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A woman is already pregnant with the next CRISPR baby, according to He Jiankui, the Chinese scientist who claims to have already created the world’s first genetically edited babies.

Bombshell: He made the claim about the early-stage pregnancy on the second day of an international gene-editing summit at the University of Hong Kong. “There is another one, another potential pregnancy,” he said on stage. He defended his work, saying he feels “proud” to have used gene-editing techniques to make the twin girls HIV resistant. “This is not just for this case, but for millions of children. They need this protection. [An] HIV vaccine is not available,” he said.

Irresponsible: After his presentation, He was quizzed by audience members about his work. Nobel laureate David Baltimore said that proceeding with germ-line editing in this way was “irresponsible” and criticized He for not being more open. “I think there has been a failure of self-regulation by the scientific community because of the lack of transparency,” he said. It also emerged that none of He’s presentation slides had contained information about the implanted embryos—or the babies—when they were submitted to the conference organizers.

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In a new book published this week titled Architects of Intelligence, writer and futurist Martin Ford interviewed 23 of the most prominent men and women who are working in AI today, including DeepMind CEO Demis Hassabis, Google AI Chief Jeff Dean, and Stanford AI director Fei-Fei Li. In an informal survey, Ford asked each of them to guess by which year there will be at least a 50 percent chance of AGI being built.


Short answer: maybe within our lifetimes, but don’t hold out.

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Artificial intelligences are about to get a place to call their own — and it’s located somewhere humans are unlikely to want to visit.

According to a story published Monday in the South China Morning Post, scientists from the Chinese Academy of Sciences plan to construct a research base deep in the South China Sea, and they want artificially intelligent robots to run it.

This base could be the “first artificial intelligence colony on Earth,” those involved in the project told the SCMP.

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Antibiotics have emerged as potentially lifespan-enhancing drugs, according to the results of new research carried out in the UK.

Genetic experiments that eliminate “senescent” cells – older cells, which lose the ability to divide – have already been proven to alleviate age-related dysfunction in model organisms.

Now, scientists have shown for the first time that an FDA-approved antibiotic – Azithromycin – can effectively target and eliminate senescent cells in culture.

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Elon Musk has Tweeted some of the details of the breakthrough changes to the SpaceX Super Heavy Starship.

The overall shape of the SpaceX Super Heavy Starship are about the same. However, there are fundamental materials change to airframe, tanks and heatshield.

@elonmusk Elon, how long until we can have more tech details about the bfs design changes? Some of us rocket nerds are dying to know anything! Thanks!

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The experimental investigation of ultracold quantum matter makes it possible to study quantum mechanical phenomena that are otherwise inaccessible. A team led by the Innsbruck physicist Francesca Ferlaino has now mixed quantum gases of two strongly magnetic elements, erbium and dysprosium, and created a dipolar quantum mixture.

A few years ago, it seemed unfeasible to extend the techniques of atom manipulation and deep cooling in the ultracold regime to many-valence-electron atomic species. The reason is the increasing complexity in the atomic spectrum and the unknown scattering properties. However, a team of researchers, led by Ben Lev at Stanford University and an Austrian team directed by Francesca Ferlaino at the University of Innsbruck demonstrated degeneracy of rare-earth species. Ferlaino’s group focused the on and developed a powerful, yet surprisingly simple approach to produce a Bose-Einstein condensate.

“We have shown how the complexity of atomic physics can open up new possibilities,” says Ferlaino. Magnetic species are an ideal platform to create dipolar quantum matter, in which particles interact with each other via a long-range and orientation dependent interaction as little quantum magnets.

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