fusion Josh White apex 2009
The total mass of substances remains constant during a chemical reaction, according to the law of conservation of mass. This means that atoms are rearranged during a reaction, but no atoms are created or destroyed in the process.
Both mass and charge
Radiation
While overall ENERGY has to be conserved, MASS does not. In a nuclear reaction mass can be converted into energy so the mass of the products may be less than the mass of the reactants. The difference in mass is converted into energy as Einstein's equation describes (E=MC squared). In a chemical reaction MASS has to be conserved.
In a chemical reaction, the total mass of the reactants and products remains constant, according to the Law of Conservation of Mass. This means that atoms are rearranged but not created or destroyed during a chemical reaction.
The total mass of substances remains constant during a chemical reaction, according to the law of conservation of mass. This means that atoms are rearranged during a reaction, but no atoms are created or destroyed in the process.
In any reaction, or process, both the amount of mass and the amount of energy remain constant. You might say that mass has energy, and energy has mass. Any mass or energy "created" during a reaction was already present previously.
The cast of Energy Converts to Mass - 2009 includes: Scott Duprey
Mass that is "lost" durning nuclear fusion is converted into binding energy to hold the newly formed atomic nucleus together. The lost mass, which is termed mass deficit, means the nucleus of the newly formed atom has less mass than the sum of the masses of the protons and neutrons that make up that nucleus. The stong reaction (strong nuclear force) participitates in the fursion reaction by mediating the conversion of mass into nuclear binding energy (or nuclear glue).It converts into the energy that is the desired end product of the reaction.
Both mass and charge
In a fusion reaction, the total mass of the reaction products is less than the total mass of the initial reactants due to the conversion of mass into energy according to Einstein's famous equation E=mc^2. This difference in mass is known as the mass defect, and the lost mass is converted into energy during the fusion reaction.
To calculate the mass defect in a nuclear reaction, subtract the total mass of the reactants from the total mass of the products. The difference represents the mass that was converted into energy during the reaction, according to Einstein's equation Emc2.
When there is annihilation between particle and anti particle then e converts m
The sun converts mass into energy and releases them.
The Sun's mass remains relatively constant as it burns because the process of nuclear fusion, which powers the Sun, converts mass into energy. This mass-energy conversion maintains a balance that keeps the Sun stable.
The amount of energy released during a nuclear reaction was established by Albert Einstein through his famous equation, E=mc². This equation shows the relationship between mass and energy, demonstrating that a small amount of mass can be converted into a large amount of energy during a nuclear reaction.
Radiation