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Has any antimatter been found?

Satellite experiments have found evidence of positrons and a few antiprotons in primary cosmic rays, amounting to less than 1% of the particles in primary cosmic rays. This antimatter cannot all have been created in the Big Bang, but is instead attributed to have been produced by cyclic processes at high energies.
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Has anyone ever found 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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Does antimatter exist on Earth?

Handful of particles trapped by planet's natural magnetism, study says. Antimatter particles are mirror opposites of normal matter particles.
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In which country antimatter is found?

Today, antimatter is primarily found in cosmic rays – extraterrestrial high-energy particles that form new particles as they zip into the Earth's atmosphere. It also appears when scientists smash together particles boosted to high energies in machines called accelerators.
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How powerful is 1 gram of antimatter?

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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Why This Stuff Costs $2700 Trillion Per Gram - Antimatter at CERN

How many antimatter are on Earth?

Approximately 2.5 trillion tons of antimatter.
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Why is antimatter so rare?

Minuscule numbers of antiparticles can be generated at particle accelerators; however, total artificial production has been only a few nanograms. No macroscopic amount of antimatter has ever been assembled due to the extreme cost and difficulty of production and handling.
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Who owns antimatter?

Andrew Krioukov - Co-founder and CEO - Antimatter | LinkedIn.
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What planet has antimatter?

Saturn is, in fact, the place where the largest total supply of antiprotons appears, with reactions in its rings injecting 250 micrograms per year into the planet's magnetosphere. But we can start with the Earth, for the antimatter production process was confirmed here in 2011.
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Does antimatter last forever?

By time about 25 microseconds have gone by, only electron/positron pairs and neutrino/antineutrino pairs remain as far as antimatter goes. But in this Universe, very few things are destined to last forever, and that includes these interconversions.
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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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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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Is there a hidden planet?

There is a lot of evidence for the planet – thought to be up to 20 times further out from the Sun than Neptune – but it may be impossible to see with current technology. The giant, hidden planet is thought to be 10 times larger than Earth and on an orbit that takes 10,000 or 20,000 years to go round the sun.
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Does the sun have antimatter?

Astronomers have detected exotic antimatter particles flying from the sun during solar flares — a discovery that could help scientists understand this mysterious sibling to matter.
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Can antimatter destroy the galaxy?

Theoretically, antimatter should be able to clump together into stars, planets and galaxies just like regular matter (as long as there's no regular matter around to annihilate it).
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Can antimatter power a city?

Unfortunately, however, antimatter cannot be used as an energy source. Although the annihilation of matter and antimatter releases energy, antimatter does not occur in nature: it has to be created. This requires in itself a lot of energy. Even the storage of antimatter requires a lot of energy.
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Can you see antimatter?

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 happens if antimatter touches matter?

When matter and antimatter collide, the particles destroy each other, with a huge energy release. Depending on the colliding particles, not only is there a great energy release, but new, different particles may also be produced (such as neutrinos and various flavours of quark – see figure below).
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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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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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What can antimatter destroy?

What makes antimatter unique is that when antimatter comes in contact with its regular matter counterpart, they mutually destroy each other and all of their mass is converted to energy. This matter-antimatter mutual annihilation has been observed many times and is a well-established principle.
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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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What is the biggest antimatter in the world?

Physicists at the Relativistic Heavy Ion Collider (RHIC) in New York say they have created nuclei of antihelium-4 for the first time – the heaviest antimatter particles ever seen on Earth.
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What planet have we lost?

In 2006 the International Astronomical Union (IAU) demoted the much-loved Pluto from its position as the ninth planet from the Sun to one of five “dwarf planets.” The IAU had likely not anticipated the widespread outrage that followed the change in the solar system's lineup.
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What is the rarest planet?

Highlights. Star system resting on the constellation Orion's nose could be home to the rarest planet in our universe -- a world orbiting three suns simultaneously. ESO/L.
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