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Micromixers[electronic resource] :fu...
~
Nguyen, Nam-Trung, (1970-)
Micromixers[electronic resource] :fundamentals, design and fabrication /
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
杜威分類號:
660/.284292
書名/作者:
Micromixers : fundamentals, design and fabrication // Nam-Trung Nguyen.
作者:
Nguyen, Nam-Trung,
出版者:
Norwich, NY : : William Andrew,, c2008.
面頁冊數:
1 online resource (xiv, 311 p.) : : ill.
標題:
Fluidic devices.
標題:
Microfluidics.
標題:
Microelectromechanical systems.
ISBN:
9780815515432
ISBN:
081551543X
書目註:
Includes bibliographical references and index.
內容註:
Introduction -- Fundamentals of Mass Transport in Micro Scale -- Micromixers Based on Molecular Diffusion -- Micromixers Based on Chaotic Advection -- Active Micromixers -- Fabrication Technologies -- Characterization Techniques.
摘要、提要註:
A wide range of applications in chemistry and biochemistry are driving the rapid development of microfluidics. This book focuses its attention on an important subtopic of microfluidics; mixing in microscale. It provides the fundamentals of transport effects in microscale including molecular diffusion, convection, and chaotic advection. The science and technology of microfluidics cover a wide spectrum and the science of mixing in microscale has evolved from reports on fabricated devices to an extensive collection of established knowledge. The focal point of Micromixers: Fundamentals, Design, and Fabrication is the current applicable knowledge and practical issues in designing, fabricating, and characterizing micromixers in the chemical and biochemical industries. Based on scaling law, it recommends practical micromixer designs utilizing the advantages of the microscale effects. The book is intended for practicing engineers and for upper-level undergraduate and graduate level students. Provides the basic terminology and fundamental physics of transport effects used for designing micromixers. Highlights the challenges and advantages of miniaturization in mixing. Outlines currently available microtechnologies for fabricating micromixers. Discusses current applications including lab-on-a-chip for chemical/biochemical analysis, and chemical production. Defines concepts such as electrohydrodynamic, dielectrophoretic, electrokinetic, magneto hydrodynamic, acoustic and thermal effects and their implementation in micromixers.
電子資源:
http://www.sciencedirect.com/science/book/9780815515432
Micromixers[electronic resource] :fundamentals, design and fabrication /
Nguyen, Nam-Trung,1970-
Micromixers
fundamentals, design and fabrication /[electronic resource] :Nam-Trung Nguyen. - Norwich, NY :William Andrew,c2008. - 1 online resource (xiv, 311 p.) :ill. - Micro & nano technologies. - Micro & nano technologies..
Includes bibliographical references and index.
Introduction -- Fundamentals of Mass Transport in Micro Scale -- Micromixers Based on Molecular Diffusion -- Micromixers Based on Chaotic Advection -- Active Micromixers -- Fabrication Technologies -- Characterization Techniques.
A wide range of applications in chemistry and biochemistry are driving the rapid development of microfluidics. This book focuses its attention on an important subtopic of microfluidics; mixing in microscale. It provides the fundamentals of transport effects in microscale including molecular diffusion, convection, and chaotic advection. The science and technology of microfluidics cover a wide spectrum and the science of mixing in microscale has evolved from reports on fabricated devices to an extensive collection of established knowledge. The focal point of Micromixers: Fundamentals, Design, and Fabrication is the current applicable knowledge and practical issues in designing, fabricating, and characterizing micromixers in the chemical and biochemical industries. Based on scaling law, it recommends practical micromixer designs utilizing the advantages of the microscale effects. The book is intended for practicing engineers and for upper-level undergraduate and graduate level students. Provides the basic terminology and fundamental physics of transport effects used for designing micromixers. Highlights the challenges and advantages of miniaturization in mixing. Outlines currently available microtechnologies for fabricating micromixers. Discusses current applications including lab-on-a-chip for chemical/biochemical analysis, and chemical production. Defines concepts such as electrohydrodynamic, dielectrophoretic, electrokinetic, magneto hydrodynamic, acoustic and thermal effects and their implementation in micromixers.
ISBN: 9780815515432
Source: 153870:154030Elsevier Science & Technologyhttp://www.sciencedirect.comSubjects--Topical Terms:
382965
Fluidic devices.
Index Terms--Genre/Form:
336502
Electronic books.
LC Class. No.: TJ853 / .N49 2008eb
Dewey Class. No.: 660/.284292
Micromixers[electronic resource] :fundamentals, design and fabrication /
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A wide range of applications in chemistry and biochemistry are driving the rapid development of microfluidics. This book focuses its attention on an important subtopic of microfluidics; mixing in microscale. It provides the fundamentals of transport effects in microscale including molecular diffusion, convection, and chaotic advection. The science and technology of microfluidics cover a wide spectrum and the science of mixing in microscale has evolved from reports on fabricated devices to an extensive collection of established knowledge. The focal point of Micromixers: Fundamentals, Design, and Fabrication is the current applicable knowledge and practical issues in designing, fabricating, and characterizing micromixers in the chemical and biochemical industries. Based on scaling law, it recommends practical micromixer designs utilizing the advantages of the microscale effects. The book is intended for practicing engineers and for upper-level undergraduate and graduate level students. Provides the basic terminology and fundamental physics of transport effects used for designing micromixers. Highlights the challenges and advantages of miniaturization in mixing. Outlines currently available microtechnologies for fabricating micromixers. Discusses current applications including lab-on-a-chip for chemical/biochemical analysis, and chemical production. Defines concepts such as electrohydrodynamic, dielectrophoretic, electrokinetic, magneto hydrodynamic, acoustic and thermal effects and their implementation in micromixers.
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