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Titlebook: BioNanoFluidic MEMS; Peter J. Hesketh Book 2008 Springer-Verlag US 2008 BioNanoFluidic.Biosensor.Hesketh.MEMS.biomaterial.material.nanostr

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期刊全称BioNanoFluidic MEMS
影响因子2023Peter J. Hesketh
视频video
发行地址Comprehensively shows the interconnection between the interdisciplinary nature of BioNanoFluidics and MEMS.Covers BioNanoFluidics and sensor technology including Micro-Mechanical Sensors and Chemical
学科分类MEMS Reference Shelf
图书封面Titlebook: BioNanoFluidic MEMS;  Peter J. Hesketh Book 2008 Springer-Verlag US 2008 BioNanoFluidic.Biosensor.Hesketh.MEMS.biomaterial.material.nanostr
影响因子.BioNanoFluidic MEMS explains biosensor development fundamentals and initiates an awareness in engineers and scientists who would like to develop and implement novel biosensors for agriculture, biomedicine, home land security, environmental needs, and disease identification. In addition, the material covered in this book introduces and lays the basic foundation for design, fabrication, testing, and implemention of next generation biosensors through hands-on learning..
Pindex Book 2008
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Micro- and Nanomanufacturing via Molding, introduces micro- and nanomolding applications, processes, and design rules. Micro-and nanomolding processes have created high resolution lithographic patterns and fabricated functional applications in microfluidics, optics, and other areas. Analysis of polymer flow during local cavity filling and
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Case Studies in Chemical Sensor Development, book chapter provides a series of case studies related to the development and application of chemical sensors centering on microfabricated sensors for aerospace applications. Each case study discusses the development of a sensor or sensor system, including technology challenges, and illustrates a m
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Engineered Nanopores, embedded in a thin film substrate. These biologically-inspired devices can be constructed by nanofabrication approaches employing solid-state materials (e.g., oxides and nitrides), or from soft matter (e.g., proteins and lipids) by self-assembly. Coupled with single-molecule electrical and optical
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