A weak magnetic field likely attracted matter inward, contributing to the formation of the outer planetary bodies, from ...
Our Solar System is in motion and cruises at about 200 kilometres per second relative to the center of the Milky Way.
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Space.com on MSNJames Webb Space Telescope investigates the origins of 'failed stars' in the Flame Nebula"The goal of this project was to explore the fundamental low-mass limit of the star and brown dwarf formation process." ...
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The Daily Galaxy on MSNScientists Crack 4.6-billion-year-old Space Mystery Using Asteroid DustTiny grains collected from the asteroid Ryugu have given scientists a new window into the magnetic forces that shaped the ...
NASA’s James Webb Space Telescope (JWST) has captured detailed images of Lynds 483 (L483), a star-forming region located 650 ...
Millions of years ago, our Solar System traveled through a densely populated galactic region and was exposed to increased interstellar dust.
The discovery that inert helium can form bonds with iron may reshape our understanding of Earth’s history. Researchers from ...
The entire solar system, ours at least, sits inside a pocket of low density called the Local Hot Bubble (LHB). This cavity in space is 1,000 light-years across, at least, and tips the thermometer at ...
Astronomers used the powerful James Webb Space Telescope to sleuth out some of these objects, called brown dwarfs, in a vibrant star-forming region of our galaxy called the Flame Nebula. Brown dwarfs ...
Nuclear pulse propulsion is a technology that would work. It was being developed in the 1960s but it was stopped because of ...
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