
e-Book Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology download
by Marc J. Madou
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University of California, Irvine
University of California, Irvine
Solid-State Physics, Fluidics, an. arc J. Madou. Manufacturing Techniques fo.
Solid-State Physics, Fluidics, an. 2. 3. From MEMS to Bio-MEMS an. Fundamentals of Microfabrication an.
Providing a clear theoretical understanding of MEMS and NEMS, Solid-State Physics, Fluidics. Then you can start reading Kindle books on your smartphone, tablet, or computer - no Kindle device required. To get the free app, enter your mobile phone number.
Devices and Systems Electrochemical and Optical Analytical Techniques Introduction Intermolecular Forces Electrochemistry Optical Spectroscopy Comparison of Optical versus Electrochemical.
Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology. Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology. Electrochemical and Optical Analytical Techniques Introduction Intermolecular Forces Electrochemistry Optical Spectroscopy Comparison of Optical versus Electrochemical Sensors Questions References.
Set, the book presents the electronic, mechanical, and optical properties of solids that are used in integrated circuits .
Set, the book presents the electronic, mechanical, and optical properties of solids that are used in integrated circuits, MEMS, and NEMS and covers quantum mechanics, electrochemistry, fluidics, and photonics. It lays the foundation for a qualitative and quantitative theoretical understanding of MEMS and NEMS. Lists with This Book.
Providing a clear theoretical understanding of MEMS and NEMS, Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology focuses on nanotechnology and the science behind it, including solid-state physics
Providing a clear theoretical understanding of MEMS and NEMS, Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology focuses on nanotechnology and the science behind it, including solid-state physics. It provides a clear understanding of the electronic, mechanical, and optical properties of solids relied on in integrated circuits (ICs), MEMS, and NEMS. After exploring the rise of Si, MEMS, and NEMS in a historical context, the text discusses crystallography, quantum mechanics, the band theory of solids, and the silicon single crystal.
Electromechanical and optical analytical processes in miniaturized components and systems.
In Solid State Physics, Fluidics and Analytical Techniques in Micro- and Nanotechnology we lay the foundations for a qualitative and quantitative theoretical understanding of micro-and al systems, . Electromechanical and optical analytical processes in miniaturized components and systems.
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Find many great new & used options and get the best deals for Solid-State Physics, Fluidics, and Analytical . Providing a theoretical understanding of MEMS and NEMS, this book covers various aspects of solid state physics behind nanotechnology and science
Providing a theoretical understanding of MEMS and NEMS, this book covers various aspects of solid state physics behind nanotechnology and science. After exploring the rise of Si, MEMS, and NEMS in a historical context, it discusses crystallography, quantum mechanics, the band theory of solids, and the silicon single crystal.
focuses on nanotechnology and the science behind it, including solid-state physics. Providing a clear theoretical understanding of MEMS and NEMS, Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology focuses on nanotechnology and the science behind it, including solid-state physics. It provides a clear understanding of the electronic, mechanical, and optical properties of solids relied on in integra.
Providing a clear theoretical understanding of MEMS and NEMS, Solid-State Physics, Fluidics, and Analytical Techniques in Micro- and Nanotechnology focuses on nanotechnology and the science behind it, including solid-state physics. It provides a clear understanding of the electronic, mechanical, and optical properties of solids relied on in integrated circuits (ICs), MEMS, and NEMS. After exploring the rise of Si, MEMS, and NEMS in a historical context, the text discusses crystallography, quantum mechanics, the band theory of solids, and the silicon single crystal. It concludes with coverage of photonics, the quantum hall effect, and superconductivity. Fully illustrated in color, the text offers end-of-chapter problems, worked examples, extensive references, and a comprehensive glossary of terms.
Topics include:
Crystallography and the crystalline materials used in many semiconductor devices Quantum mechanics, the band theory of solids, and the relevance of quantum mechanics in the context of ICs and NEMS Single crystal Si properties that conspire to make Si so important Optical properties of bulk 3D metals, insulators, and semiconductors Effects of electron and photon confinement in lower dimensional structures How evanescent fields on metal surfaces enable the guiding of light below the diffraction limit in plasmonics Metamaterials and how they could make for perfect lenses, changing the photonic field forever Fluidic propulsion mechanisms and the influence of miniaturization on fluid behavior Electromechanical and optical analytical processes in miniaturized components and systems
The first volume in Fundamentals of Microfabrication and Nanotechnology, Third Edition, Three-Volume Set, the book presents the electronic, mechanical, and optical properties of solids that are used in integrated circuits, MEMS, and NEMS and covers quantum mechanics, electrochemistry, fluidics, and photonics. It lays the foundation for a qualitative and quantitative theoretical understanding of MEMS and NEMS.
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