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The creation of affordable high speed optical communications using
standard semiconductor manufacturing technology is a principal aim
of silicon photonics research. This would involve replacing copper
connections with optical fibres or waveguides, and electrons with
photons. With applications such as telecommunications and
information processing, light detection, spectroscopy, holography
and robotics, silicon photonics has the potential to revolutionise
electronic-only systems. Providing an overview of the physics,
technology and device operation of photonic devices using
exclusively silicon and related alloys, the book includes: * Basic
Properties of Silicon * Quantum Wells, Wires, Dots and
Superlattices * Absorption Processes in Semiconductors * Light
Emitters in Silicon * Photodetectors , Photodiodes and
Phototransistors * Raman Lasers including Raman Scattering * Guided
Lightwaves * Planar Waveguide Devices * Fabrication Techniques and
Material Systems Silicon Photonics: Fundamentals and Devices
outlines the basic principles of operation of devices, the
structures of the devices, and offers an insight into
state-of-the-art and future developments.
Analysis of Transport Phenomena, Second Edition, provides a unified
treatment of momentum, heat, and mass transfer, emphasizing the
concepts and analytical techniques that apply to these transport
processes. The second edition has been revised to reinforce the
progression from simple to complex topics and to better introduce
the applied mathematics that is needed both to understand classical
results and to model novel systems. A common set of formulation,
simplification, and solution methods is applied first to heat or
mass transfer in stationary media and then to fluid mechanics,
convective heat or mass transfer, and systems involving various
kinds of coupled fluxes.FEATURES: * Explains classical methods and
results, preparing students for engineering practice and more
advanced study or research * Covers everything from heat and mass
transfer in stationary media to fluid mechanics, free convection,
and turbulence * Improved organization, including the establishment
of a more integrative approach * Emphasizes concepts and analytical
techniques that apply to all transport processes * Mathematical
techniques are introduced more gradually to provide students with a
better foundation for more complicated topics discussed in later
chapters NEW TO THIS EDITION: New chapters and sections clarify and
expand upon the first edition * Based largely on teaching
experience with the first edition, the entire text has been
reviewed in detail, and innumerable minor revisions made to improve
clarity. * There is a larger set of introductory examples (Chapter
3) * The presentation of similarity and perturbation methods is now
a separate chapter (Chapter 4). * The discussion of fluid
kinematics and constitutive equations has been reorganized (Chapter
6). * The discussion of simultaneous heat and mass transfer has
been expanded (Chapter 14).BL A new appendix section provides a
review of essential maths * The solution of ordinary differential
equations is reviewed in a new appendix (Appendix B), which also
summarizes the properties of commonly encountered special
functions. BL New worked examples and end-of-chapter problems *
Overall, there are 34 new worked examples in the text and
approximately 50 (exact number TBD) new end-of-chapter problems.
Designed for introductory undergraduate courses in fluid mechanics
for chemical engineers, this stand-alone textbook illustrates the
fundamental concepts and analytical strategies in a rigorous and
systematic, yet mathematically accessible manner. Using both
traditional and novel applications, it examines key topics such as
viscous stresses, surface tension, and the microscopic analysis of
incompressible flows which enables students to understand what is
important physically in a novel situation and how to use such
insights in modeling. The many modern worked examples and
end-of-chapter problems provide calculation practice, build
confidence in analyzing physical systems, and help develop
engineering judgment. The book also features a self-contained
summary of the mathematics needed to understand vectors and
tensors, and explains solution methods for partial differential
equations. Including a full solutions manual for instructors
available at www.cambridge.org/deen, this balanced textbook is the
ideal resource for a one-semester course.
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Blu-ray disc
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