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#Physicist Reel by @curiosify786 - Albert Einstein (1879-1955) was a German-born theoretical physicist who revolutionized modern science with his theory of relativity, including the fam
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Albert Einstein (1879–1955) was a German-born theoretical physicist who revolutionized modern science with his theory of relativity, including the famous equation E=mc² that equates mass and energy. His 1905 “miracle year” produced groundbreaking papers on the photoelectric effect (earning him the 1921 Nobel Prize), Brownian motion, and special relativity, while his 1915 general relativity theory redefined gravity, space, and time. A pacifist and cultural icon, he fled Nazi Germany for the U.S., influencing everything from GPS tech to atomic energy, embodying genius through curiosity and imagination.
#Physicist Reel by @sciencexplains - Physicist Brian Greene has a brilliant way of showing us how gravity actually works using nothing but a simple water bottle. When the bottle is held s
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@sciencexplains
Physicist Brian Greene has a brilliant way of showing us how gravity actually works using nothing but a simple water bottle. When the bottle is held still water sprays out of the holes because gravity is pulling it down and creating pressure. But the moment he drops the bottle the water stops leaking entirely. This happens because both the bottle and the water are falling at the exact same rate making the water feel weightless relative to its container. This simple experiment perfectly illustrates Einsteins happiest thought that gravity and acceleration are essentially the same thing. It is a mind blowing reminder that even though we feel stuck to the ground weight is just a matter of perspective. #physics #briangene #scienceexperiment #gravity #Einstein
#Physicist Reel by @science.with.ad - Lightning Trapped Inside "Glass"!🤯

As soon as he hits the surface with a hammer, it looks like lightning is trapped inside it.

But the process is f
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Lightning Trapped Inside “Glass”!🤯 As soon as he hits the surface with a hammer, it looks like lightning is trapped inside it. But the process is far more complex than it seems. This lightning-like pattern is called a Lichtenberg figure, first discovered in 1777 by German physicist Georg Christoph Lichtenberg. To create it, a thick sheet of acrylic (not ordinary glass) is placed inside a particle accelerator. The machine fires trillions of high-energy electrons into the material, storing a massive electrical charge inside. When a sharp object like a nail pierces the surface, that trapped charge discharges instantly — spreading through the acrylic in branching paths at incredible speed. The result is a frozen lightning pattern permanently captured inside the solid block. It’s not magic. It’s electricity, locked in time. #ScienceFacts #Physics #Electricity #HowThingsWork #MindBlowingFacts
#Physicist Reel by @epic_history_events - The experiment began as a simple demonstration. In 1946, at the Los Alamos laboratory, physicist Louis Slotin was showing colleagues how close a pluto
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The experiment began as a simple demonstration. In 1946, at the Los Alamos laboratory, physicist Louis Slotin was showing colleagues how close a plutonium core could be brought to critical mass. The procedure was extremely dangerous and had even earned an unofficial nickname: “tickling the dragon’s tail.” Slotin held two beryllium hemispheres over the active core, using an ordinary screwdriver instead of proper safety mechanisms. Everything depended on precise hand control. At one moment, the screwdriver slipped. The hemispheres snapped shut, and a burst of lethal radiation occurred. Slotin instantly realized what had happened. He quickly separated the hemispheres, stopping the reaction and saving the others in the room—but he himself had already received a fatal dose of radiation. #History #NuclearPhysics #ScienceHistory #LouisSlotin
#Physicist Reel by @comrade_lenin___ - Stephen Hawking (1942-2018) was a British theoretical physicist, cosmologist, and author who made groundbreaking contributions to our understanding of
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Stephen Hawking (1942–2018) was a British theoretical physicist, cosmologist, and author who made groundbreaking contributions to our understanding of black holes and the universe. Born in Oxford, England, he studied at the University of Oxford and later at the University of Cambridge, where he spent most of his career. At age 21 he was diagnosed with Amyotrophic Lateral Sclerosis (ALS), a motor neuron disease that gradually paralyzed him, yet he continued his scientific work using a speech-generating device. Hawking is best known for proposing that black holes emit radiation—now called Hawking Radiation—and for writing the popular science book A Brief History of Time, which helped millions of readers understand complex ideas about space, time, and the origins of the universe. #geopolitics #history #war
#Physicist Reel by @thefilmsiest - In Earth's future, a global crop blight and second Dust Bowl are slowly rendering the planet uninhabitable. Professor Brand (Michael Caine), a brillia
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In Earth’s future, a global crop blight and second Dust Bowl are slowly rendering the planet uninhabitable. Professor Brand (Michael Caine), a brilliant NASA physicist, is working on plans to save mankind by transporting Earth’s population to a new home via a wormhole. But first, Brand must send former NASA pilot Cooper (Matthew McConaughey) and a team of researchers through the wormhole and across the galaxy to find out which of three planets could be mankind’s new home. Follow @thefilmsiest for more ! #interstellar #chritophernolan #matthewmcconaughey #mattdamon #timotheechalamet
#Physicist Reel by @relative.physics - When a nuclear physicist says 'the air tastes like metal,' they're not being poetic-they're reading the room at a level only high-energy science train
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When a nuclear physicist says 'the air tastes like metal,' they’re not being poetic—they’re reading the room at a level only high-energy science trains you for; that metallic edge isn’t actual metal, it’s a signal that the air has been ionized by radiation or that ozone is forming from high-voltage equipment, the same chemistry lightning produces in a storm, and in a nuclear lab this tiny sensory clue becomes a diagnostic tool: your body detects what instruments later confirm—charged particles interacting with air molecules; think of it like hearing the faint hum before a transformer overloads or feeling heat before a machine fails; experts don’t panic, they assess, because understanding ionization is part of navigating environments where invisible forces shape the experiment and your awareness becomes your first detector. Credit: @meta_current #Science #Physics #nuclearphysics #radioactive #radiation
#Physicist Reel by @futuregenquantum (verified account) - A physicist froze himself at −273.15°C - absolute zero. ❄️

