In the quirky quantum world, particles can be affected by forces that they never directly encounter. A classic example is the ...
Researchers have found that a swirling water vortex can force opposing waves to form rotating lines of stillness across an ...
Lines of momentarily flat water extend outward and rotate, in the opposite direction to the flow of the vortex. The left video shows the pattern from the experiment, while the right video shows the ...
Physicists at the University of Southampton have tested and proven a 50 year old theory for the first time using electro-magnetic waves. They have shown that the energy of waves can be increased by ...
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