Showing posts with label university. Show all posts
Showing posts with label university. Show all posts

Tuesday, April 23, 2013

Lenovo ThinkPad Helix starts shipping, Seton Hall University gets early units

Lenovo ThinkPad Helix starts shipping, Seton Hall University gets early units


Lenovo's ThinkPad Helix has had one of the rockier roads to the US market, having been promised for February only to be delayed to April. Things are getting smoother, however, as the first units of the are rolling off the production line -- and there are already customers waiting at Seton Hall University. Keeping up its recent practice of handing out gadgets to junior students, the school expects to test the dockable Windows 8 tablet within a few weeks, and then deliver about 2,000 units to newcomers starting in June. The turn toward a hybrid lets the university settle on one PC design for the fall rather than divide its attention between tablets and Ultrabooks, Seton Hall's Drew Holden says. As for the general public? Lenovo hasn't officially put the Helix on sale through its own store, but a handful of customers say they've already received theirs through other channels. In any event, keep a close watch on third-party stores if you're willing to part with $1,499 for a ThinkPad convertible.


Via: Ultrabook News


Source: The Setonian

Friday, April 12, 2013

University of Michigan's GapSense may help WiFi harmonize with wireless neighbors

University of Michigan's GapSense could help WiFi live in harmony with wireless neighbors


WiFi is an unintentional bully in the wireless world: as it has to be powerful and respond quickly, it tends to drown out less demanding protocols like Bluetooth and ZigBee. The University of Michigan's GapSense software could have the format finally learning to play well with others. By instituting a common set of alerts determined by pulses and gaps, researchers could have every wireless device giving a heads-up to others when data is on the way. The trick would force patience on WiFi devices and offer a higher priority to less aggressive standards. Along with giving every device a chance to breathe, GapSense could improve the performance of WiFi itself -- the technology could lower WiFi's power draw by as much as 44 percent through slowing down the receiver, which would sometimes only have to wait for notice from the transmitter. The university doesn't have a timetable for practical use of GapSense, but it does want to produce a shipping product. We just might see considerably less wireless gridlock should that research translate to reality.


Source: University of Michigan

Saturday, March 30, 2013

University of Illinois' Blue Waters supercomputer now running around the clock

University of Illinois' Blue Waters supercomputer now running around the clock


Things got a tad hairy for the University of Illinois at Urbana-Champaign's Blue Waters supercomputer when IBM halted work on it in 2011, but with funding from the National Science Foundation, the one-petaflop system is now crunching numbers 24/7. The behemoth resides within the National Center for Supercomputing Applications (NCSA) and is composed of 237 Cray XE6 cabinets and 32 of the XK7 variety. NVIDIA GK110 Kepler GPU accelerators line the inside of the machine and are flanked by 22,640 compute nodes, which each pack two AMD 6276 Interlagos processors clocked at 2.3 GHz or higher. At its peak performance, the rig can churn out 11.61 quadrillion calculations per second. According to the NCSA, all that horsepower earns Blue Waters the title of the most powerful supercomputer on a university campus. Now that it's cranking away around-the-clock, it'll be used in projects investigating everything from how viruses infect cells to weather predictions.

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Blue Waters supercomputer now open for 24/7 science!


Today the Blue Waters supercomputer at the University of Illinois at Urbana-Champaign entered production, meaning the behemoth capable of performing quadrillions of calculations every second and working with quadrillions of bytes of data is now crunching numbers around the clock to help scientists and engineers across the country tackle a wide variety of science and engineering challenges.


Because Blue Waters is among the most powerful supercomputers in the world, and is the most powerful supercomputer on a university campus, it enables scientists to carry out research that would be otherwise impossible. The supercomputer, which was built from Cray hardware, operates at a sustained performance of more than 1 quadrillion calculations per second and is capable of peak performance of 11.61 quadrillion calculations per second. [How big are quadrillions? Check out our guide!]


