On an infrared camera, a warm object normally stands out clearly against cooler surroundings. Researchers have now built a three-dimensional cloak that bends heat around an object, erasing its thermal outline while protecting the space inside from temperature extremes...

This approach could eventually improve heat control around microchips and sensitive electronic components. It may also help protect equipment in severe environments or reduce the thermal signatures used to locate people and machinery...

They printed a precise aluminum lattice in 3D to create highly conductive pathways through the cloak. Aluminum moves heat readily, allowing energy to travel quickly through selected regions. The remaining spaces were filled through mold casting with a rubbery material that transfers heat much more slowly.

Together, the materials created a controlled thermal route. Some sections accelerated heat flow while others restricted it, steering energy around the space occupied by the concealed object...

...In electronic systems, the cloak might redirect heat away from vulnerable components or prevent nearby heat sources from interfering with delicate devices.

It could also help protect equipment exposed to extreme temperatures. Security and defense applications are another possibility, including reducing the infrared signatures that allow thermal cameras to distinguish people or machinery from their surroundings...

...Concealing an object that produces its own heat presents a more difficult problem because that energy would continue building inside the protected region and could eventually reveal its location...

The researchers now plan to investigate smart, multifunctional cloaks capable of performing those active tasks. Such devices could eventually do more than hide a thermal signature by deliberately controlling where heat gathers, how it spreads, and where it leaves the protected region...

 

Early on the morning of July 24, Ukrainian forces attacked more Wildberries logistics centers — this time in Crimea, the Leningrad region, and St. Petersburg. In Russia’s northwest, drones damaged two separate warehouse complexes, in Shushary and Utkina Zavod. Authorities did not report any injuries. Nikolai (name changed), a St. Petersburg resident who was near the site of the drone strike in Shushary, told Meduza what happened after the attack...

People had expected this and said so openly: “It’s strange that we haven’t been hit yet.” If Wildberries was under attack, then all the big logistics centers would be destroyed, St. Petersburg’s included. It was only a matter of time...

When the internet shutdown happened last year, everyone was furious and complained. Then they got used to it very quickly: “Fine, whitelists it is. Fine, VPNs it is. We’ll each buy 300,000 VPNs and find the best one.”

Then came the gasoline crisis: at first people were horrified, and now it’s eased off. The same thing is happening with Wildberries: the fire in Elektrostal caused a sensation; it was some kind of super-event. But now everyone is very calm about it.

The deeper questions worry people far more: whether martial law will be imposed, whether there will be a mobilization. I can’t say people are out on the street talking about it on every corner, but you hear these conversations when you’re sitting in a bar or someplace like that. It worries men and women alike. Some are already making plans — voting, for instance, and then leaving the country right away, just in case.

 

One year on from the first-ever collisions of oxygen at the Large Hadron Collider (LHC), the main LHC Collaborations – ALICE, ATLAS, CMS and LHCb – have each reported signs of the state of matter known as quark–gluon plasma (QGP) originating from these collisions.

QGP is a state of matter that forms under intense pressure and at temperatures over 100 000 times hotter than the centre of the Sun. Under these extreme conditions, composite particles break down into quarks and the gluons that ordinarily hold them together. Scientists believe that this was the state of the Universe in the first millionths of a second after the Big Bang...

It was previously thought that colliding heavy ions such as lead – which is over 200 times heavier than the protons typically collided at the LHC – was the only way to create the conditions necessary to form QGP. But recently this premise has been thoroughly challenged, including earlier this year when the ALICE Collaboration, which specialises in the study of this extreme state of matter, reported a new sign of QGP from proton–proton and proton–lead collisions. And last year, the LHC Collaborations opened up a new probe of QGP when they found the first hints of QGP from oxygen–oxygen collisions. Now, having searched even more deeply, the LHC experiments have seen multiple signs of QGP formation in oxygen–oxygen and neon–neon collisions...

[–] [S] 5 points 1 week ago

I haven't seen any evidence they're equipped with guns if that's what you mean.

They probably have a proximity fused HEAT charge in a fragmentation-optimized case.

The resemblance to a WWII-era fighter-bomber suggests it might also be effective in a reusable role, dropping grenades on targets too far away to be hit by quadcopters, and then returning to base.

