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Science that matters: AI, space, biotech, physics, future tech β€” explained sharply
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🌌 Astronomers Found 84 Cosmic Objects We Somehow Missed for Decades

They were already sitting in NASA’s data.

We simply weren’t looking at the right kind of light.

Astronomers mining observations from the Chandra X-ray Observatory have uncovered 84 mysterious objects across six nearby galaxies, including Andromeda and the Pinwheel Galaxy. They appear to belong to a previously unrecognized population researchers are calling hypersoft X-ray sources.

The strange part is their spectrum.

Most bright X-ray binaries radiate strongly above 0.3 keV. These objects do almost the opposite: they appear primarily below 0.3 keV, right near the boundary between X-rays and extreme ultraviolet light. That makes them exceptionally difficult to see, because this radiation is easily absorbed by gas between the stars β€” and because standard astronomical surveys were not optimized to search this faint corner of the spectrum.

Some of the objects may contain white dwarfs, neutron stars or black holes feeding on companion stars. Their true energy output could be enormous, with much of it emerging as invisible extreme-ultraviolet radiation.

That matters for two big reasons.

Such systems could provide a previously hidden source of radiation capable of ionizing gas throughout galaxies. And some may be accreting white dwarfs β€” systems astronomers suspect can eventually become Type Ia supernovae, the stellar explosions we use as cosmic distance markers.

Researchers do not yet know exactly what these objects are. β€œHypersoft source” currently describes what astronomers observe, rather than one confirmed type of star system.

But the discovery carries a wonderful scientific lesson:

Sometimes the Universe does not need a new telescope to reveal something new.

Sometimes you just need to ask an old telescope a question nobody asked before.

#Astronomy #Space #Chandra #Xrays #BlackHoles #Supernovae #NASA #Science

https://www.nature.com/articles/s41550-026-02959-7
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The brain of a dead male fruit fly was connected to a ROBOT β€” giving the fly a new body and allowing it to move freely through our world again.

The fly’s neural activity is translated into commands for motors that control the robot’s legs.

So, in a sense, the fly is… alive again.

β€œBlack Mirror” was a documentary.

@science
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Humanity continues to complicate its own future.
Fruit flies have been loaded into drones and tiny vehicles.
@science
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🧠 Scientists Replaced Most of a Mouse’s Cortex With Human Brain Tissue

This sounds like science fiction, but the experiment is real.

Stanford researchers genetically engineered mice so that most of their cerebral cortex and hippocampus never developed. The adult animals were left with only about 2% of the normal amount of corresponding cortical tissue.

Then, shortly after birth, scientists implanted tiny human cortical organoids β€” brain-like structures grown from human stem cells β€” into the empty space.

Three months later, more than 90% of the cortical tissue by volume was human-derived.

And it did not simply sit there.

Human neurons became integrated into the mouse nervous system, developed organized electrical activity and sent long-range projections β€” some extending as far as the spinal cord. The mice retained broadly normal movement, although researchers found specific differences in coordination and spontaneous behavior.

Then came an unexpected discovery.

Inside the transplanted human tissue, researchers found cells resembling von Economo neurons β€” extremely rare, large neurons associated with brain regions involved in social awareness and decision-making. They occur in humans, great apes, elephants, dolphins and whales, but scientists had never previously succeeded in generating them in laboratory brain cultures.

The team also demonstrated why the model could matter medically. When the animals experienced several hours of reduced oxygen, the human cortical tissue was severely damaged while comparable mouse tissue was largely spared β€” potentially giving researchers a living model for studying why the developing human brain is particularly vulnerable to oxygen deprivation.

An important distinction: these are not mice with human intelligence or a human brain. The transplanted tissue remained developmentally immature, and the experiment provides no evidence of human-like cognition or consciousness. It is a new animal model for studying human neural development and disease.

But the boundary scientists have crossed is remarkable.

We can now grow substantial amounts of developing human neural tissue not just in a dish β€”

but inside a living brain, connected to a living nervous system.

Where should the ethical boundary for experiments like this be?

#Neuroscience #Brain #Organoids #StemCells #Biotechnology #Stanford #Science

https://www.nature.com/articles/s41586-026-11032-2
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βš›οΈ Scientists Found Quantum Entanglement Inside Higgs Boson Decays

Einstein famously disliked quantum entanglement enough to call it β€œspooky action at a distance.”

Now physicists have found strong evidence that the same bizarre quantum connection survives inside some of the most violent particle collisions humans can create.

Using the ATLAS Experiment detector at the Large Hadron Collider, researchers studied Higgs bosons decaying into pairs of Z bosons β€” massive particles that exist for only a tiny fraction of a second.

The question was simple:

Are the quantum states of those two particles independent β€” or entangled?

The Z bosons disappear far too quickly to measure directly. Instead, researchers reconstructed their spin states from the directions of the electrons and muons produced when they decayed.

The resulting correlations strongly favored quantum entanglement. A statistical analysis rejected a separable, non-entangled description at 4.7 sigma β€” strong evidence, although just below particle physics’ conventional 5-sigma discovery threshold.

There is another unusual detail.

A Z boson has three possible spin projections. So instead of the familiar two-state qubits used in quantum computing, the entangled Z bosons behave mathematically as qutrits β€” three-state quantum systems.

Entanglement itself is not new. Scientists have demonstrated it spectacularly with photons, atoms and other systems.

What is new is where it survived.

These Z bosons were created in proton collisions at energies of 13 and 13.6 TeV. They are enormously heavier and vastly shorter-lived than the particles used in traditional entanglement experiments. The result provides the first measurements of entanglement between pairs of Z bosons and strong evidence for entanglement between massive vector bosons at the electroweak scale.

Quantum mechanics, in other words, does not become less weird when you turn the energy up.

It just gets a much bigger laboratory.

#QuantumPhysics #HiggsBoson #CERN #LHC #QuantumEntanglement #Physics #Science

https://journals.aps.org/prl/abstract/10.1103/y1nh-1b82
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In principle, once cameras everywhere capture enough high-resolution, overlapping views, ordinary photographs may start to feel obsolete.

Instead of saving a single flat image, those recordings could be used to reconstruct a navigable 3D representation of a scene β€” estimating the position, shape, depth, texture, and appearance of objects from multiple camera angles.

You could then return to a particular moment, move the virtual camera to almost any viewpoint, and generate a new image from that angle. Parts of the scene that were never directly visible to any camera wouldn’t be true recordings β€” AI would have to infer and reconstruct them from the surrounding visual information.

Author: joergkahlhoefer

#gaussian #splat #3D
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