Example uses in sentence of “antimatter”

How to use in-sentence of “antimatter”:

+ This release of such a high amount of energy is why a lot of science fiction writers use antimatter for fuel in their stories.

+ The problem is that antimatter is very expensive to make, and is almost as expensive to store, since it cannot touch regular matter.

+ The word antimatter properly refers to and to larger assemblies of either.

+ This is the antimatter version of hydrogen, the first atom in the periodic table.

+ Although the matter and antimatter mostly annihilated one another, producing photons, a small residue of matter survived, giving the present matter-dominated Universe.

+ After a long time, there would be no matter and no antimatter left, just energy.

+ Since antimatter has the opposite of charge of regular matter, anti-tauons have a charge of +1, and can be written as τ.

+ In the end they are able to rescue only 1 cardinal and the antimatter is lifted into the sky where it explodes harmlessly.

Example uses in sentence of antimatter
Example uses in sentence of antimatter

Example sentences of “antimatter”:

+ The reason this is important to understand antimatter is because scientists found that when matter and antimatter touch each other, the amount of energy that is released comes very close to the amount of energy says should be all together in those two pieces.

+ The main subject of the book is how Robert Langdon, with the help of the beautiful scientist Vittoria Vetra, search for the container of a dangerous substance named antimatter that would destroy the Vatican city at midnight, and rescue the four cardinals in the day of the Conclave.

+ Since antimatter is destroying matter, a large amount of energy is created.

+ Other antimatter particles are the same way, where they have the same weight, and look and act the same as regular particles, but their electrical charge is the opposite of regular particles.

+ Because antimatter can make so much energy, it can be used for a lot of things, such as fuel for going into outer space, or in our cars.

+ A positron is the antimatter version of an electron.

+ Small amounts of antimatter are also created during the process.

+ The idea which describes the strong, weak and electromagnetic fundamental forces states that Proton protons are stable, i.e., that the laws of physics do not allow a Proton proton to decay, without external cause, into an antimatter counterpart of the electron and photons because of conservation of the baryon number.

+ According to the prevailing theory, a slight imbalance of matter over antimatter was present in the Universe’s creation, or developed very shortly thereafter.

+ As a result of Quantum fluctuationquantum fluctuations, particle-antiparticle pairs can appear from the vacuum of space near the event horizon of a black hole in which the net energy of the particles is zero due to the matter and antimatter nature of the particles.

+ The reason this is important to understand antimatter is because scientists found that when matter and antimatter touch each other, the amount of energy that is released comes very close to the amount of energy says should be all together in those two pieces.

+ The main subject of the book is how Robert Langdon, with the help of the beautiful scientist Vittoria Vetra, search for the container of a dangerous substance named antimatter that would destroy the Vatican city at midnight, and rescue the four cardinals in the day of the Conclave.
+ Since antimatter is destroying matter, a large amount of energy is created.

+ The reason is that each particle of matter, when it touches its antiparticle in the antimatter world, both change over into pure energy, or annihilate each other.

+ Since it is so expensive, this means that antimatter is not practical to use as a weapon or as an energy source, because so little of it is obtainable.

+ However, it has recently been suggested that the greater amount of matter over antimatter in the universe is the result of a very slight imbalance in the ratio that occurred very early in its formation.

+ Another theory is that there is lots of antimatter on the other side of the universe, hidden far beyond our vision.

+ Recently, however, scientists have trapped antimatter for over 16 minutes 1000 sec.

+ Physicists do not yet know for sure that equal amounts of matter and antimatter were created, and because of this, they are also wondering where the antimatter went, and if any was left over from the beginning of the universe.

+ Many scientists think that in the first few moments after the Big Bang, which created the universe a very long time ago, both matter and antimatter mixed together.

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