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Space is not the soundless vacuum movies would have us believe. In fact, judging by these eerie recordings of the music being thrown off by the oldest stars in the Milky Way, space actually sounds like a bit of a party.

The recordings were created by a team of scientists led by Andrea Miglio of the University of Birmingham, using data from NASA’s Kepler missions. After measuring the acoustic oscillations of some of the furthest known distant stars in the Milky Way’s M4 star cluster, the researchers were able to use that data to recreate the sounds and get an idea of just what noises the stars are throwing off. It’s a cacophony, for sure—but a surprisingly musical one that could slide pretty seamlessly into an ambient house track of your choice. (Free idea, DJs.)

Besides being excellent listening, the sounds are also scientifically useful. Measuring the tones from each star let the researchers derive a formula, which they’ve published today in Monthly Notices of the Royal Astronomical Society, to get more precise measurements of star masses and ages. Since the stars are so old, in some cases up to 13 billion years, researchers hope to use the sounds to get even more information about what the universe was like way back then.

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Wow!


Mobile phone data may reveal an underlying mathematical connection between how we move and how we communicate that could make it easier to predict how diseases—and even ideas—spread through a population, according to an international team of researchers.

“This study really deepens our quantitative understanding of human behavior,” said Dashun Wang, assistant professor of and technology, Penn State. “We would like to think that we control our own behavior and we can do what we want to do. But, what we are starting to see with is that there is a very deep regularity underlying much of what we do.”

In a study, location and communication data collected from three international carriers showed that people move and communicate in predictable patterns, said Wang.

America Future Secrets Military Weapons #Mind Blow (Full Documentary)

MOST FEARED Weapons Technology for US Military (Message to world) 2016.

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Too funny; 2 days ago the article was that Musk feared the future of Singularity and Cyborgs; now he believes that we should become cyborgs. Musk needs to make his mind up; however, I am beginning to wonder about him.


Related: Elon Musk thinks we’re basically living in the Matrix, and we should be glad about it

This week, in a conversation at Recode’s annual Code Conference, Musk shared a tentative idea for something called “neural laces,” which he imagines could mitigate the risk of humanity becoming something of a pet to superintelligence.

“The solution that seems maybe the best one is to have an AI layer,” he said. “So think, if you have your limbic system, your cortex, and then a digital layer — sort of a third layer, above the cortex — that could work well and symbiotically with you. Just as your cortex works symbiotically with your limbic system, this digital layer would work symbiotically with the rest of you.”

Interesting twist; wonder how many tax dollars paid for the experts?


There is a bitter truth for economists, as well as professionals in other areas. Non-experts are typically better at forecasting future trends than experts.

It has been argued that economists should be historians rather than meteorologists and many years before the recent economic crash, John Kenneth Galbraith, the late Harvard economist, joked: “The only function of economic forecasting is to make astrology look respectable.”

Justin Wolfers, an economist, wrote last Friday in the New York Times on the May US jobs report which showed job creation falling to a net 38,000 in the month:

Good for him.


A new company launched Monday by former NASA chief Dan Goldin aims to deliver a major boost to the field of neural computing.

KnuEdge’s debut comes after 10 years in stealth; formerly it was called Intellisis. Now, along with its launch, it’s introducing two products focused on neural computing: KnuVerse, software that focuses on military-grade voice recognition and authentication, and KnuPath, a processor designed to offer a new architecture for neural computing.

“While at NASA I became fascinated with biology,” said Goldin in an interview last week. “When the time came to leave NASA, I decided the future of technology would be in machine intelligence, and I felt a major thrust had to come from inspiration from the mammalian brain.”

Interesting concept; my only concern is to individuals with nuero diseases or prone through genetics to have neuro diseases. For Dystonia patients/ victims who have copper compounds in their systems can potentially develop a form of secondary dystonia which can be terminal. Also, my years in the labs at ORNL taught us a lot about heavy metal exposures (including copper compounds); so I am a bit taken back by this article.


A new study is further burnishing copper’s reputation as an essential nutrient for human physiology. A research team led by a scientist at the Department of Energy’s Lawrence Berkeley National Laboratory (Berkeley Lab) and at the University of California, Berkeley, has found that copper plays a key role in metabolizing fat.

Long prized as a malleable, conductive metal used in cookware, electronics, jewelry and plumbing, has been gaining increasing attention over the past decade for its role in certain biological functions. It has been known that copper is needed to form red blood cells, absorb iron, develop connective tissue and support the immune system.

The new findings, to appear in the July print issue of Nature Chemical Biology but published online today, establishes for the first time copper’s role in .

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I believe that we have been at a tipping point for a while with the public being able to maintain their tolerance levels of paying high prices for healthcare across the globe. This article highlights this well.

Foundations like PhG, medical institutes and companies such as InnVentis and Insilico Medicine have been taking this challenge on by developing treatments and technologies such as InnVentis precision medicine technologies, Insilico’s.

Anti-aging research and treatments all used to improve the success rates and costs of treatment of diseases such as cancer. The sooner that we can bring many of these new nextgen treatments into the mainstream the better.

BTW- not to mention the benefits that other areas of technology will gain from the bio research and findings from these nextgen medical companies and foundations.