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Apr 3, 2024

Deciphering genomic language: New AI system unlocks biology’s source code

Posted by in categories: biological, robotics/AI

Artificial intelligence (AI) systems like ChatGPT have taken the world by storm. There isn’t much in which they’re not involved, from recommending the next binge-worthy TV show to helping navigate through traffic. But can AI systems learn the language of life and help biologists reveal exciting breakthroughs in science?

Apr 3, 2024

‘Neutronic molecules’: Study shows neutrons can bind to quantum dots

Posted by in categories: particle physics, quantum physics

Neutrons are subatomic particles that have no electric charge, unlike protons and electrons. That means that while the electromagnetic force is responsible for most of the interactions between radiation and materials, neutrons are essentially immune to that force.

Apr 3, 2024

A new computational technique could make it easier to engineer useful proteins

Posted by in categories: biotech/medical, computing, genetics, neuroscience

To engineer proteins with useful functions, researchers usually begin with a natural protein that has a desirable function, such as emitting fluorescent light, and put it through many rounds of random mutation that eventually generate an optimized version of the protein.

This process has yielded optimized versions of many important proteins, including green fluorescent protein (GFP). However, for other proteins, it has proven difficult to generate an optimized version. MIT researchers have now developed a computational approach that makes it easier to predict mutations that will lead to better proteins, based on a relatively small amount of data.

Using this model, the researchers generated proteins with mutations that were predicted to lead to improved versions of GFP and a protein from adeno-associated virus (AAV), which is used to deliver DNA for gene therapy. They hope it could also be used to develop additional tools for neuroscience research and medical applications.

Apr 3, 2024

Tim Maudlin — What is Strong Emergence?

Posted by in categories: biological, chemistry, physics

Watch more videos on complexity and emergence: https://bit.ly/3TxyQBmThe world works at different levels—fundamental physics, physics, chemistry, biology, ps…

Apr 3, 2024

Reconstructing the evolution history of networked complex systems

Posted by in categories: biological, robotics/AI

Evolution processes of complex networked systems in biology and social sciences, and their underlying mechanisms, still need better understanding. The authors propose a machine learning approach to reconstruct the evolution history of complex networks.

Apr 3, 2024

Classical optical neural network exhibits ‘quantum speedup’

Posted by in categories: information science, quantum physics, robotics/AI

In recent years, artificial intelligence technologies, especially machine learning algorithms, have made great strides. These technologies have enabled unprecedented efficiency in tasks such as image recognition, natural language generation and processing, and object detection, but such outstanding functionality requires substantial computational power as a foundation.

Apr 3, 2024

Study shows magnetic fields boosts electrocatalysis for sustainable fuel production

Posted by in categories: chemistry, energy, sustainability

In an era where the quest for sustainable energy sources has become paramount, researchers are tirelessly exploring innovative avenues to enhance fuel production processes. One of the most important tools in converting chemical energy into electrical energy and vice versa is electrocatalysis, which is already used in various green-energy technologies.

Apr 3, 2024

Study Reveals Dusty Chaos May Be Key to Formation of Life-Building Space Molecules

Posted by in category: space

Combining results of laboratory studies on the infra-red glow of carbon molecules in simulation software has led a team of researchers to a new discovery about the creation of spherical carbon ‘cages’ called fullerenes.

Given these molecules could have protectively carried complex compounds through the harshness of interstellar space, the findings could have implications for how life arose on Earth, and beyond.

Following the confirmed detection of fullerenes surrounding the dusty surrounds of dying stars called planetary nebulas in recent decades, researchers have pondered the process that led to their creation.

Apr 3, 2024

MIT researchers discover “neutronic molecules”

Posted by in category: habitats

MIT Department of Physics.

77 Massachusetts Avenue.

Building 4, Room 304

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Apr 3, 2024

James Webb Space Telescope spots hints of exomoons forming in infant star system

Posted by in category: space

It remains a fascinating system for astronomers because the protostar and its protoplanetary disk are estimated to be no older than 5.5 million years — a cosmic infant compared to our 4.5-billion-year-old solar system.

“PDS 70 is special, as it is the only protoplanetary disk so far where all astronomers agree that we have found forming planets caught in the act,” Christiaens said. “Detailed study of this system has thus allowed us to learn a lot about planet formation.”

The researcher said that little is known about the properties of the potential third planet around PDS 70 thus far. The planet — which, if confirmed, would be designated PDS 70D — appears to be shrouded in a vast amount of dust, and it orbits its infant star at around 13 times the distance between Earth and the sun.

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