Tuesday, May 21, 2013

Max Payne creator Remedy Games crafting Quantum Break for Xbox One

Max Payne creator Remedy Games crafting 'Quantum Break' for Xbox One

The folks behind such games as the original Max Payne and Alan Wake are crafting a next-gen experience for the Xbox One in Quantum Break. The tease video we saw showed a young girl, in real life, with her parents -- she apparently sees through time, and is able to convey what she sees. She places a hand on her mother and shows her a massive war ship crashing through a bridge. We're then taken to an office building lobby being shot up. It's... not clear at all what all this has to do with anything, but there you have it. We'll have more details as soon as possible.

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Source: http://www.engadget.com/2013/05/21/quantum-break/?utm_medium=feed&utm_source=Feed_Classic&utm_campaign=Engadget

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Why You Need To Hire A Personal Injury Attorney ? Hot Article Depot

One of the most challenging cases that lawyers deal with is an injury case. This caters to getting legal representation from a person who has been injured either physically or psychologically. When this is caused by the negligence of others, consulting a los angeles personal injury attorney works best to check your legal options.

Effects and impact can associate the unfortunate event. It would be good to know that despite this, you still have a way to check on what your options are for compensation. The knowledge and skills of the attorney will help you better understand where your case lies and what your options are when it comes to settlement.

For someone who is a non professional in these types of law, this can be very challenging. Getting the counsel of an expert is necessary because they have a wide range of knowledge when local laws and its limitations are being taught. Limitations in respect to time and law suits are also there that is why it is important to have an attorney check on this right away.

When someone else?s negligence has caused this, it is better to consult a lawyer so you can find your best options. This is an important process when it comes to dealing with your insurance company, having had the details that they need to check out and work which can be used as a way to get you case on a good light. They will further help you out in assisting damage that was incurred over the accident.

Right processes and explanation are often needed in order to shed a light to the case. Proper communication as well is determined whenever you talk to the police enforcers and the insurance company as well in order to have your case in the best possible light. This will help you establish a stronger case in the process.

The lawyer can also show up in court on your behalf. This helps a lot in protecting your interests since they are the ones who can help build you a stronger case. Th services that they provide will surely work better ways to know the best things that are needed and can be done to work out on this process.

Handling these types of cases can also be a burden for someone. A lot of people see the importance of hiring a lawyer so that their interests would be protected. Resolution of the case can be handled simply using the knowledge and the expertise of the legal representative.

This can impact your properties and your financial status as a whole. Should you win the case and get a fair settlement, this can help avoid being impacted financially. When major properties and investments are involved, this is something that needs to be prioritized too as well.

Hiring a los angeles personal injury attorney gives you the idea of being guided along the process. This is also one way of making sure that you have a strong case with legal representation. When these happen, it can give you the best opportunities that can allow one to manage everything at hand.

You can visit the website www.cfmcav.com for more helpful information about Reasons Why You Need To Hire A Personal Injury Attorney

Source: http://hotarticledepot.com/why-you-need-to-hire-a-personal-injury-attorney-2/

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Olympia Circuits shows Arduino datalogger and Arno Add-Ons at Maker Faire 2013

Olympia Circuits shows Arduino datalogger and Arno AddOns at Maker Faire 2013

Olympia Circuits is best known for its Arno board and Arno Shield, which are designed to ease the Arduino learning curve by providing a bevy of pre-wired sensors and controls along with detailed instructions for several DIY projects. The company announced a couple of new products at Maker Faire this past weekend: the Arno Digital RGB Add-On and the SODA HE-1.0 Arduino datalogger. With the former, your Arno simply gains three RGB LEDs, while the latter stands for "Simple, Open Data Acquisition, High Efficiency." It's an Arduino board with screw terminals designed around Atmel's ATmega32u4 that features a real-time clock (RTC) with battery backup, a high-precision ADC and a microSD card slot. The RTC can either wake the entire board or trigger an interrupt at set intervals, which makes the board very power efficient when used in the field. Olympia Circuits will be updating its website with more info shortly (including availability and pricing). Until then, don't miss our hands-on gallery below.

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Source: Olympia Circuts

Source: http://feeds.engadget.com/~r/weblogsinc/engadget/~3/XWpY_xtU3C4/

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Monday, May 20, 2013

Kinks and curves at the nanoscale: New research shows 'perfect twin boundaries' are not so perfect

May 19, 2013 ? One of the basic principles of nanotechnology is that when you make things extremely small -- one nanometer is about five atoms wide, 100,000 times smaller than the diameter of a human hair -- they are going to become more perfect.

