Scientists suggest superionic “hot black ice” deep inside Neptune may explain its tilted, offset and chaotic magnetic field, ...
"A strong magnetic field is very important for life on a planet." ...
Quantum computers, systems that process information leveraging quantum mechanical effects, could reliably tackle various ...
Inside the cores of ice giant planets, the pressure and temperature are so extreme that the water residing there transitions ...
For decades, scientists believed humans lacked the ability to sense magnetic fields. But recent experiments and neurological ...
This magnet fishing trip uncovered more than debris. A hunting knife was pulled from the water, worn and abandoned. No context explained why it had been discarded there. The incident showed how easily ...
In addition to shaping the interior of rocky planets, molten rock located deep within these planets may also contribute to ...
Hamburg-based researchers have developed a system that generates better X-ray pulses at the European X-Ray Free-Electron ...
The way time ticks forward in our universe has long stumped physicists. Now, a new set of tools from entangled atoms to black ...
A thin, watery layer coating the surface of ice is what makes it slick. Despite a great deal of theorizing over the centuries, though, it isn't entirely clear why that layer forms.
Dark matter seems invisible, but it makes up most matter, and we have evidence that it gives the cosmos its shape. Now ...