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Unraveling the viral mechanism Using powerful computer tools and cryo-electron microscopes, researchers at Baylor College of Medicine unmasked the secrets of a tiny virus that infects bacteria and, in doing so, opened the door to a better understanding of a variety of viruses that infect people and animals. view more (2006-02-02)
Fluid Dynamics Works on Nanoscale in Real World In 2000, Georgia Tech researchers showed that fluid dynamics theory could be modified to work on the nanoscale, albeit in a vacuum. Now, seven years later they've shown that it can be modified to work in the real world, too - that is, outside of a vacuum. The results appear in the February 9 issue of Physical Review Letters (PRL). view more (2007-02-26)
Traces of nanobubbles determine nanoboiling Using a microscope and some extreme "snapshot" photography with shutter speeds only a few nanoseconds long, researchers from the National Institute of Standards and Technology (NIST) and Cornell University have uncovered the traces of ephemeral "nanobubbles" formed in boiling water on a microheater. view more (2007-04-02)
New lipid molecule holds promise for gene therapy Scientists at the University of California, Santa Barbara have created a new molecule that holds promise in fighting disease via gene therapy. view more (2006-03-23)
Penn researcher shows that DNA gets kinky easily at the nanoscale Scientists have answered a long-standing molecular stumper regarding DNA: How can parts of such a rigid molecule bend and coil without requiring large amounts of force? view more (2006-11-06)
New nanoscale process created by UCSB scientists will help computers run faster and more efficiently Smaller. Faster. More efficient. These are the qualities that drive science and industry to create new nanoscale structures that will help to speed up computers. view more (2008-09-26)
Model for the assembly of advanced, single-molecule-based electronic components developed at Pitt Researchers based at the University of Pittsburgh have created the best method so far of assembling wire-like structures only a single molecule wide, a significant step in science's increasing attempts to reduce the circuitry size of electronic devices to the single molecule scale and provide smaller, faster, and more energy efficient electronics. view more (2007-09-27)
Unique porous copper structure enables new generation of military micro-detonators Tiny copper structures with pores at both the nanometer and micron size scales could play a key role in the next generation of detonators used to improve the reliability, reduce the size and lower the cost of certain military munitions. view more (2007-12-19)
Caltech and IBM scientists use self-assembled DNA scaffolding to build tiny circuit boards Scientists at the California Institute of Technology (Caltech) and IBM's Almaden Research Center have developed a new technique to orient and position self-assembled DNA shapes and patterns-or "DNA origami"-on surfaces that are compatible with today's semiconductor manufacturing equipment. view more (2009-08-18)
Do the hyper-coordinate planar transition metal atoms exist? A study reported in Vol 51, Issue 7 (July, 2008) of Science in China Series B: Chemistry has shown that wheel-shaped structures with octa- and enneacoordinate planar cobalt, iron and nickel centered in perfect octagonal and enneagonal boron rings, are stable on corresponding potential hyper-surfaces. This suggests that the central element bonding... view more... (2008-07-01)
Charging ahead: University of Houston team revealing secrets of electricity-producing materials Much like humans, materials are capable of some pretty remarkable things when they're placed under pressure. In fact, under the right conditions, materials can even produce electricity. view more (2009-07-28)
Spallation Neutron Source gets initial go-ahead on second target The U.S. Department of Energy has given its initial approval to begin plans for a second target station for the Spallation Neutron Source, expanding what is already the world's most powerful pulsed neutron scattering facility located at DOE's Oak Ridge National Laboratory. view more (2009-01-20)
Researchers develop detailed design rules for nanoimprint lithography processing Using a combination of experimental data and simulations, researchers have identified key parameters that predict the outcome of nanoimprint lithography, a fabrication technique that offers an alternative to traditional lithography in patterning integrated circuits and other small-scale structures into polymers. view more (2006-04-24)
A new technique for building nanodevices in the lab Physicists at the University of Pennsylvania are using a new technique to craft some of the tiniest metal nanostructures ever created, none larger than 10 nanometers, or 10,000 times smaller than the width of a single human hair. view more (2007-06-26)
Look out for giant triangles in space THE search for extraterrestrial intelligence (SETI) could be taking the wrong approach. Instead of listening for alien radiobroadcasts, a better strategy maybe to look for giant structures placed in orbit around nearby stars by alien civilisations. view more (2005-04-06)
UCLA chemists design world's lowest-density crystals for use in clean energy Chemists at UCLA have designed new organic structures for the storage of voluminous amounts of gases for use in alternative energy technologies. view more (2007-04-13)
Molecular fossils uncover link between viruses and the immune system Researchers from the Viikki Biocenter, University of Helsinki, show that atomic structures can reveal evolutionary history of viruses in a similar fashion as fossils did for the dinosaurs and reptiles. Their article is published in the April 15 issue of Molecular Cell. view more (2005-04-14)
Protein data bank archives 50,000th molecule structure The Protein Data Bank (PDB) based at Rutgers, The State University of New Jersey, and the University of California-San Diego (UCSD) this month reached a significant milestone in its 37-year history. The 50,000th molecule structure was released into its archive, joining other structures vital to pharmacology, bioinformatics and education. view more (2008-04-09)
Genital stimulation opens door for cryptic female choice in tsetse flies By snipping off parts of male genitalia and reducing genital sensation in both male and female tsetse flies, researchers induced a suite of changes in female reproduction, including reduced ovulation, reduced sperm storage and increased re-mating attempts by the females. view more (2009-05-15)
New materials can selectively capture carbon dioxide, UCLA chemists report UCLA chemists report a major advance in reducing heat-trapping carbon dioxide emissions in the Feb. 15 issue of the journal Science. view more (2008-02-15)
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