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How hot is antimatter?

If a particle moving with this speed hits a block of material, its energy is also transformed, producing 'temperatures' of 10,000,000,000,000 degrees Celsius or more. Under these extreme circumstances, the energy set free in the collision will transform into matter.
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What is the temperature of antimatter?

Matter-Antimatter Quasi Atomic Structures

The collision of protons with iridium target yields enough energy for the production of antiprotons with temperature of 10 trillion K (1013 K).
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What can 1g of antimatter do?

A gram of antimatter could produce an explosion the size of a nuclear bomb. However, humans have produced only a minuscule amount of antimatter. All of the antiprotons created at Fermilab's Tevatron particle accelerator add up to only 15 nanograms. Those made at CERN amount to about 1 nanogram.
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What can 1 kg of antimatter do?

If 1kg of antimatter came into contact with 1kg of matter, the resulting explosion would be the equivalent of 43 megatons of TNT – about 3,000 times more powerful than the bomb that exploded over Hiroshima.
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Why can't we touch antimatter?

Matter and antimatter particles are always produced as a pair and, if they come in contact, annihilate one another, leaving behind pure energy.
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What is Antimatter Explained

Can antimatter destroy a black hole?

The bottom line is: If a regular black hole and an antimatter black hole got black-hole-married in space, they wouldn't vanish. Feeding in antimatter won't do any good, it's just like regular matter or energy. It only makes the black hole more massive. That should save you some money in wasteful antimatter production.
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Does antimatter explode when it touches matter?

When the falling antimatter meets matter, the two “annihilate” each other, as scientists say, and give off energy in the process – a kind of nano-explosion. The ALPHA scientists measure the energy bursts to find how fast the antihydrogen molecules fell after they dropped them.
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How long can we hold antimatter?

The record for storing antiparticles is currently held by the TRAP experiment at CERN: antiprotons were kept in a Penning trap for 405 days.
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How much antimatter would destroy Earth?

In addition, small amounts of antimatter are generated for short periods of time in particle accelerators. How much antimatter would our villain need to annihilate with "normal" matter in order to release the amounts of energy required for the destruction of Earth? Lots! Approximately 2.5 trillion tons of antimatter.
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What is the heaviest antimatter made?

From a catalogue of about a billion of collisions at energies of 200 GeV and 62 GeV, a total of 18 revealed themselves as antihelium-4, with masses of 3.73 GeV.
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Do antimatter weapons exist?

Antimatter weapons are currently too costly and unreliable to be viable in warfare, as producing antimatter is enormously expensive (estimated at $6 billion for every 100 nanograms), the quantities of antimatter generated are very small, and current technology has great difficulty containing antimatter, which ...
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Why is antimatter so rare?

Lucky for us, antimatter is extremely rare. It's produced naturally in tiny amounts in cosmic ray interactions, during hurricanes and thunderstorms, and as part of some types of radioactive decay – in fact, anything with potassium-40 in it will spit out the occasional antimatter particle.
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Have humans made antimatter?

For the past 50 years and more, laboratories like CERN have routinely produced antiparticles, and in 1995 CERN became the first laboratory to create anti-atoms artificially. But no one has ever produced antimatter without also obtaining the corresponding matter particles.
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Can you freeze antimatter?

For the first time, physicists have used lasers to deep-freeze antimatter. In a new experiment, an ultraviolet laser quelled the thermal jitters of antihydrogen atoms, chilling the antiatoms to just above absolute zero.
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Could antimatter fall up?

Given that most of the mass of antinuclei comes from massless gluons, it is extremely unlikely that antimatter experiences an oppo- site gravitational force to matter and therefore “falls” up.
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Has antimatter been seen?

Our theories of fundamental physics point to a special kind of symmetry between matter and antimatter — they mirror each other almost perfectly. For every particle of matter in the universe, there ought to be a particle of antimatter. But when we look around, we don't see any antimatter.
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What can destroy antimatter?

Antimatter from far away should be tricky to find. It annihilates when it meets regular matter – and the more space it crosses, the more chances there are for these particles to meet their end.
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How long would it take to get 1 gram of antimatter?

To make 1 g of antimatter - the amount made by Vetra in the movie - would therefore take about 1 billion years. The total amount of antimatter produced in CERN's history is less than 10 nanograms - containing only enough energy to power a 60 W light bulb for 4 hours.
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How much antimatter do humans have?

Humans have created only a tiny amount of antimatter

All the antiprotons created at Fermilab's Tevatron particle accelerator (now inactive) add up to only 15 nanograms, and CERN's so far add up to about 1 nanogram.
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Can antimatter bend space time?

What will happen to the curvature ? Flat spacetime ? (if the anti-matter star reverse the curvature) And yet, electromagnetic energy do curves spacetime too, like normal matter. So is anti-matter !
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What is antimatter cost?

The cost of 1 gram of antimatter is about 62.5 trillion dollars (around 5,000 billion Indian rupees). The most expensive material on Earth, antimatter, is not found in nature but can only be prepared in a lab. The antihydrogen made in CERN's laboratory only amounted to a mass of about 1.67 nanograms.
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How much can 1 pound of antimatter destroy?

so handily, the annihilation would yield just under 2 Megatons. Boom. To cut a long story short, I'll cut right to the result; a pound of antimatter would cross-annihilate with a pound of matter, resulting in just about 20 megatons.
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What is antimatter attracted to?

Also, antimatter is gravitationally attracted to other forms of matter just like regular matter. For every particle that exists, there is an antimatter counterpart (some particles such as photons are their own anti-particles).
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How heavy is antimatter?

They find that the ratio is somewhere between -65 and 110. This is roughly equivalent to a scale that says a typical adult weight somewhere between negative five and positive eight tons.
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What would happen if antimatter touches a black hole?

The two would be annihilated and turn into pure energy. Of course, the gravity of a black hole is so immense that nothing, not even light can escape. So all energy would just be turned instantaneously into more black hole. Want more black hole?
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