"Perfect in the sense that their arrangement of atoms in the real world will become more like an idealized model," says University of Vermont engineer Frederic Sansoz, "with smaller crystals -- in for example, gold or copper -- it's easier to have fewer defects in them."

And eliminating the defects at the interface separating two crystals, or grains, has been shown by nanotechnology experts to be a powerful strategy for making materials stronger, more easily molded, and less electrically resistant -- or a host of other qualities sought by designers and manufacturers.

Since 2004, when a seminal paper came out in Science, materials scientists have been excited about one special of arrangement of atoms in metals and other materials called a "coherent twin boundary" or CTB.

Based on theory and experiment, these coherent twin boundaries are often described as "perfect," appearing like a perfectly flat, one-atom-thick plane in computer models and electron microscope images.

Over the last decade, a body of literature has shown these coherent twin boundaries -- found at the nanoscale within the crystalline structure of common metals like gold, silver and copper -- are highly effective at making materials much stronger while maintaining their ability to undergo permanent change in shape without breaking and still allowing easy transmission of electrons -- an important fact for computer manufacturing and other electronics applications.

But new research now shows that coherent twin boundaries are not so perfect after all.

A team of scientists, including Sansoz, a professor in UVM's College of Engineering and Mathematical Sciences, and colleagues from the Lawrence Livermore National Laboratory and elsewhere, write in the May 19 edition of Nature Materials that coherent twin boundaries found in copper "are inherently defective."

With a high-resolution electron microscope, using a more powerful technique than has ever been used to examine these boundaries, they found tiny kink-like steps and curvatures in what had previously been observed as perfect.

Even more surprising, these kinks and other defects appear to be the cause of the coherent twin boundary's strength and other desirable qualities.

"Everything we have learned on these materials in the past 10 years will have to be revisited with this new information," Sansoz says

The experiment, led by Morris Wang at the Lawrence Livermore Lab, applied a newly developed mapping technique to study the crystal orientation of CTBs in so-called nanotwinned copper and "boom -- it revealed these defects," says Sansoz.

This real-world discovery conformed to earlier intriguing theoretical findings that Sansoz had been making with "atomistic simulations" on a computer. The lab results sent Sansoz back to his computer models where he introduced the newly discovered "kink" defects into his calculations. Using UVM's Vermont Advanced Computing Center, he theoretically confirmed that the kink defects observed by the Livermore team lead to "rather rich deformation processes at the atomic scale," he says, that do not exist with perfect twin boundaries.

With the computer model, "we found a series of completely new mechanisms," he says, for explaining why coherent twin boundaries simultaneously add strength and yet also allow stretching (what scientists call "tensile ductility") -- properties that are usually mutually exclusive in conventional materials.

"We had no idea such defects existed," says Sansoz. "So much for the perfect twin boundary. We now call them defective twin boundaries."

For several decades, scientists have looked for ways to shrink the size of individual crystalline grains within metals and other materials. Like a series of dykes or walls within the larger structure, the boundaries between grains can slow internal slip and help resist failure. Generally, the more of these boundaries -- the stronger the material.

Originally, scientists believed that coherent twin boundaries in materials were much more reliable and stable than conventional grain boundaries, which are incoherently full of defects. But the new research shows they could both contain similar types of defects despite very different boundary energies.

"Understanding these defective structures is the first step to take full use of these CTBs for strengthening and maintaining the ductility and electrical conductivity of many materials," Morris Wang said. "To understand the behavior and mechanisms of these defects will help our engineering design of these materials for high-strength applications."

For Sansoz, this discovery underlines a deep principle, "There are all manner of defects in nature," he says, "with nanotech, you are trying to control the way they are formed and dispersed in matter, and to understand their impact on properties. The point of this paper is that some defects make a material stronger."

