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Introductory MEMS: Fabrication and Applications

AUTHOR Adams, Thomas M.; Layton, Richard A.
PUBLISHER Springer (12/21/2009)
PRODUCT TYPE Hardcover (Hardcover)

Description

Introductory MEMS: Fabrication and Applications is a practical introduction to MEMS for advanced undergraduate and graduate students. Part I introduces the student to the most commonly used MEMS fabrication techniques as well as the MEMS devices produced using these techniques. Part II focuses on MEMS transducers: principles of operation, modeling from first principles, and a detailed look at commercialized MEMS devices, in addition to microfluidics. Multiple field-tested laboratory exercises are included, designed to facilitate student learning about the fundamentals of microfabrication processes. References, suggested reading, review questions, and homework problems are provided at the close of each chapter.

Introductory MEMS: Fabrication and Applications is an excellent introduction to the subject, with a tested pedagogical structure and an accessible writing style suitable for students at an advanced undergraduate level across academic disciplines.

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Product Format
Product Details
ISBN-13: 9780387095103
ISBN-10: 0387095101
Binding: Hardback or Cased Book (Unsewn / Adhesive Bound)
Content Language: English
More Product Details
Page Count: 440
Carton Quantity: 14
Product Dimensions: 6.20 x 1.10 x 9.20 inches
Weight: 1.70 pound(s)
Feature Codes: Bibliography, Index, Table of Contents, Textbook, Glossary, Illustrated
Country of Origin: NL
Subject Information
BISAC Categories
Reference | Questions & Answers
Reference | General
Reference | Electronics - Microelectronics
Dewey Decimal: 001.642
Library of Congress Control Number: 2009939153
Descriptions, Reviews, Etc.
publisher marketing

Introductory MEMS: Fabrication and Applications is a practical introduction to MEMS for advanced undergraduate and graduate students. Part I introduces the student to the most commonly used MEMS fabrication techniques as well as the MEMS devices produced using these techniques. Part II focuses on MEMS transducers: principles of operation, modeling from first principles, and a detailed look at commercialized MEMS devices, in addition to microfluidics. Multiple field-tested laboratory exercises are included, designed to facilitate student learning about the fundamentals of microfabrication processes. References, suggested reading, review questions, and homework problems are provided at the close of each chapter.

Introductory MEMS: Fabrication and Applications is an excellent introduction to the subject, with a tested pedagogical structure and an accessible writing style suitable for students at an advanced undergraduate level across academic disciplines.

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Hardcover