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Many folks often ask “What’s next for technology after Quantum?” Many suggests space, some folks suggest some sort of vNext technology or science that hasn’t been identified or fully discovered, etc. It truly is something that many of us have been asking ourselves for the past few years. However, there is still so much that still needs to be experimented with in ragards to Quantum; including teleporting information via Quantum from a black hole. And, what and how will this type of experiment improve our own usage of Quantum in the future.


The information that can be extracted from this hypothetical black hole is quantum information, meaning that instead of existing in either a 0 or 1 state, like a classical bit, the data collected would exist as a superposition of all potential states.

“We’ve demonstrated concretely that it is possible, in principle, to retrieve some quantum information from a black hole,” said study co-author Adam Jermyn, a doctoral candidate at the University of Cambridge in England. [The 9 Biggest Unsolved Mysteries in Physics]

But don’t go tossing your computer into the nearest black hole just yet. The amount of information that can be retrieved is tiny — just one quantum bit, or qubit. What’s more, getting that bit would likely mean sacrificing the possibility of retrieving other quantum information from the black hole, the researchers reported in October 2015 in the preprint journal arXiv.

Very interesting. Teleporting and it’s potential use is really worth keeping a closer eye on especially with the progresses that we have seen so far with Quantum. Just 2 weeks ago, scientists were able to prove that one atom was able to co-exist in 2 locations during the same point of time.


Many members of the Stanford community came to an event called “Teleportation” last December. The event featured Tongcang Li, an assistant professor of physics and astronomy and assistant professor of electrical and computer engineering at Purdue University, who discussed his work in quantum superposition, or having an entity simultaneously exist in two locations.

The event was organized by Anna Chukaeva, a first year student at the Graduate School of Business, and Evgeny Duhovny, a local graphic artist and DJ. The two have begun organizing campus events in conjunction with ArtSoFFT, a local group (not affiliated with Stanford). Driven by a desire to popularize and spread a love of science, the group has begun organizing a series of events at Stanford featuring scientists discussing their work.

“What we were looking [for] was a researcher who has published in the scientific journals — so it’s not just someone who is popularizing it. We wanted a real scientist who is doing work in this field, and who is doing breakthrough technology,” Chukaeva said.

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Definitely, long overdue for Mr. Hawkins. Hope he wins the Nobel.


Stephen Hawking has published what he claims could be evidence that his theories on black holes are true — a publication that could win him the Nobel prize.

The physicist hinted last year that he may have solved the black hole information paradox, which is concerned with the apparent problem of what happens to matter when it goes into a black hole.

Professor Hawking has published a paper outlining his theory that the solution to the paradox could be that “hairs” are left on the edge of the black hole. That creates a kind of hologram of what went into it, meaning that it can be conserved.

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Wow! Talk about your “hot” topic; this will definitely have everyone across tech and the web talking: https://lnkd.in/bavpnTf


(Bloomberg) — Googles chairman thinks artificial intelligence will let scientists solve some of the worlds “hard problems,” like population growth, climate change, human development, and education.

Rapid development in the field of AI means the technology can help scientists understand the links between cause and effect by sifting through vast quantities of information, said Eric Schmidt, executive chairman of Alphabet Inc., the holding company that owns Google.

AI will play this role to navigate through this and help us.

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A nice telomerase overview. I’m spoiling the end: “I think it’d be great if the cure for aging came out of the land of the hobbits.”


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William Henry “Bill” Andrews, Ph.D. is an American molecular biologist and gerontologist whose career has centered on searching for a cure for human aging. Andrews is the founder and president of the biotechnology company Sierra Sciences. In 1997, he led the team at Geron Corporation that was the first to successfully identify human telomerase.

“It’s probably better than a person right now (at driving),” Musk said on the call.

Musk added that in the next two years or so, Tesla cars “will be able to drive virtually all roads at a safety level significantly better than humans.”

“I think within two years you’ll be able to summon your car from across the country,” Musk said.

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This article just posted today. Great news; the author did reference the risks that we face with our information, etc. as it relates with countries like Russia and China who are investing in Quantum.


The impact of quantum computation on the financial markets will be direct and swift, and introduces new highs and new lows, opening a playing field of near limitless potential.

Posted by Ben Rossi.