Physics
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Scientists Discover Superionic State in Earth’s Inner Core
Read more: Scientists Discover Superionic State in Earth’s Inner CoreEarth’s inner core is not just solid iron—it’s a dynamic, superionic state that reshapes our understanding of planetary interiors.
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Google’s Quantum Computer Just Changed Everything!
Read more: Google’s Quantum Computer Just Changed Everything!A broader overview of the implications of the recent quantum‑computing breakthroughs — how quantum machines may shift computing, science, and industry, and why the “quantum revolution” may be closer than many expect.
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Quantum Echoes: Towards real‑world applications
Read more: Quantum Echoes: Towards real‑world applicationsThe video presents Google Quantum AI’s recent breakthrough: their “Quantum Echoes” algorithm — run on the “Willow” chip — which claims the first verifiable quantum‑computing advantage over classical supercomputers. It discusses how quantum‑accelerated simulations may soon impact molecular modeling, materials science, and even drug discovery.
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NASA Maps Seasonal Pulses in Glacier Flow Worldwide
Read more: NASA Maps Seasonal Pulses in Glacier Flow WorldwideGlobal satellite analysis reveals seasonal speedups and slowdowns across Earth’s glaciers.
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Particle physicists detect a new ‘magic’ entanglement phenomenon at the LHC
Read more: Particle physicists detect a new ‘magic’ entanglement phenomenon at the LHCLHC data reveal a surprising entanglement pattern, offering new quantum-information probes for collider physics.
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2025 Nobel Prize in Physics Awarded for Macroscopic Quantum Effects
Read more: 2025 Nobel Prize in Physics Awarded for Macroscopic Quantum EffectsThe 2025 Nobel Prize in Physics honors macroscopic quantum tunneling in superconducting circuits.
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CERN Antimatter Breakthrough: Eightfold Jump in Antihydrogen Production
Read more: CERN Antimatter Breakthrough: Eightfold Jump in Antihydrogen ProductionUsing this approach, the ALPHA experiment produced over 2 million antihydrogen atoms during experimental runs of 2023–24.
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Fermilab’s Quandarum Quantum Sensor Targets Axion Dark Matter Detection
Read more: Fermilab’s Quandarum Quantum Sensor Targets Axion Dark Matter DetectionFermilab’s new quantum sensor prototypes aim to catch axion dark matter signals live.