Everyone thought the experiment would instantly destroy him.
At that temperature, atoms sh
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A physicist froze himself at −273.15°C — absolute zero. ❄️ Everyone thought the experiment would instantly destroy him. At that temperature, atoms should completely stop moving. But something unexpected happened… He survived the experiment. Not because the laws of physics were broken — but because reaching true absolute zero is actually impossible. No matter how advanced the technology gets, quantum physics prevents matter from ever hitting −273.15°C exactly. So the physicist didn’t break physics. He proved one of its most fascinating limits. The coldest temperature in the universe exists — but nothing can truly reach it.
#Physicist Reel by @moist (verified account) - In 1958, nuclear physicist William Higinbotham created Tennis for Two just for fun at a laboratory open day.

Displayed on an oscilloscope, it let pla
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In 1958, nuclear physicist William Higinbotham created Tennis for Two just for fun at a laboratory open day. Displayed on an oscilloscope, it let players control a dot over a line — one of the first interactive electronic games ever made. What started as a simple experiment quietly became a foundational moment in the history of video games. #gaming #gamingcommunity
#Physicist Reel by @deadhost.exe - On May 21, 1946, physicist Louis Slotin was performing a high stakes experiment known as "tickling the dragons tail" at the Los Alamos National Labora
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On May 21, 1946, physicist Louis Slotin was performing a high stakes experiment known as “tickling the dragons tail” at the Los Alamos National Laboratory in New Mexico. Slotin was using a 6.2 kilogram plutonium core, later known as the Demon Core, to establish the exact point of criticality. He was manually lowering a beryllium tamper over the core using only the blade of a flathead screwdriver to maintain a tiny gap that allowed neutrons to escape. The horror began when the screwdriver slipped a fraction of an inch, allowing the top hemisphere to fall completely over the core. A brilliant blue flash of Cherenkov radiation filled the room as the plutonium went prompt critical, blasting Slotin with a lethal dose of 1,000 rads of neutron radiation. In an act of desperation to save the seven other people in the room, Slotin used his bare hands to flip the tamper off the core, stopping the chain reaction instantly. Slotin was rushed to the hospital where his body began to disintegrate at the cellular level. Over the next nine days, he suffered from a three dimensional sunburn as his internal organs failed and his skin turned a waxy red. He died at the age of 35. This was the second time the same core had killed a scientist, following the death of Harry Daghlian just nine months earlier. As of 2025, the Demon Core has been melted down and recycled into other nuclear components, serving as a permanent warning against hands on experimentation with nuclear materials.
#Physicist Reel by @spaceversex - Captured by physicist David Nadlinger, this award-winning photo shows a single Strontium atom trapped between two electrodes. The atom is blasted with
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Captured by physicist David Nadlinger, this award-winning photo shows a single Strontium atom trapped between two electrodes. The atom is blasted with lasers, causing it to absorb and re-emit light so intensely that it becomes visible without a microscope. It brings the abstract world of quantum physics into human scale, suspending a fundamental building block of the universe in a vacuum. ​Science tells us that 99.9% of an atom is empty space—just like the vast stillness of meditation. If everything we see is made of this 'emptiness,' what are we actually looking at? Credit: David Nadlinger/University of Oxford ​Drop a '⚛️' if you’ve ever felt like there's more to reality than meets the eye." Collecting Universe Lovers (7777/200) . . . . . #universe #reelsinstagram #space #milkywaygalaxy #reels #viral #fyp #trending #spacefacts #universefacts #astronomy (Universe, space, galaxy, stars, cosmos, planets, spacefacts, science, astronomy, spaceversex, viral, fyp, explore, trending, space, science, universe, astronomy, cosmos, galaxy, stars, planets, NASA, spacex, outer space, space exploration)
#Physicist Reel by @news.believers - Captured by physicist David Nadlinger, this award winning photograph shows a single strontium atom suspended between two electrodes inside a vacuum ch
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Captured by physicist David Nadlinger, this award winning photograph shows a single strontium atom suspended between two electrodes inside a vacuum chamber. The atom is struck with lasers, causing it to absorb and re emit light so intensely that it becomes visible without a microscope. The image brings the abstract world of quantum physics into human scale, revealing one of the universe’s most fundamental building blocks. Scientists note that atoms are mostly empty space, a reminder that what we perceive as solid matter is built from vast underlying emptiness. #science #physics #atom #technology #newsbelievers

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