Superionic water—the hot, black and strangely conductive form of ice that exists in the center of distant planets—was ...
An international research team led by scientists from the University of Rostock, CNRS-École polytechnique in France, and ...
Superionic water could be responsible for the peculiar magnetic fields of Uranus and Neptune. Researchers have analyzed it ...
The ice could explain the mysterious magnetic fields belonging to icy worlds. When you purchase through links on our site, we may earn an affiliate commission. Here’s how it works. Scientists just ...
For the first time in history, scientists are able to generate hot "superionic ice" that's unlike any other type of ice on Earth. This bizarre ice is so alien that it's not even naturally occurring on ...
American physicist Percy Bridgman was the first to discover five solid water phases in 1912 and we now know of more than 17 crystalline and several amorphous ice structures. This unique behaviour of ...
A proposed form of ice acts like a cross between a solid and a liquid. Now, a new study strengthens the case that the weird state of matter really exists. Normal ice is composed of water molecules, ...
Most of us are familiar with water in three forms: as a vapor, a liquid, or a cold, opaque hunk you clink into your drink. But water actually exhibits numerous phases of existence depending on its ...
Water can take on far more forms than many people give it credit for, and now scientists have recreated a particularly bizarre one in the lab – a “hot black ice” that may exist deep inside planets ...
Laboratory experiments, utilizing laser-induced shock compression of ice within diamond anvil cells, successfully generated superionic ice under conditions mimicking the interiors of Uranus and ...
Scientists have predicted a new phase of superionic ice, a special form of ice that could exist on Uranus and Neptune, in a theoretical study performed by a team of researchers. Scientists have ...
May 9 (UPI) --Scientists at the Lawrence Livermore National Laboratory successfully imaged the structure of superionic ice using giant lasers. Shockwaves produced by the laser caused the water to ...
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