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R550X can carry loads of up to 1,200 pounds, boasts a flight time exceeding three hours, and a top speed of 150 miles per hour.


Rotor Technologies Inc., a firm engaged in the development of autonomous vertical takeoff and landing (VTOL) aircraft, has unveiled and commenced the production of what it claims to be the “largest uncrewed civilian helicopter on the market.”

Termed R550X, the VTOL is derived from the U.S. firm’s Robinson R44 platform and is developed as a versatile autonomous helicopter designed for multiple missions.

No specifications have been revealed, but officials have claimed that it surpasses the capabilities of the famous Tianhe-2 supercomputer.


The National Supercomputing Center (NSC) in Guangzhou, China, has unveiled the Tianhe Xingyi, a homegrown supercomputer, at an industrial event in Guangdong Province, which several media reports have confirmed. The NSC is the parent organization under whose guidance the Tianhe-2 supercomputer was also developed.

Supercomputers are a crucial component of a nation’s progress as they aid in solving the most complex and technical problems. The US has conventionally led the world in hosting the fastest supercomputers, as captured by the TOP500 listings, while also leading in the absolute number of supercomputers available to its researchers.

The high computing prowess of supercomputers can be used to carry out simulations for understanding climate change, carrying out material research, space exploration, and finding cures for various diseases. Of late, supercomputers have assumed importance for developing AI models, and access to advanced supercomputers could be critical in determining who leads the next frontier of information technology.

Sam Altman says he got so many messages after being fired from OpenAI that his phone was unusable. The CEO was abruptly ousted by board members last month before being reinstated. Altman said the situation had been chaotic and confusing.


Sam Altman told Trevor Noah during a podcast appearance that he was inundated with messages in the chaotic aftermath of his firing.

Much like DALL-E 3, visitors to imagine.meta.com can provide a prompt, and Meta’s AI will offer several options. The image up top is a selection Meta AI created. If you’re wondering how Meta trained its AI to generate images, the company says it used 1.1 billion publicly visible Facebook and Instagram images.

That raises some questions about consent: after all, many of these images may have been uploaded before AI in its current form existed, and just because someone wanted to share their artwork with the world doesn’t mean they intended for it to train programs to create similar art. Permission to use art and written works for training AI is an ongoing question with evolving AI and has led to several lawsuits that are still working their way through the courts.

For now, the generated art Meta AI creates isn’t watermarked in a way that can’t be hidden. But Meta says it will roll out invisible watermarks soon that shouldn’t be so easy to cover up.

A beating heart makes for a formidable surgical arena, but a new robotic catheter could someday equip surgeons to operate in the cardiac environment with greater ease.

The device, designed by a team of physicians and engineers at Boston University, possesses shape-shifting capabilities that allow it to be maneuvered through complex anatomy while maintaining enough stability to accomplish surgical objectives within the .

In a study published in Science Advances, the authors demonstrated the robot’s ability to assist with two mock cardiac procedures using animal tissue. The study authors suggest that, with further development, the robotic could make many common heart surgeries far safer and less taxing on the body.

As a leading venture capitalist, Ted Dintersmith lived and breathed the world of innovation. He has seen first-hand how quickly automation is eliminating the structured jobs in our economy, as well as the opportunities for young adults who are bold, creative, and entrepreneurial. As Ted shifted his focus to the future of our schools, he realized that the core purpose of our schools has been lost in a wave of testing, data, and accountability. In this talk, Ted underscores the potential for our kids and our country if we educate to our innovative and creative strengths, and trust our schools and teachers to prepare our kids for life, instead of for standardized tests.

After a twenty-five year career in venture capital, Ted Dintersmith is now focused on issues at the intersection of innovation and education. In the fall of 2012, Ted served as part of the delegation representing the United States at the United Nations General Assembly, where he focused on global education and entrepreneurship. The first two films he executive produced – Most Likely To Succeed and The Hunting Ground – premiered at Sundance, 2015. His website http://www.edu21c.com describes his initiatives and he can be followed @dintersmith.

Ted is a Partner Emeritus with Charles River Ventures, a leading early-stage venture capital firm. Independent industry analysts ranked Ted as the top-performing venture capitalist in the United States for the 1995–99 period. Ted earned a Ph.D. in Engineering from Stanford University, and his undergraduate degree from the College of William and Mary, where he earned High Honors in Physics and English.

This talk was given at a TEDx event using the TED conference format but independently organized by a local community.

💥Join us on our Journey to 1 Million Subscribers💥 Liv Boeree is a British science communicator, television presenter and former professional poker player. She is a World Series of Poker and European Poker Tour champion, and is the only female player in history to have won both a WSOP bracelet and an EPT event. She has a degree in astrophysics and uses her YouTube channel @LivBoeree to discuss science, game theory, probabilities, extinction risk and AI.

Prepare for a radical acceleration in technological development. A Google Deepmind AI has achieved “an order-of-magnitude expansion in stable materials known to humanity,” finding about 800 years’ worth of new materials with revolutionary potential.

The discovery of new materials with unusual properties can start technological snowballs rolling that eventually push society in new directions – but up to this point, it’s been a painstakingly slow process involving a lot of trial-and-error experimentation.

Inorganic crystal materials, for example, may show enormous promise once you first synthesize them, but all this potential could lead nowhere if the crystals don’t remain stable; it’s no good discovering that a new crystal could improve the performance of batteries or electronics if it’s going to fall apart and degrade.

North Carolina State University researchers have developed a weeklong high school curriculum that helps students quickly grasp concepts in both color chemistry and artificial intelligence—while sparking their curiosity about science and the world around them.

To test whether a short high school science module could effectively teach something about both chemistry—a notoriously thorny subject—and (AI), the researchers designed a relatively simple experiment involving pH levels, which reflect the acidity or alkalinity of a liquid solution.

When testing pH levels on a , color conversion charts provide a handy reference: more acidic solutions turn test strips red when a lot of acidity is present and turn test strips yellow and green as acid levels weaken. Test strips turn deep purple when liquids are highly alkaline and turn blue and dark green as alkaline levels decline.