Source: http://feeds.sciencedaily.com/~r/sciencedaily/top_news/top_technology/~3/ip39viNNKhI/130519190420.htm

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Google Believes Web Components Are The Future Of Web Development

Web ComponentsWhile it was missing the skydiving antics of last year’s event, Google’s I/O keynote last week wasn’t short on product launches. In between the splashy updates to Google Maps, Search, Android and everything else Google announced, the company also briefly talked about Web Components for a few minutes. While Google’s Sundar Pichai noted that it’s still early days for this technology, he also said he believes that “the vision for it is clear” and that it will allow developers to build “elegant user interfaces that work across all form factors.” Web Components are clearly a topic that’s close to the heart of a number of Chrome developers. Many of them, for example, cited it as one of the Chrome features they are most excited about at a fireside chat later in the week. A number of Google engineers are also working on Project Polymer, which aims to write a web application framework that’s built upon the idea of Web Components and will allow developers to use the ideas behind Web Components on browsers that don’t even feature all of the necessary technologies yet. The fact that it made an appearance during the keynote, right next to WebGL and other more established web development techniques, makes it pretty obvious that this is a technology that Google believes has the potential to change how developers write web apps going forward. So what is this all about? Essentially, Web Components give developers an easier way to create web sites and recyclable widgets on these sites with the help of the HTML, CSS and JavaScript they already know. The ideas behind Web Components have been around for a while (and a few years back, Microsoft backed a similar initiative that never got any traction), but even today, this is still a topic that’s pretty foreign to most. Building large, single-page web apps with a smart component models isn’t easy today. Web Components help developer encapsulate they HTML, CSS and JavaScript so it doesn’t interfere with the rest of the page and the page doesn’t interfere with it. It’s worth noting that, for the time being, developers can’t rely on this to work in all browsers. Chrome Canary includes support for Web Components, but it’s hidden behind a number of flags. Mozilla will likely start adding support for it in Firefox soon, too. Most importantly, though, the Polymer project aims to bring the concept to

Source: http://feedproxy.google.com/~r/Techcrunch/~3/eRTaIsIzw7M/

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Sony Xperia Tablet Z now available in the UK

Xperia Tablet Z

On sale today, prices start at £399 for 16GB + Wifi

A couple of months after Sony first started taking pre-orders, its Xperia Tablet Z slate is now available to buy in the UK. Prices start at £399 for 16GB of storage and Wifi connectivity (black only), or you can opt for 32GB with Wifi (black and white) or 16GB with Wifi and 4G LTE connectivity (black only). The Tablet Z isn't the cheapest Android tablet option around, but it does boast a Snapdragon S4 Pro quad-core CPU inside, a 1080p display and Android 4.1 Jelly Bean, backed up by Sony's suite of apps. For the hacking crowd, there's also AOSP support through Sony's GitHub.

Across the Atlantic, Sony's still taking pre-orders for the Xperia Tablet Z through its official online store, with devices expected to ship out this Friday, May 24.

Source: Sony Store UK

    


Source: http://feedproxy.google.com/~r/androidcentral/~3/66UDYbOawH4/story01.htm

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Sticker shock: New college graduates, here is why your education cost so much money

Students at the University of California, Los Angeles campus, which has faced steep state cuts. (David McNew/Getty??

When high school senior Jenny Bonilla got her college acceptance letter in March, she felt shock and heartbreak rather than joy. That?s because the letter from Goucher College, a private liberal arts school in Baltimore, also brought news that she would owe an unaffordable $20,000 a year in tuition and board, even with a scholarship the college was offering.

Bonilla had been in the running for a full ride to Goucher but eventually lost out because her parents? combined income of $57,000 a year was deemed too high.

?That was heartbreaking,? she said.

Bonilla?s experience is all too familiar to many students and their parents contemplating college, as higher education price increases have far outpaced the growth in middle-class wages over the past three decades.

The average tuition and fees at a public, four-year university rose to $8,655 in 2012-13, not counting the costs of room and board, according to the College Board. That?s 250 percent more than it would have cost in 1982, when a year of college would have set the average student back just $2,423 in today?s dollars.

The tuition at private colleges has increased at a slightly lower rate over the same period: The average four-year private institution costs $29,056, not counting room and board. It would have cost $10,901 in 2012 dollars in 1982.

The pricey degree comes with big returns, on average: College-educated workers earned 79 percent more than high-school-educated workers in 2012 and were much less likely to be unemployed.

The pain of the price hikes has been partly offset by an increase in federal grants and tax breaks for college, as well as by private schools offering deeply discounted tuition rates to lower-income students. But even with that help, some students like Bonilla are finding themselves locked out of the system.

Why is college so much more expensive now than it was 30 years ago? Economists fall into two main schools of thought in explaining the trend.

