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Updating the Artech House bestseller, "Fundamentals and Applications of Microfluidics", this newly revised second edition provides electrical and mechanical engineers with complete and current coverage of microfluidics - an emerging field involving fluid flow and devices in microscale and nanoscale. The second edition offers a greatly expanded treatment of nanotechnology, electrokinetics and flow theory. The book shows engineers how to take advantage of the performance benefits of microfluidics and serves as an instant reference for state-of-the-art microfluidics technology and applications. The wide range of applications discussed includes fluid control devices, gas and fluid measurement devices, medical testing equipment, and implantable drug pumps. Professionals learn how to choose the best fabrication and enabling technology for a specific microfluidic application.
This book presents the fundamentals of the thermoelectrical effect in silicon carbide (SiC), including the thermoresistive, thermoelectric, thermocapacitive and thermoelectronic effects. It summarizes the growth of SiC, its properties and fabrication processes for SiC devices and introduces the thermoelectrical sensing theories in different SiC morphologies and polytypes. Further, it reviews the recent advances in the characterization of the thermoelectrical effect in SiC at high temperatures. Discussing several desirable features of thermoelectrical SiC sensors and recent developments in these sensors, the book provides useful guidance on developing high sensitivity and linearity, fast-response SiC sensing devices based on thermoelectrical effects.
Die Mikrofluidik ist ein Teilgebiet der Mikrosystemtechnik. Obwohl sich dieses Forschungsfeld noch in der fruhen Entwicklungsphase befindet, verspricht Mikrofluidik grosse wissenschaftliche und kommerzielle Potenziale in der nahen Zukunft. Dieses Buch ist das erste deutschsprachige Fachbuch fur Universitatsstudenten und Ingenieure auf dem Gebiet der Mikrofluidik und Mikrosystemtechnik. Es ermoeglicht eine didaktisch sorgfaltig gegliederte Einfuhrung in die Mikrofluidik. Viele ausgearbeitete Rechenbeispiele und Fallbeispiele illustrieren den behandelten Inhalt, ermoeglichen ein leichtes Verstandnis der einzelnen Probleme und umfassen die wichtigsten Aspekte in der Entwicklung der mikrofluidischen Komponenten, der theoretischen Grundlagen, des Entwurfprozesses sowie deren Herstellung und Charakterisierung.
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