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Micro and Nanomanufacturing

Authors: Jackson, Mark J.

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  • Provides a thorough knowledge of design and fabrication of nano and micro devices
  • Applies production and research lab techniques to a variety of materials
  • Discusses thin film deposition, pulsed water drop machining and other techniques
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eBook $129.00
price for USA in USD
  • ISBN 978-0-387-26132-4
  • Digitally watermarked, DRM-free
  • Included format: PDF
  • ebooks can be used on all reading devices
  • Immediate eBook download after purchase
Softcover $169.99
price for USA in USD
  • ISBN 978-1-4419-3845-9
  • Free shipping for individuals worldwide
  • Institutional customers should get in touch with their account manager
  • Covid-19 shipping restrictions
  • Usually ready to be dispatched within 3 to 5 business days, if in stock
About this book

Nanofabrication and nanotechnology present a great challenge to engineers and researchers as they manipulate atoms and molecules to produce single artifacts and submicron components/systems.

Micro and Nanomanufacturing provides a comprehensive treatment of established micro & nano fabrication techniques and addresses the needs of practicing manufacturing engineers by applying established and research laboratory manufacturing techniques to a wide variety of materials.

Engineers seeking more knowledge of how nano and micro devices are designed and fabricated will learn:

  • Manufacturing and fabrication at the micro and nanoscales
  • Using bulk and surface micromachining techniques, LiGA and deep x-ray lithography to manufacture semiconductors
  • Producing master molds with micromachining
  • The deposition of thin films, pulsed water drop machining, and nanomachining

Mark J. Jackson is an Associate Professor in the Department of Mechanical Engineering Technology at Purdue University. His current research focuses on understanding the properties of materials in the field of micro scale metal cutting, micro and nano abrasive machining, and laser micro machining.

About the authors

Doctor Mark James Jackson is an Associate Professor of Mechanical Engineering Technology at Purdue University and was a Visiting Fellow at the University of Liverpool, U.K.

Doctor Jackson is active in research work concerned with understanding the properties of materials in the field of micro scale metal cutting, micro and nano abrasive machining, and laser micro machining. He is also involved in developing next generation manufacturing processes and biomedical engineering. Doctor Jackson has directed, co-directed, and managed research grants funded by the Engineering and Physical Sciences Research Council, The Royal Society of London, The Royal Academy of Engineering, European Union, Ministry of Defence, Atomic Weapons Establishment, National Science Foundation, N.A.S.A. and U. S. Department of Energy.

Doctor Jackson is Vice President and Chief Technology Officer of Vitrified Technologies, Inc., which is established to develop next generation nano and micro machine tools and cutting tools for nanotechnology applications. Dr. Jackson is strongly committed to working closely with manufacturing industry and has served on political committees to ensure that manufacturing counts.

 

 

Table of contents (12 chapters)

Table of contents (12 chapters)

Buy this book

eBook $129.00
price for USA in USD
  • ISBN 978-0-387-26132-4
  • Digitally watermarked, DRM-free
  • Included format: PDF
  • ebooks can be used on all reading devices
  • Immediate eBook download after purchase
Softcover $169.99
price for USA in USD
  • ISBN 978-1-4419-3845-9
  • Free shipping for individuals worldwide
  • Institutional customers should get in touch with their account manager
  • Covid-19 shipping restrictions
  • Usually ready to be dispatched within 3 to 5 business days, if in stock
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Bibliographic Information

Bibliographic Information
Book Title
Micro and Nanomanufacturing
Authors
Copyright
2007
Publisher
Springer US
Copyright Holder
Springer-Verlag US
eBook ISBN
978-0-387-26132-4
DOI
10.1007/b136902
Softcover ISBN
978-1-4419-3845-9
Edition Number
1
Number of Pages
X, 702
Topics