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Researchers use NVST high-resolution data to study chromospheric fibrils around quiescent filament

Using high-resolution data from the one-meter New Vacuum Solar Telescope (NVST), a research team led by Prof. Yan Xiaoli from the Yunnan Observatories of the Chinese Academy of Sciences (CAS) has conducted an in-depth study on the physical properties and oscillations of chromospheric fibrils surrounding a quiescent filament.

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Former N.Y. state trooper sentenced to 6 months in jail for faking his own shooting

Thomas Mascia pleaded guilty to falsely reporting a shooting, tampering with physical evidence and official misconduct; he resigned after being suspended without pay

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Planetary scientists link Jupiter’s birth to Earth’s formation zone

New research from Rice University suggests that the giant planet Jupiter reshaped the early solar system in dramatic ways, carving out rings and gaps that ultimately explain one of the longest-standing puzzles in planetary science: why many primitive meteorites formed millions of years after the first solid bodies.

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Physicists unlock secrets of stellar alchemy, yielding new insights into gold’s cosmic origins

You can’t have gold until a nucleus decays. The specifics of that process have been hard to pin down, but UT’s nuclear physicists have published three discoveries in one paper explaining key details. The results can help scientists come up with new models to describe the stellar processes that give us heavy elements, as well as make better predictions about the expanding landscape of exotic nuclei.

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Satellites and space trash threaten ozone layer and space safety

Every year, we shoot several thousand satellites and other objects out into space. When satellites die, they become space trash that threatens aerospace safety.

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Magnetically guided streamer funneling star-building material into newborn system in Perseus

A team of astronomers led by Paulo Cortes, a scientist with the U.S. National Science Foundation National Radio Astronomy Observatory and the Joint ALMA Observatory, have made a groundbreaking discovery about how young star systems grow.

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A ‘seating chart’ for atoms helps locate their positions in materials

If you think of a single atom as a grain of sand, then a wavelength of visible light—which is a thousand times larger than the atom’s width—is comparable to an ocean wave. The light wave can dwarf an atom, missing it entirely as it passes by. This gulf in size has long made it impossible for scientists to see and resolve individual atoms using optical microscopes alone.

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Ga. sheriff suspended by governor following physical altercation with police officer

The Dec. 2024 incident unfolded when Towns County Sheriff Kenneth Henderson allegedly berated and assaulted a Hiawassee Police officer for handling a firearm before an investigation

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3 billion-year-old white dwarf still consuming its planetary system challenges previous assumptions

In approximately 5 billion years, the sun will deplete its hydrogen fuel and collapse under its own gravity, becoming a white dwarf. Though Earth-sized, this dense remnant will retain much of the sun’s gravitational influence.

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Hidden in the sun’s glare, this asteroid is uncomfortably close to earth

In the distant past, the solar system was rife with impacts and collisions. Millions of rocky objects zoomed chaotically through the system, smashing into each other in collisional cascades. Over time, many of them eventually became part of the rocky planets. What’s left of the space rocks are mostly gathered in the main asteroid belt.

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Telescope hack opens a sharper view into the universe

A novel imaging technique used for the first time on a ground-based telescope has helped a UCLA-led team of astronomers to achieve the sharpest-ever measurement of a star’s surrounding disk, revealing previously unseen structure.

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Light particles prefer company: Photons exhibit collective behavior only after reaching certain threshold

As far as particles of light are concerned, the collective is more important than the individual. When they get to decide between two states, they will favor the one that many of their fellow particles have already adopted. However, this collectivist tendency does not kick in until enough photons have assembled in the same place.

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A tiny chip that can help us see deeper into space

A new imaging system could help us see deeper into the universe than ever before. The same powerful technology could also help us analyze the chemical makeup of everyday materials such as food and medicines much faster and with greater accuracy than current methods.

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Quantum theory faces ‘cultural gaps’ as computational limits reshape entanglement understanding

Quantum researchers in the twenty-first century are part of an international network that requires a great deal of interaction and communication. Around one hundred publications on the topic are produced every day, often by authors who work in close collaboration with one another. New developments and discoveries are quickly integrated into the field, usually within a matter of just a few weeks. Researchers immediately proceed to build on these findings with innovative ideas. That is what the day-to-day life in the field of quantum theory looks like as it celebrates the one-hundredth anniversary of the initial development of quantum mechanics.

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‘Cycle of catch and release’: N.C. PD calls out repeat offenders, including juvenile arrested 111 times

While the Charlotte-Mecklenburg Police Department’s quarterly report showed a drop in crime, officials expressed frustration that 60% of arrests for violent crimes were repeat offenders

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