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This book addresses microwave chemistry at both the physical and
molecular level. Its main goal is to elaborate the highly complex
scientific issues involved in the fundamental theory of microwave
chemistry, and in industrialized applications in the near
future.The book provides detailed insights into the
characterization and measurement of dielectric properties under
complex conditions, such as chemical reactions, high-temperature
environments, etc. Considerable attention is paid to the theory of
dynamics in microwave chemistry, from the view of both physical
level and molecular level. Microwave-Material Interactions
simulation is used for physical dynamical analysis, while a
Microwave-Molecules Interactions methodology is proposed for
molecular dynamical analysis. In turn, calculational examples are
introduced for better description and validation, respectively.
Lastly, the book proposes design strategies and calculational
examples for large-scale application. Richly illustrated and
including a wealth of worked-out examples, this book is ideal for
all researchers, students and engineers who are just getting
started in the dynamics of microwave chemistry.
This book addresses microwave chemistry at both the physical and
molecular level. Its main goal is to elaborate the highly complex
scientific issues involved in the fundamental theory of microwave
chemistry, and in industrialized applications in the near
future.The book provides detailed insights into the
characterization and measurement of dielectric properties under
complex conditions, such as chemical reactions, high-temperature
environments, etc. Considerable attention is paid to the theory of
dynamics in microwave chemistry, from the view of both physical
level and molecular level. Microwave-Material Interactions
simulation is used for physical dynamical analysis, while a
Microwave-Molecules Interactions methodology is proposed for
molecular dynamical analysis. In turn, calculational examples are
introduced for better description and validation, respectively.
Lastly, the book proposes design strategies and calculational
examples for large-scale application. Richly illustrated and
including a wealth of worked-out examples, this book is ideal for
all researchers, students and engineers who are just getting
started in the dynamics of microwave chemistry.
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