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    ...The Ukrainian defense ministry reported that the drone is highly maneuverable and provides precise and smooth control at various speeds.

    The Cyclops UAS was developed by a Ukrainian company. The system has several variants.

    The first variant is less expensive, simpler in design, and easier to operate. These are designed to engage ground targets, as well as slow-moving aerial targets at low altitudes.

    The second variant has significantly higher tactical and technical characteristics and is designed to effectively engage high-speed Shahed drones at high altitudes...

     

    ..."Eventually, we need some form of universal basic income for everybody while they work and once they retire," Roubini added. "We're already on the way."...

    "We'll have either ex-post distribution—that is universal basic income—or we'll have it ex-ante. Ex-ante means some form of socialism," Roubini explained. "Essentially, the government is going to take over some fraction of the big tech firms."

    He said AI companies are already willing to hand over stakes to the government, alluding to a Financial Times report that said OpenAI has discussed giving 5% as a way for the public to share in the upside of AI.

    Altman's proposal would entail other AI companies providing similar stakes, although it's not clear if his U.S. rivals would be willing to do so.

    As a result, Roubini believes universal basic income or socialism is inevitable, saying "We're going already in that direction, effectively."...

    ...he called it optimistic, given that it assumes 10% growth and "machines doing all the work."...

    [–] [S] 1 point 1 week ago

    Exactly. USAmericans hating one of their oligarchs does not threaten the entire government the way sapping support from the Moscovian petite bourgeois imperils the stability and continued existence of the mafia-State occupying the Kremlin.

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    ...the fires destroyed thousands, or even tens of thousands, of items belonging to sellers who work through Wildberries, Russia’s largest online retailer. Very rough, preliminary estimates put the damage at more than 50 billion rubles. Up to 15% of the company’s total warehouse space may have been affected...

    Social media users have pointed out that Wildberries does in fact sell war-related goods, including body armor, combat helmets, camouflage uniforms, and fiber-optic cable for drones...

    The Kotovsk warehouse opened in late May 2025 and plays an important role in regional logistics. The center can store up to 54 million items. At the opening, Kim said:

    "Building a logistics center in Tambov Oblast will help optimize existing routes, significantly reduce costs and transit times for transportation, storage, and delivery of goods. In addition, having a logistics center will help local entrepreneurs develop small and medium-sized businesses by giving them the ability to store, distribute, and ship goods to other cities."

    ...In early July, Wildberries added a clause to its seller agreement exempting the company from any liability in the event of a drone attack. The amendment took effect on July 7 — 11 days before Ukraine’s strike on the warehouses...

    "Today it wasn’t just goods that burned. Another illusion burned — that someone would protect entrepreneurs. The rules are changing. The risks are being shifted onto us. The losses are becoming ours too. It’s only going to get worse. Something urgently needs to change, radically."

    [–] [S] 1 point 2 weeks ago (1 child)

    Source for claim of 1% mass loss per cycle:
    https://research.tue.nl/en/publications/combustion-of-micron-sized-iron-particles-in-a-drop-tube-reactor/

    I think the deciding factor between iron and aluminum comes down to exhaust filtration.

    Iron oxide in the exhaust can be collected cheaply with a combination of centrifugal and electrostatic forces and it tends to retain is grain size. Aluminum oxide is lighter, more electrically resistive, and tends to break down into too-small nanoparticles.

    Yeah, you'd only need to sinter pellets to pump hydrogen through them in a static pile. A fluidized bed reactor can reduce the iron oxide powder as is, and keeping the temperature lower prevents sticky sintering at the cost of taking longer to complete.

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  • [–] [S] 1 point 2 weeks ago (3 children)

    The whole mass of iron powder does not need to be re-ground after every use. From what I've read so far, about half a percent experiences sintering and needs to be re-ground, and another half a percent breaks down into too fine of dust and needs to be filtered out of the exhaust, sintered, and then reground. The efficiency penalty of reprocessing the fuel is about 0.1% - 1 kWh of reprocessing for every 1 MWh of generation.

