The amount of energy released from matter-antimatter annihilation is given by E=mc^2, where m is the mass that was annihilated. In this case, 10 kg of matter annihilating 10 kg of antimatter would release energy equivalent to 1.8 x 10^18 joules, based on the equation E=10 kg x (3 x 10^8 m/s)^2.
During a matter-antimatter reaction, particles of matter and antimatter collide and annihilate each other, releasing a large amount of energy in the form of gamma rays and other particles.
When antimatter touches matter, they annihilate each other, releasing a large amount of energy in the form of gamma rays. This process is called annihilation.
When matter and antimatter collide, they annihilate each other, releasing a large amount of energy in the form of gamma rays and other particles. This process is called annihilation.
Antimatter is a type of matter that is the opposite of regular matter, with particles that have opposite charges. When antimatter comes into contact with regular matter, they annihilate each other, releasing energy in the form of gamma rays. Antimatter does not have a specific appearance, as it is not visible to the naked eye.
If you were to touch antimatter, it would result in a violent and explosive reaction, releasing a large amount of energy. This is because when antimatter comes into contact with regular matter, they annihilate each other, converting their mass into energy.
During a matter-antimatter reaction, particles of matter and antimatter collide and annihilate each other, releasing a large amount of energy in the form of gamma rays and other particles.
When antimatter touches matter, they annihilate each other, releasing a large amount of energy in the form of gamma rays. This process is called annihilation.
When antimatter comes into contact with matter, they annihilate each other.
When matter and antimatter collide, they annihilate each other, releasing a large amount of energy in the form of gamma rays and other particles. This process is called annihilation.
Antimatter is a type of matter that is the opposite of regular matter, with particles that have opposite charges. When antimatter comes into contact with regular matter, they annihilate each other, releasing energy in the form of gamma rays. Antimatter does not have a specific appearance, as it is not visible to the naked eye.
If you were to touch antimatter, it would result in a violent and explosive reaction, releasing a large amount of energy. This is because when antimatter comes into contact with regular matter, they annihilate each other, converting their mass into energy.
Antimatter annihilates matter because when a particle of matter meets its corresponding antiparticle, they both convert into energy according to Einstein's famous equation, Emc2. This process results in the complete destruction of both particles and the release of a large amount of energy.
Exactly 5 grams of antimatter will completely annihilate 5 grams of matter, producing an enormous shower of high energy gamma rays. In total a mass of 10 grams will be converted to the equivalent amount of energy.
Antimatter is a type of matter that has the opposite properties of normal matter. When a particle of matter meets its corresponding antiparticle, they annihilate each other, releasing a large amount of energy in the process. Antimatter is rare in the universe and is mostly created in high-energy environments like particle accelerators.
Antimatter is a type of matter with an unusual quality - it has properties that are opposite to those of normal matter. For example, when antimatter comes into contact with normal matter, they annihilate each other, releasing a large amount of energy. Antimatter is rare in the universe and is usually produced in high-energy processes like particle accelerators.
No, Antimatter while annihilate our matter, meaning that it will completely convert our matter to light and heat, however antimatter is highly theoretical, and the LHC probably will not create any.
1 gram + 1000 grams = 1001 grams. If you prefer to exclude the gamma rays, one gram of matter will annihilate with 1 gram of antimatter, and 999 grams of "normal" matter will be left. The remaining 2 grams are in the gamma rays, of course.