LHC Data Freely Accessible from CERN

The Large Hadron Collider run by CERN is making huge insights into the fundamental workings of the universe. Already it has found evidence the Higgs-Boson and other groovy particles in physics.

Now CERN is setting all that data that’s been collected free to use! Now you can use research generated by one of the most complex machines humanity has ever created.

“Data from the LHC program are among the most precious assets of the LHC experiments, that today we start sharing openly with the world,” says CERN Director General Rolf Heuer. “We hope these open data will support and inspire the global research community, including students and citizen scientists.”
The LHC collaborations will continue to release collision data over the coming years.
The first high-level and analyzable collision data openly released come from the CMS experiment and were originally collected in 2010 during the first LHC run. Open source software to read and analyze the data is also available, together with the corresponding documentation. The CMS collaboration is committed to releasing its data three years after collection, after they have been thoroughly studied by the collaboration.

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Surfing Oceanic Data

The ocean is massive and it’s experiencing massive change thanks to climate change and humans depleting its resources. We know this, but we don’t know the extent of the harm done to the oceans nor many other aspects of life in the seas.

A surfer and engineer, Benjamin Thompson, decided to do tackle these problems. He invented a special fin for surfboards that can collect data about the planet’s waters while one enjoys some fun recreation

In a world that grows more “Big Data”-obsessed by the day, the amount of information we have on the world’s oceans remains curiously small. In fact, according to the National Ocean Service, less than 5 percent of the world’s oceans have been explored. There’s good reason for that. “You put anything in the ocean, and it gets pounded to death, critters grow on them, the temperature changes, and ions corode the metal,” says Paul Bunje, senior director of oceans at the XPRIZE Foundation. “Stick something in the ocean, and it wants to get destroyed very quickly.”

It’s particularly tough to collect information near the shore, where waves are crashing. An innovation like Smart Phin could change that. “Surfers are going in the water everyday. They’re in the most critical, hostile zone, and they’re doing it willingly, and they’re doing it for free,” Thompson says. “We’re chopping of a whole section of the cost of research, and that could be a real paradigm shift in the way data is collected.”

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Iranian Drone Can Help Lifeguards

An Iranian company has built a drone that can help lifeguards save lives. The drone can carry flotation devices to weak swimmers faster than a lifeguard can. It’s a good use of drone technology and a demonstration of what is possible when we use this tech for helping our everyday existence.

The concept works well, and it’s an excellent example of how powerful drones—which are cheaper and easier to use than just about any other aerial delivery vehicle—can actually be. Here in the US, where the FAA remains steadfast in its desire to squelch the nascent commercial drone industry, this Iranian drone built of Chinese parts sets an example of what can be done when we set our eyes to the skies to do good.

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Using Fashion to Charge Electronics

Battery life on mobiles is never very good and this causes a drain on the electrical system. What if we were able to power our mobiles by just wearing clothes? Well, that’s a new field that is gaining more and more attention. The Guardian looked at a few ways we can use fashion to power our wares.

Kinetic energy
Professor Rebeccah Pailes-Friedman is a designer and author of Designing With Smart Textiles, due to be published in 2015. She says, “If you think about what traditional fashion is, it’s such a small part of the real world, but then when you look at performance fashion, clothing that has to do something, you see a much larger part of the population using them.”

Pailes-Friedman focuses her research on light and movement in smart textiles. “Really good design is when you don’t notice it. We have always lived and worked in clothing so we know how it functions, 98% of how we wear it is no mystery to us so technology being incorporated needs to be part of and as intuitive as our clothing.” An example of this seamless design might be kinetic energy, where movement generates energy.

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Plastic From Bacteria and Algae

This short news report covers some cool new plastic production from bacteria and algae done by the Korea Institute of Science and Technology.

Via Reddit.

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