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The MEMS handbook. 2 : Design and fabrication.
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ISBN: 0849391385 Year: 1977 Publisher: Cleveland CRC Press

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Abstract

Thoroughly revised and updated, the new edition of the best-selling MEMS Handbook is now presented as a three-volume set that offers state-of-the-art coverage of microelectromechanical systems. Through chapters contributed by top experts and pioneers in the field, MEMS: Design and Fabrication presents a comprehensive look at the materials, procedures, tools, and techniques of MEMS fabrication. New chapters in this edition examine the materials and fabrication of polymer microsystems and optical diagnostics for investigating the entrance length in microchannels. Rigorous yet accessible, this volume provides the practical knowledge needed for work in cutting-edge MEMS applications.

The MEMS handbook. 1 : Introduction and fundamentals.
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ISBN: 0849391377 0849321069 Year: 1977 Publisher: Cleveland CRC Press

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Thoroughly revised and updated, the new edition of the best-selling MEMS Handbook is now presented as a three-volume set that offers state-of-the-art coverage of microelectromechanical systems. The first volume, MEMS: Introduction and Fundamentals builds the required background and explores various physical considerations of MEMS. Topics include scaling, simulation models, the basics of control theory, and the physics of materials flow, thin liquid films, and bubble/drop transport. New chapters in this edition address lattice Boltzmann simulations and microscale hydrodynamics. Standing well on its own, this books builds an outstanding foundation for further exploration of MEMS and their applications.

The MEMS handbook. 3 : Applications.
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ISBN: 0849391393 Year: 1977 Publisher: Cleveland CRC Press

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Thoroughly revised and updated, the new edition of the best-selling MEMS Handbook is now presented as a three-volume set that offers state-of-the-art coverage of microelectromechanical systems. Through chapters contributed by top experts in the field, this volume explores a wide range of MEMS applications, ranging from inertial sensors, microactuators, and microscale vacuum pumps to microrobtics and micro-droplet generators. The final section of the book looks toward the future of MEMS, including MEMS autonomous control of free-shear flows and fabrication technologies for nanoscale devices. New chapters in this edition explore topics such as nonlinear electrokinetic devices and molecular self-assembly.

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