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Jul 30, 2021

Coming soon: The quick test that can detect cancer cells in urine

Posted by in categories: biotech/medical, nanotechnology

A nanoparticle diagnostic tool developed by MIT can detect cancer in urine. It could also be used in scans to detect the disease anywhere in the body.

Jul 30, 2021

‘Weird’ fossil from 890 million years ago could be evidence of earliest animal life

Posted by in category: futurism

If confirmed, the finding would push back our earliest evidence of animal life by about 350 million years.

Jul 30, 2021

An endlessly changing playground teaches AIs how to multitask

Posted by in category: robotics/AI

Virtual game worlds provide a non-stop stream of open-ended challenges that nudge AI towards general intelligence.

Jul 30, 2021

Hydrogen produced using renewables will be able to travel through existing gas pipelines, Snam CEO says

Posted by in category: futurism

Marco Alverà made his remarks during an interview with “Squawk Box Europe”.

Jul 30, 2021

3D Printed Material Might Replace Kevlar

Posted by in categories: materials, nanotechnology

Prior to 1970, bulletproof vests were pretty iffy, with a history extending as far as the 1500s when there were attempts to make metal armor that was bulletproof. By the 20th century there was ballistic nylon, but it took kevlar to produce garments with real protection against projectile impact. Now a 3D printed nanomaterial might replace kevlar.

A group of scientists have published a paper that interconnected tetrakaidecahedrons made up of carbon struts that are arranged via two-photon lithography.

We know that tetrakaidecahedrons sound like a modern invention, but, in fact, they were proposed by Lord Kelvin in the 19th century as a shape that would allow things to be packed together with minimum surface area. Sometimes known as a Kelvin cell, the shape is used to model foam, among other things.

Jul 30, 2021

Keeping an Eye on the Fusion Magnet Technology of the Future

Posted by in categories: engineering, innovation

Daniel Korsun’s undergraduate career at MIT

MIT is an acronym for the Massachusetts Institute of Technology. It is a prestigious private research university in Cambridge, Massachusetts that was founded in 1861. It is organized into five Schools: architecture and planning; engineering; humanities, arts, and social sciences; management; and science. MIT’s impact includes many scientific breakthroughs and technological advances.

Jul 30, 2021

Scientists transform water into shiny, golden metal

Posted by in category: particle physics

In a mind-mending experiment, scientists transformed purified water into metal for a few fleeting seconds, thus allowing the liquid to conduct electricity.

Unfiltered water can already conduct electricity — meaning negatively charged electrons can easily flow between its molecules — because unfiltered water contains salts, according to a statement about the new study. However, purified water contains only water molecules, whose outermost electrons remain bound to their designated atoms, and thus, they can’t flow freely through the water.

Jul 30, 2021

How Your Mind Really Works—Quantum Physics, Mayonnaise & the Mystery of Red

Posted by in category: quantum physics

Adapted from The Grand Biocentric Design, by Robert Lanza and Matej Pavsic, published by BenBella Books (2020).

You keep staring at the repair man. His words are starting to sink in. The fabulous and expensive generator you bought a few years ago to keep the lights burning during storms and power failures needs a major repair.

“A head gasket?”

Continue reading “How Your Mind Really Works—Quantum Physics, Mayonnaise & the Mystery of Red” »

Jul 30, 2021

Australian Court Rules That Yes, AI Can Be an Inventor

Posted by in category: robotics/AI

The overturned ruling bucks the trend we’ve previously seen in the US and UK.

Jul 30, 2021

This Robot Taught Itself to Run, Then Proceeded to Knock Out a 5K

Posted by in categories: information science, robotics/AI

Granted, it’s a little different for a robot, since they don’t have lungs or a heart. But they do have a “brain” (software), “muscles” (hardware), and “fuel” (a battery), and these all had to work together for Cassie to be able to run.

The brunt of the work fell to the brain—in this case, a machine learning algorithm developed by students at Oregon State University’s Dynamic Robotics Laboratory. Specifically, they used deep reinforcement learning, a method that mimics the way humans learn from experience by using a trial-and-error process guided by feedback and rewards. Over many repetitions, the algorithm uses this process to learn how to accomplish a set task. In this case, since it was trying to learn to run, it may have tried moving the robot’s legs varying distances or at distinct angles while keeping it upright.

Continue reading “This Robot Taught Itself to Run, Then Proceeded to Knock Out a 5K” »