Scientists Discover Particles That Break Newton’s Third Law

Scientists Discover Particles That Break Newton’s Third Law

Researchers at the Tokyo University of Science have discovered microscopic particles that can behave in ways that appear to violate Newton’s third law.

Under electric fields, unequal particle interactions create a self-sustaining “chasing” motion, preventing static clusters and producing dynamic structures that constantly break apart and reorganize. The discovery could help explain collective behavior in biological systems and enable new generations of microrobots.

This episode includes AI-generated content.

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Bosons and Fermions Could Form an Entirely New Kind of Quantum Matter

Bosons and Fermions Could Form an Entirely New Kind of Quantum Matter

Researchers at Monash University predict a remarkable new state of matter in which bosons and fermions could combine into stable, self-sustaining quantum droplets under extreme conditions.The theoreti...

27 Syys 18min

Quantum Mechanics Is Entering a New Era of Real-World Applications

Quantum Mechanics Is Entering a New Era of Real-World Applications

New breakthroughs in quantum mechanics are pushing scientists closer to controlling phenomena once considered purely theoretical.As researchers overcome microscopic and technological challenges, these...

26 Syys 20min

CERN Reveals a Strange New State Inside the Heart of Matter

CERN Reveals a Strange New State Inside the Heart of Matter

New results from CERN’s ALICE experiment are revealing how gluons behave inside atomic nuclei at extremely small scales.By studying J/ψ particles produced at high energies, researchers found evidence ...

26 Syys 21min

A New Theory Connects Quantum Spacetime to the Universe’s Dark Energy

A New Theory Connects Quantum Spacetime to the Universe’s Dark Energy

Could quantum uncertainty in spacetime explain both dark energy and the accelerated expansion of the universe?Physicist Savvas Koushiappas proposes a new framework that could replace the Big Bang sing...

25 Syys 17min

When Electrons Defy the Rules: The Topological Mystery Inside an Exotic Material

When Electrons Defy the Rules: The Topological Mystery Inside an Exotic Material

Scientists have uncovered strange quantum oscillations in zirconium pentatelluride that persist under extreme magnetic fields and ultra-low temperatures.Its unusual topological structure allows energy...

24 Syys 22min

Can Anything Really Travel Faster Than Light?

Can Anything Really Travel Faster Than Light?

Why can’t anything with mass travel faster than light? Einstein’s relativity shows that the speed of light is more than a speed limit—it is a fundamental boundary imposed by space-time and causality.E...

23 Syys 50min

CERN Recreates Matter From the Universe’s Earliest Moments

CERN Recreates Matter From the Universe’s Earliest Moments

Physicists at CERN and the Niels Bohr Institute have recreated primordial matter from the early universe using surprisingly light atomic nuclei.By colliding oxygen and neon at extreme speeds, they pro...

22 Syys 20min

A Centuries-Old Experiment Could Help Find Dark Matter

A Centuries-Old Experiment Could Help Find Dark Matter

Physicists are reviving the Cavendish experiment with a modern twist to search for hypothetical milicharged particles that could make up part of dark matter.Using oscillating electric fields inside a ...

21 Syys 18min

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