Microfluid Mechanics
Book Details
Format
Hardback or Cased Book
ISBN-10
0071443223
ISBN-13
9780071443227
Publisher
McGraw-Hill Education - Europe
Imprint
McGraw-Hill Professional
Country of Manufacture
US
Country of Publication
GB
Publication Date
Sep 16th, 2005
Print length
350 Pages
Weight
631 grams
Dimensions
23.10 x 14.70 x 2.90 cms
Product Classification:
Science: general issues
Ksh 32,950.00
Manufactured on Demand
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Provides an understanding to designing, optimizing, fabricating and operating improved microelectromechanical (MEMS) devices. This reference features the fundamental principles governing microfluid mechanics. It covers mathematical models, which allows research engineers to measure and predict reactions of gaseous and liquids in microenvironments.
Publisher''s Note: Products purchased from Third Party sellers are not guaranteed by the publisher for quality, authenticity, or access to any online entitlements included with the product.
The rapid progress in fabricating and utilizing microelectromechanical (MEMS) systems during the last decade is not matched by corresponding understanding of the unconventional fluid flow involved in the operation and manufacture of these small devices. Providing such understanding is crucial to designing, optimizing, fabricating and operating improved MEMS devices. Microfluid Mechanics: Principles and Modeling is a rigorous reference that begins with the fundamental principles governing microfluid mechanics and progresses to more complex mathematical models, which will allow research engineers to better measure and predict reactions of gaseous and liquids in microenvironments.
The rapid progress in fabricating and utilizing microelectromechanical (MEMS) systems during the last decade is not matched by corresponding understanding of the unconventional fluid flow involved in the operation and manufacture of these small devices. Providing such understanding is crucial to designing, optimizing, fabricating and operating improved MEMS devices. Microfluid Mechanics: Principles and Modeling is a rigorous reference that begins with the fundamental principles governing microfluid mechanics and progresses to more complex mathematical models, which will allow research engineers to better measure and predict reactions of gaseous and liquids in microenvironments.
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