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  • [–] [S] 2 points 2 weeks ago* (5 children)

    The existing nuclear infrastructure has its own issues, like long term waste management. My understanding is that long lived isotopes can be burned as fuel in fast breeder reactors, and the waste from those is safe in 100 years. Every nuclear power plant having enough cooling pools for 100 years worth of spent fuel is a manageable problem. But I've read that somewhere in that cycle some pretty nasty stuff gets generated & if it were stolen it could be used to make a potent radiological weapon. I think that's why building the things has been a non-starter in USA - we've been in a cold Civil War for the last 161 years, and I think MAGA would do a nuclear terrorism if we gave them the opportunity.

    But yeah, iron powder is a drop in replacement for coal in stationary, utility scale electrical generation.

    Iron powder is easier to transport than hydrogen. Hydrogen needs high pressure, cryogenically cooled tanks. It turns any metal it touches brittle. And it boils off over time, losing some of its energy value during transport and storage.

    Iron powder is safer and cheaper to transport than ammonia, which also needs a pressurized tank and would be a major disaster if it spilled. Reprocessing rust back into iron using hydrogen is also orders of magnitude more efficient than converting hydrogen into ammonia.

    All iron powder needs for transport is a shipping container full of nitrogen gas, with a rubber gasket to keep it somewhat air tight. If it spills its just a pile of rocks.

    And if the source of renewable energy is co-located with the electrolysis plant, the rust recharging plant, and the thermal power plant, the cycle's excess O2 from electrolysis and nitrogen gas production can be pumped into the burner of the power plant, increasing efficiency and eliminating nitric acid pollution.

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    ...One of the challenges of clean energy is transporting and storing massive amounts of solar and wind power over long distances...

    According to the new study, pulverized iron powder could act as a highly efficient, recyclable clean energy storage material...

    The concept taps into a beautifully simple chemical loop. When iron powder is combusted, it releases intense heat and turns into iron oxide. In other words, it rusts. To reset it, scientists use green hydrogen generated from excess renewable energy to strip away the oxygen, reducing the rust back into pure iron powder. No carbon dioxide escapes into the atmosphere. The cycle simply repeats...

    As it burns similarly to fossil fuels, energy giants wouldn’t need to rebuild their infrastructure from scratch...

    The expensive components already in place, such as the steam cycles, massive turbines, heavy generators, and local grid connections, could be fully preserved...

    [–] [S] 1 point 2 weeks ago* (last edited 2 weeks ago) (1 child)

    That's true for older magnetorquers, because the Earth's magnetic field is smooth enough that the difference between field strength at the top and bottom of the satellite is insignificant.

    With superconductors you can scale up the magnetic field strength enough to get a usable net linear force.

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    ..."Once you have super-conducting technology available in space, you can then create very strong magnetic fields and you can use them for various use cases," he said. "You can accelerate things in space very fast or change the trajectory of a satellite completely without fuel."...

    "When we go to space, we get hurt by radiation, and these superconducting magnets can create umbrellas of magnetic fields around the spacecraft to protect the interior," said Arshavsky. "So we can shield people in space from that radiation."...

    [–] [S] 4 points 3 weeks ago*

    2 big galaxies collided and shattered into a string of 12 small galaxies.

    The dark matter is split unevenly among those 12 small galaxies in an hour-glass shaped distribution: very little in the middle of the string, and most of the dark matter concentrated at the ends.

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    ...a Yale-led team measured the internal motions of a faint, diffuse galaxy called NGC 1052-DF9 and found its stars moving too slowly to hide a normal dark matter halo. The galaxy joins two earlier oddballs, DF2 and DF4, and all three lie along the same narrow line of galaxies in the NGC 1052 field...

    A few years ago the same group noticed that DF2 and DF4 were not alone. About a dozen faint galaxies in the field fall along a remarkably tight, straight trail, and follow-up work showed their velocities increase steadily along its length...

    That geometry points to a specific and dramatic origin. In one leading idea, two gas-rich galaxies slammed into each other at high speed long ago. The dark matter of each passed straight through, because dark matter barely interacts with anything, while the ordinary gas piled up, shocked and compressed, and later collapsed into a string of small galaxies made almost entirely of normal matter...

    ...The finding is that DF9’s motion is consistent with its stars alone and inconsistent with a full dark matter halo. That is not the same as proving the halo is exactly zero. A modest amount of dark matter still fits inside the error bars; a normal amount does not...

