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This book is intended to serve as a unique and comprehensive textbook for scientists and engineers as well as advanced students in thermo-fluid courses. It provides an intensive monograph essential for understanding dynamics of ideal fluid, Newtonian fluid, non-Newtonian fluid and magnetic fluid. These distinct, yet intertwined subjects are addressed in an integrated manner. It starts with coherent treatment of fundamental continuum mechanics, with an emphasis on the intrinsic angular momentum, by which the concepts of ferrohydrodynamics are progressively built up, and serve as a foundation for later development. Flows of ideal and Newtonian fluids are followed by a detailed presentation of basic continuum equations for applications of fluid engineering, which cover the design and operations of various turbomachines, heat exchangers and flow elements. The study of the deformation and flow of matter, namely rheology, is discussed primarily with regard to the stresses generated during the flow of complex materials, which are represented by viscoelastic fluids. Throughout the book, the first priority is to illustrate the utilization of constitutive equations (relations) in order to facilitate an understanding of the physical flow phenomena and mechanisms. Moreover, it enables readers to classify flows and specific engineering problems, which can then be identified and formulated. In order to make the book self-contained, many exercises and problems are provided for each chapter in addition to the numerous pedagogical aids that have been incorporated throughout. The intention is to facilitate the reader to compose their knowledge into a better understanding of both the theoretical andapplicable aspects of fluid engineering.
A real boon for those studying fluid mechanics at all levels, this work is intended to serve as a comprehensive textbook for scientists and engineers as well as advanced students in thermo-fluid courses. It provides an intensive monograph essential for understanding dynamics of ideal fluid, Newtonian fluid, non-Newtonian fluid and magnetic fluid. These distinct, yet intertwined subjects are addressed in an integrated manner, with numerous exercises and problems throughout.
An international perspective on recent research, Compound
Semiconductors 2001 provides an overview of important developments
in III-V compound semiconductors, such as GaAs, InP, and GaN; II-VI
compounds, such as ZnSe and CdTe; and IV-IV compounds, such as SiC
and SiGe. The book contains 139 papers arranged in chapters on
electronic devices, optical devices, magnetic materials, novel
systems, quantum transport, optical characterization, quantum
nanostructures, and material growth and characterization. The
content encompasses the development of optical and electronic
devices based on nitride semiconductors as well as the steady
advances in traditional topics like III-V-based electronic and
optical devices, growth and processing, and characterization. The
book also includes novel research trends in quantum structures,
such as quantum wires and dots, and spintronics, which are very
promising for future developments in nanotechnology.
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