applications of the theory to such areas as branching processes,
differential equations, ergodic theory, functional analysis and
geometry. Other topics covered include systems of linear and
nonlinear equations of finite and infinite ORD various function
classes, conjugate and commutable functions, linearization,
iterative roots of functions, and special functional equations.
This text is an exhaustive account of the modern theory of
iterative functional equations. Many of the results included have
appeared before only in the research literature. The authors' main
purpose is to introduce the reader to the theory and guide him
through to the most recent developments and general results.
Fundamental notions such as the existence and uniqueness of
solutions to the equations are stressed throughout, as are
applications of the theory to such areas as branching processes,
differential equations, ergodic theory, functional analysis and
geometry.
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