    The deeper reason astronomers care is almost the opposite of what the headline suggests. Finding galaxies without dark matter is, oddly, some of the better evidence that dark matter is real. If gravity simply behaved differently in faint galaxies, as some alternative theories propose, then every galaxy of a given size should show the same anomaly. Instead a few galaxies, all apparently born in the same collision, stand out from thousands of ordinary ones. Dark matter that can be left behind in a crash is dark matter that exists as a substance, not as a quirk of the equations...

    [–] [S] 19 points 3 weeks ago* (last edited 3 weeks ago) (2 children)

    I love the Kerbal-esque architecture of this mission.

    -An ion drive stage drops it down a deep hole, toward the sun, then spends all its fuel slowing down almost enough to be captured by Mercury's gravity instead of just flying by it at screaming fast speed. The empty fuel tanks and ion engines get thrown away when they're used up.

    -Then one of the stacked probes turns on its chemical engines for the capture burn, and it ditches some of its sun screen.

    -When its just barely captured in a highly elliptical polar orbit, it releases a satellite equipped with its own independent systems.

    -Then it maneuvers to a lower orbit that's optimal for the other satellite.

    Mercury is hard to get to, and only one other space craft has ever orbited it: MESSENGER. Now there will be 2 more delivered with a single launch.

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    ...After a long, challenging cruise phase with nine planetary flybys (one by Earth, two by Venus and six by Mercury), BepiColombo finally closed this chapter last Monday by permanently switching off its SEP thrusters...

    Without any other source of propulsion, BepiColombo will follow a “ballistic” or free-falling trajectory as it initiates its first key arrival manoeuvre – MTM separation – on 3 September 2026.

    After the MTM is ejected, the remaining spacecraft composite (MPO-Mio-MOSIF) will continue its planetary approach using MPO’s chemical propulsion system. This system will adjust the spacecraft’s trajectory ahead of the critical Mercury orbit insertion manoeuvre on 21 November, then guide it into Mio’s deployment orbit in early December before finally lowering MPO into its science orbit by March 2027...

    [–] 10 points 3 weeks ago

    Would be a lot cooler if they could just fucking not.

    It is quite the temptation though. India is buying crude at a discount and selling it back as gasoline at a premium.

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    In 2025, astronomers reported one of the largest rotating structures ever found: a cosmic filament some 50 million light-years long, holding close to 300 galaxies, with many of them turning in step with the filament as a whole. The coordinated motion is difficult to reconcile with the way galaxies are thought to acquire their spin...

    Galaxies are thought to get their spin early, through what is called tidal torque: as matter collapses under gravity, the uneven pull of its surroundings sets it turning. On that picture, a galaxy’s spin is shaped mostly by its own local patch of the universe, and there is no obvious reason for hundreds of galaxies, spread across tens of millions of light-years, to share a single coordinated rotation tied to the filament around them...

    The question underneath is an old one, which is where galaxies get their angular momentum. This filament has not answered it, but it has handed the problem a large and awkward new clue.

     

    ...In May 2026, a team of researchers reported evidence for primordial black holes (PBHs) by spotting a short-lived flicker of light from a star in the Large Magellanic Cloud. They monitored millions of stars in this galaxy using DECam. They spotted one star that briefly brightened for less than an hour. They interpreted this as a gravitational microlensing event. Microlensing occurs when a tiny object passes in front of a star and its gravity briefly bends and magnifies the star's light like a lens.

    Because the brightening was so short, they calculated the "lens" causing it must have had about the mass of the moon. This one-time, nonrepeating signal was interpreted as a microlensing event caused by a primordial black hole nicknamed "Phoebe."...

    In this new study, Udalski and Mr.óz present an independent analysis of the same public DECam data, plus extra observations from 2020 and 2021 that the previous paper didn't include.

    They found that the star brightened at least three separate times over the years—one of which was previously interpreted as a microlensing event. In addition, its average brightness also changed over time...

    "This is not the first time that a variable star has been mistaken for a short-timescale microlensing event in high-cadence time-series observations of limited duration," the researchers note. Short-term monitoring lasting some days, they explain, simply isn't enough to tell the difference. Distinguishing a genuine one-time gravitational event from a star's natural flickering requires months or years of monitoring.

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