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Blob jump physics problem: Applying the work–energy theorem
Solve the classic blob jump physics problem using the Work–Energy Theorem. Follow how gravitational potential energy, kinetic energy, and energy transfer explain the launch speed and maximum height, ...
Physicists have uncovered a link between magnetism and a mysterious phase of matter called the pseudogap, which appears in ...
In a landmark discovery that bridges nearly a century of theoretical physics, a Chinese research team has successfully ...
The world today is marked by paradox. Never before has humanity possessed such extraordinary scientific knowledge, ...
Our Sun’s outer atmosphere, the corona, is millions of degrees hotter than it should be, and no one knows why.
Scientists have long believed that foam behaves like glass, with bubbles locked into place. New simulations reveal that bubbles never truly settle and instead keep moving through many possible ...
Engineers reinvent the 5,000-year-old gear using fluids instead of solid teeth.
Researchers from the Faculty of Engineering at The University of Hong Kong (HKU) have made a significant discovery regarding ...
Foams were once thought to behave like glass, with bubbles frozen in place at the microscopic level. But new simulations ...
New research shows that advances in technology could help make future supercomputers far more energy efficient. Neuromorphic computers are modeled after the structure of the human brain, and researche ...
Ultracold atoms sit at the heart of the quantum-technology revolution. India has built a strong and steadily growing presence ...
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