In work that someday may lead to the development of novel types of nanoscale electronic devices, an interdisciplinary team of researchers at the California Institute of Technology has combined DNA's talent for self-assembly with the remarkable electronic properties of carbon nanotubes, thereby suggesting a solution to the long-standing problem of organizing carbon nanotubes into nanoscale electronic circuits.
The catalytic processes that facilitate the production of many chemicals and fuels could become much more environmentally friendly thanks to a breakthrough achieved by researchers from Lehigh and Rice Universities.
I...
A pioneer in solar power in the 1990s before it became "sexy," University of Houston Professor Alex Freundlich recently entered into a collaborative research agreement with U.K.-based start-up QuantaSol for the...
Eric Shaqfeh studies blood at Stanford University, using computer models that simulate how the fluid and the cells it contains move around. On November 11 at a meeting of the scientific society AVS, he will present his l...
Two independent teams have, for the first time, created Bose-Einstein condensates of strontium atoms. The ability to cool strontium to very low temperatures and control its motion could lead to increasingly precise clocks and may advance our progress toward quantum computers and novel experiments in ultracold chemistry.
Single layers of carbon atoms, called graphene sheets, are lightweight, strong, electrically semi-conducting -- and notoriously difficult and expensive to make.
The NSLS-II lab-office buildings (LOBs) were scheduled to be designed in fiscal year (FY) 2010, put out for bid in FY11, and have a construction contract awarded in late FY11 that would enable start of construction at the beginning of FY12. Given that plan, the LOBs would have been ready for occupancy in late FY13.
On October 26, the last of seven contracts for the production of the NSLS-II storage ring magnets were awarded – a significant milestone for the project.
The NSLS-II Experimental Facilities Division achieved an important milestone in September when the conceptual design reports for the initial six project beamlines were completed and submitted to NSLS-II management.
Wiley-VCH is delighted to announce publishing responsibility for Steel Research International from January 2010 on behalf of Verlag Stahleisen, Steel Institute VDEh, Max-Planck-Institut für Eisenforschung, The Austrian Society for Metallurgy and Materials ASME, Fédération Française de l’Acier and Jernkontoret (Sweden).
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