Gallium Arsenide, Electronics Materials and Devices. A Strategic Study of Markets, Technologies and Companies Worldwide 1999-2004

Gallium Arsenide, Electronics Materials and Devices. A Strategic Study of Markets, Technologies and Companies Worldwide 1999-2004

Author: R. Szweda

Publisher: Elsevier

Published: 2000-12-05

Total Pages: 429

ISBN-13: 0080532284

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The third edition of this highly respected market study provides a detailed insight into the global developments of the GaAs industry to 2004, and the implications for both suppliers and users of GaAs technology. The report has been completely revised and updated with a new chapter added on competitive technologies. The report also supplies market analysis by component type and application sectors.For a PDF version of the report please call Tina Enright on +44 (0) 1865 843008 for price details.


Network World

Network World

Author:

Publisher:

Published: 1987-11-30

Total Pages: 44

ISBN-13:

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For more than 20 years, Network World has been the premier provider of information, intelligence and insight for network and IT executives responsible for the digital nervous systems of large organizations. Readers are responsible for designing, implementing and managing the voice, data and video systems their companies use to support everything from business critical applications to employee collaboration and electronic commerce.


Vault Guide to the Top Tech Employers

Vault Guide to the Top Tech Employers

Author: Laurie Pasiuk

Publisher: Vault Inc.

Published: 2006

Total Pages: 256

ISBN-13: 158131339X

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Provides business profiles, hiring and workplace culture information at more than 40 top employers including such businesses as Microsoft.


SBIR/STTR at the National Institutes of Health

SBIR/STTR at the National Institutes of Health

Author: National Academies of Sciences, Engineering, and Medicine

Publisher: National Academies Press

Published: 2016-01-28

Total Pages: 461

ISBN-13: 030937877X

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The Small Business Innovation Research (SBIR) and Small Business Technology Transfer (STTR) programs provide federal research and development funding to small businesses. In 2008, the National Research Council completed a comprehensive assessment of the SBIR and STTR programs. The first-round study found that the programs were "sound in concept and effective in practice." Building on the outcomes from the Phase I study, this second phase examines both topics of general policy interest that emerged during the first phase and topics of specific interest to individual agencies, and provides a second snapshot to measure the program's progress against its legislative goals.


Polymer Membranes for Fuel Cells

Polymer Membranes for Fuel Cells

Author: Javaid Zaidi

Publisher: Springer Science & Business Media

Published: 2010-07-15

Total Pages: 439

ISBN-13: 0387735321

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From the late-1960’s, perfluorosulfonic acid (PFSAs) ionomers have dominated the PEM fuel cell industry as the membrane material of choice. The “gold standard’ amongst the many variations that exist today has been, and to a great extent still is, DuPont’s Nafion® family of materials. However, there is significant concern in the industry that these materials will not meet the cost, performance, and durability requirementsnecessary to drive commercialization in key market segments – es- cially automotive. Indeed, Honda has already put fuel cell vehicles in the hands of real end users that have home-grown fuel cell stack technology incorporating hydrocarbon-based ionomers. “Polymer Membranes in Fuel Cells” takes an in-depth look at the new chem- tries and membrane technologies that have been developed over the years to address the concerns associated with the materials currently in use. Unlike the PFSAs, which were originally developed for the chlor-alkali industry, the more recent hydrocarbon and composite materials have been developed to meet the specific requirements of PEM Fuel Cells. Having said this, most of the work has been based on derivatives of known polymers, such as poly(ether-ether ketones), to ensure that the critical requirement of low cost is met. More aggressive operational requi- ments have also spurred the development on new materials; for example, the need for operation at higher temperature under low relative humidity has spawned the creation of a plethora of new polymers with potential application in PEM Fuel Cells.