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Machines are evolving 10 million times faster than we are. Are you ready for robots that run our homes, watch our neighborhoods and even fight our wars? One day in the not too distant future, robots will travel to the far reaches of the universe, they will be the first to colonise new worlds. Robots will lead the way in the exploration of deep space.

Robots, machines of our nightmares, or servants of man? In the 1930s film Metropolis the robot was an evil character, it represented our darkest fears. By the 1950s they had become even more sinister and powerful, but over that last few decades our opinions of robots have dramatically changed, they’ve been reinvented as the police force of the future. But can real robots match the exploits of their celluloid cousins?

While the movies were creating ruthless men of steel, real robots were starting their own painful march into the world. Robots are still basic but over the past few decades they have advanced enormously. Before robots can become the masters of the universe, or even the servants of mankind, they need to accomplish one important thing, they need to move around.

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Physicists have a long history of sticking our noses where they don’t belong — and one of our favorite places to step beyond our expertise is the question of consciousness and free will. Sometimes our musings are insightful, sometimes incoherent, and usually at least somewhat naive. Which a fair description of this show, so of course Space Time needs to weigh in physics and free will…

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THE CHALLENGE, FIRST FEATURE FILM SHOT IN SPACE: Thoracic surgeon Evgenia Belyaeva has one month to prepare for a flight to the International Space Station, where she must operate on a crew member. Will she be up for the challenge? Can she overcome her fears and insecurities? Will she be able to perform the complicated surgery in zero gravity, and give the cosmonaut a chance to return to Earth alive?

The Russians have long been at the forefront of scientific and technological innovation. With the historic launch of Yuri Gagarin into space in 1961, they made history by becoming the first country to send a human being into orbit. Decades later, they have once again made headlines by being the first in the world to develop a COVID-19 vaccine, a remarkable achievement in the face of a global pandemic. And now, they have again beaten everyone else by shooting the first-ever movie in space.

Watch the trailer:

#TheChallenge #FirstMovieShotinSpace

Year 2023 face_with_colon_three


If humanity is ever to consider substantial, long-term colonization of Mars, the resources needed are going to be extensive. For a long-term human presence on Mars to be established, serious thought would need to be given to terraforming the planet. One major requirement for such terraforming is having the protection of a planetary magnetic field — which Mars currently does not have. The Earth’s magnetosphere helps protect the planet from the potential sterilizing effects of cosmic rays and also helps retain the atmosphere, which would otherwise by stripped by large solar storms as they pass over the planet. Mars does have small patches of remnant surface magnetic field, but these are localized in the southern hemisphere and are not of sufficient size or magnitude to protect the planet or a colony.

In this article we explore comprehensively for the first time, the practical and engineering challenges that affect the feasibility of creating an artificial magnetic field capable of encompassing Mars. This includes the concerns that define the design, where to locate the magnetic field generator and possible construction strategies. The rationale here is not to justify the need for a planetary magnetosphere but to put figures on the practicalities so as to be able to weigh the pros and cons of the different engineering approaches.

The optimum solution proposed is completely novel, although inspired by natural situations and fusion plasma techniques. The solution with the lowest power, assembly and mass is to create an artificial charged particle ring (similar in form to a ‘radiation belt’), around the planet possibly formed by ejecting matter from one of the moons of Mars (in a fashion similar to that which forms the Jupiter-Io plasma torus), but using electromagnetic and plasma waves to drive a net current in the ring(s) that results in an overall magnetic field.

It has been almost a week since the last solar storm hit the Earth. And it was a relatively minor storm that did not really affect us much. The worst was experienced over the Indian Ocean region where a temporary radio blackout was observed. But things are about to change quickly for the worse. NASA has issued a warning over a major solar storm strike on Earth. The initial hit is expected tomorrow, April 19, when glancing blows are expected and on April 20, a massive direct hit has been predicted. If this solar storm does strike the Earth, the impact can be far more dangerous.

The information comes from space weather physicist Tamitha Skov, who is popularly known as Space Weather Woman. In a recent tweet, she said, “Ready for #aurora? A #solarstorm direct hit is coming. NASA predicts impact 20 April. Additional glancing storms launched earlier mean activity could pick up late on April 19. Expect extended aurora at high latitudes with good chance of views down to mid-latitudes by the 20th”.

The source of this solar storm is a massive coronal mass ejection (CME) cloud that is headed for the Earth. The cloud is moving in a crescent shape and that is why glancing blows are expected earlier than a direct hit. However, this partial strike can have a concerning effect. It can weaken the magnetic fields of the Earth enough to create cracks on it, which can allow CME to escape into the upper atmosphere and cause a far more intense storm.

Jennifer Doudna:

Nobel Laureate Biochemist: Early in my work on CRISPR, I had a dream one night about a colleague of mine asking me to explain CRISPR to a friend of his. And the friend turned out to be Hitler. And it was Hitler with a pig face and a horrifying look that made me imagine some of the worst aspects of what genome editing could bring about if it were used irresponsibly.

And I woke up from that dream thinking that it was so critical that we as scientists think together about how we use our technologies responsibly.

This film by Ken Gumbs tackles the issue of pending greater-than-human artificial intelligence and the possible ramifications. Different individuals with different backgrounds are interviewed on the subject, including a theologian, a philosopher, a brain builder and a cyborg. A wide spectrum of topics are discussed, including trans-humanism, mind-machine mergers, uploading, and artificial super-intelligence.