During a launch celebration at the university's National Center for Supercomputing Applications (NCSA), Gov. Quinn read a proclamation declaring March 28 "Blue Waters Supercomputer Day," encouraging "everyone in the Land of Lincoln to recognize the important role that innovation and technological progress play in the future of our state."


Other speakers during the celebration-including University President Robert Easter, Chancellor Phyllis Wise, and Rep. Dan Lipinski, who serves on the House Committee for Science, Space and Technology-also emphasized the role that Blue Waters and the University of Illinois play in science and engineering discoveries.


Cora Marrett, acting director of the National Science Foundation, the federal agency that provided the deployment and operational funding for Blue Waters, emphasized the supercomputer's potential to fuel discovery and innovation and to benefit society. For example, scientists hope to learn more about how viruses infect the body's cells and to improve predictions of tornadoes and hurricanes, among other diverse projects.


To mark Blue Waters' move to full operations, several scientists launched simulation jobs on Blue Waters, showing the audience how the touch of a keyboard or even a tablet or phone allows them to interact with the supercomputer and begin complex research studies:

Steven Gottlieb, high-energy/sub-atomic physics, Indiana University James Kinter and Cristiana Stan, atmospheric science, George Mason University Brian O'Shea, astrophysics, Michigan State University Klaus Schulten, biophysics, University of Illinois at Urbana-Champaign

For more information about the Blue Waters project, see http://www.ncsa.illinois.edu/BlueWaters/.


Source: National Center for Supercomputing Applications


More Coverage: Slashdot

Tuesday, December 18, 2012

The University of Oxford Needs Your Help Playing Guess Who with the Serengeti's Wildlife

This story will display in ...Dec 17, 2012 10:40 PM  

The University of Oxford Needs Your Help Playing Guess Who with the Serengeti's WildlifeBetween the exotic illnesses, oppressive heat, and the fact that you're no longer the top predator, studying the Serengeti National Reserves' plethora of fauna is a challenge unto itself. However, through the University of Oxford's most recent citizen scientist program, you can help researchers better understand the region's complex web of interdependent animal systems.

It's called Snapshot Serengeti, one of the University's dozen crowd-sourced Zooniverse programs—others include studies in astronomy, climatology, biology, and humanities. Researchers have set up camera traps, hundreds of them over an area of 5,700 sq miles, to capture three-image sets of anything that happens to walk by. These traps have generated a huge data base of images over the previous three seasons, far more than any single research team could comb through. But that's where you come in.

By signing on to the Snapshot Serengeti site, anyone on the Internet can help dig through this mountanous pile of data, identifying what and how many kinds of animals are in each shot. The system helps users that can't tell a Grant's Gazelle from a Thompson's with an intuitive reductionist layout that identifies the fauna based on marking pattern, horn style, and build. It's a surprisingly addictive and fun way to kill time. [Snapshot Serengeti via BBC News]


View the original article here

Sunday, November 18, 2012

Athens university prints polymer circuits with lasers, speeds us towards low-cost electronics

By Jon Fingas posted Nov 16th 2012 5:32PM University of Athens prints polymer circuits with lasers, speeds us towards lowcost electronics

The dream of ubiquitous technology revolves around cheaper materials, and polymer circuits could help make the dream a reality... if the solvents used to produce the circuits didn't cause more problems than they cured, that is. The National Technical University of Athens has developed a more exacting technique that, like most good things in science, solves the crisis with lasers. The approach fires a laser at a polymer layer (covered by quartz) to throw some of that polymer on to a receiving layer; by moving the two layers, the scientists can print virtually any 2D circuit without resorting to potentially damaging chemicals. Any leftover worries center mostly around risks of changing the chemical composition as well as the usual need to develop a reliable form of mass production. Any long-term success with laser-printed polymers, however, could lead to more affordable technology as well as more instances of flexible and wearable gear -- there might not be much of a downside to ditching the circuit status quo.


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