One theory, referred to as the ?Bowen Rule,? says the decisions made by many colleges and universities?such as how many administrators to hire and how to spend its cash?primarily drive the cost.

A competing theory, called ?Baumol?s cost disease,? posits that higher education is expensive because of outside macroeconomic factors that affect other businesses, specifically that it costs more to hire highly educated workers even in fields that have not grown more productive.

In other words, it?s either the colleges? fault, or it isn?t.

In their book, ?Why Does College Cost So Much?? Robert Archibald and David Feldman, economists at the College of William & Mary, are firmly in the Baumol camp. They argue that a college?s hefty price tag isn?t actually surprising at all, given that it depends on the performance of its workforce?highly educated professors and teachers who provide a face-to-face service, not a material good.

Larger economic trends have jacked up the salaries of highly educated workers across the board in recent decades, while the cost of face-to-face services has also remained high, because technological advances do not necessarily make these services cheaper.

Feldman used the example of the cost of a haircut, which has also outpaced inflation in the past 30 years.

While technology has made factories vastly more efficient at producing goods for less money, technological advances have not been able to make the time a haircut takes shorter or replace the skilled person who has to give the haircut. College is like a haircut on steroids, because the barbers have PhDs.

?Higher education is an industry where there?s not a whole lot of productivity growth and not a whole lot of scope for productivity growth,? Feldman said.

The vast majority of most colleges? budgets go to personnel, and that cost is unlikely to come down any time soon.

Benjamin Ginsberg, a political science professor at Johns Hopkins University, takes the Bowen view.

In his book, ?The Fall of the Faculty: The Rise of the All-Administrative University and Why It Matters,? Ginsberg argues that a significant increase in administrative employees is in part responsible for college?s runaway pricing.

He writes that between 1975 and 2005, the faculty to student ratio has remained fairly constant at universities, while the student to professional staffer (such as an admissions officer) ratio increased from 1-to-50 to 1-to-24.

?As colleges and universities have had more money to spend, they have not chosen to spend it on expanding their instructional resources?that is, on paying faculty,? Ginsberg writes. ?They have chosen, instead, to enhance their administrative and staff resources.?

Feldman discounts this argument. He points out that students demand a broader bundle of services from college now than they did 50 years ago and that the price reflects that. Students want staffers to plan student life activities, career counselors, fancy dorms, nice gyms and up-to-date technology.

The economy as a whole, not just higher education, has also shifted to include more administrative positions in the past decades, he argues.

Some argue that colleges have had no choice but to hire more administrative staff, in part because they are so thoroughly regulated by both state and federal governments. Colleges are required to report to the government all gifts accepted from foreign governments, supply information about the salaries of coaches and prove they commemorated Constitution Day every September 17, among other rules. Complying with the regulations requires staff.

?Externally imposed regulations increase the cost of doing business, and that cost is passed on to consumers,? Terry Hartle, one of the chief lobbyists for the higher education industry, said. Hartle is senior vice president for the American Council on Education.

State budget woes have also hiked the cost of many colleges. Sandy Baum, an economist and independent policy analyst for the College Board, says the price increases at public institutions have been driven by declining support from states, which have cut higher education in order to balance their budgets.

?It?s not actually that the colleges are spending more money on the students, it?s that they?re getting ? much less money per student from the state government,? Baum said.

That means students aren?t necessarily getting more for their money, especially at public institutions.

Advances in technology might help colleges cut costs in the future, either by allowing them to have fewer in-person classes as more people take classes online or by streamlining some library costs, among other possibilities. But higher education experts say there?s no silver bullet.

?Colleges are looking at how to save money, and they need to look harder because it?s just so expensive,? said Baum. She mentioned increasing technology, streamlining government regulations and cutting back on administrators as some possible things to help costs. ?There?s no miracles there,? she said.

Jenny Bonilla didn?t have time to wait for a miracle. Bonilla?s father lost his job just days after she received her letter from Goucher, reducing the family?s annual income to $40,000.

Bonilla?s parents didn?t want her to take on $60,000 in debt and knew they couldn?t come up with the money to help her on their own. They decided she should enroll in nearby Prince George's Community College for two years and then try to transfer to a four-year public school from there.

?I applied to so many schools, and then for me to end up at community college is kind of devastating,? Bonilla says.

Source: http://news.yahoo.com/blogs/lookout/sticker-shock-college-graduates-why-education-cost-much-092117028.html

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