the dissipated energy is lost as heat, as well as it is dissipated to do the work against frictional forces.
The end product of matter-antimatter annihilation is energy in the form of photons (light particles) or other subatomic particles.
transform into energy through a process such as nuclear fusion or matter-antimatter annihilation.
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.
Currently antimatter is only used for scientific research as it is very expensive to obtain. In the future antimatter could be used for anything that requires energy such as producing electricity.
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.
The end product of matter-antimatter annihilation is energy in the form of photons (light particles) or other subatomic particles.
transform into energy through a process such as nuclear fusion or matter-antimatter annihilation.
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.
Currently antimatter is only used for scientific research as it is very expensive to obtain. In the future antimatter could be used for anything that requires energy such as producing electricity.
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 stored in specialized containers that use magnetic fields to keep it away from regular matter. This prevents annihilation, which occurs when antimatter comes into contact with matter, releasing a large amount of energy. The containers are kept in a vacuum to minimize the chance of contact with any particles. Additionally, the containers are cooled to very low temperatures to slow down the movement of the antimatter particles, reducing the likelihood of annihilation.
Anti matter does NOT exist. As soon as it is in contact with matter which is anything ; solid , liquid , gas, they are both annihilated. You can think of antimatter as protons with a negative charge and electrons with as positive charge. So Proton^+ Proton^- = Annihilation (??? Energy) Electron ^- + electron^+(positron) = Annihilation (???? Energy).
to understand the conservation of energy, nuclear fusion, matter-antimatter annihilation, etc
When two atoms or matter and antimatter eliminate each other, there is a massive energy output. This is calculated using the most famous equation E=mc2. "Energy" equal the total "mass" of both atoms multiplied by c (the speed of light) squared.
a closed system will not gain or lose mass
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.
Anti matter does NOT exist. As soon as it is in contact with matter which is anything ; solid , liquid , gas, they are both annihilated. You can think of antimatter as protons with a negative charge and electrons with as positive charge. So Proton^+ Proton^- = Annihilation (??? Energy) Electron ^- + electron^+(positron) = Annihilation (???? Energy).