The central region of the sun is called the core.
No, nuclear fusion does not occur in the convection zone of a star. Fusion reactions primarily take place in the core region of a star, where the temperature and pressure are high enough to sustain the nuclear reactions that power the star. The convection zone is a region of the star where heat is transported through the movement of gas, but fusion does not occur there.
If you are asking where does solar nuclear fusion take place, then that would be at the core of stars.
Nuclear fusion does not currently occur in nuclear plants. Nuclear plants use nuclear fission, where atoms are split to release energy. Fusion reactions, in which atomic nuclei combine to release energy, are not yet used commercially for electricity generation.
Nuclear fusion doesn't take place in a white dwarf because the core temperature and pressure aren't high enough to initiate the fusion of heavier elements such as carbon and oxygen. White dwarfs have already exhausted their nuclear fuel and are essentially the leftover cores of stars that have gone through their fusion stages.
Nuclear fusion takes place in the core of the Sun, where the extreme pressure and temperature cause hydrogen atoms to fuse into helium. This process releases energy in the form of heat and light, powering the Sun and providing heat and light to our solar system.
Nuclear fusion takes place in the core of the sun.
No, nuclear fusion does not occur in the convection zone of a star. Fusion reactions primarily take place in the core region of a star, where the temperature and pressure are high enough to sustain the nuclear reactions that power the star. The convection zone is a region of the star where heat is transported through the movement of gas, but fusion does not occur there.
If you are asking where does solar nuclear fusion take place, then that would be at the core of stars.
In nuclear fusion reaction two nuclei are combined by providing the energy.
Nuclear fusion does not currently occur in nuclear plants. Nuclear plants use nuclear fission, where atoms are split to release energy. Fusion reactions, in which atomic nuclei combine to release energy, are not yet used commercially for electricity generation.
The core of the Sun is the central region where nuclear fusion reactions take place. It is the hottest part of the Sun and is responsible for generating the energy that sustains the Sun's radiative output. The core is primarily composed of hydrogen undergoing fusion to create helium.
Nuclear fusion of hydrogen isotopes take place to form helium.
Nuclear fusion doesn't take place in a white dwarf because the core temperature and pressure aren't high enough to initiate the fusion of heavier elements such as carbon and oxygen. White dwarfs have already exhausted their nuclear fuel and are essentially the leftover cores of stars that have gone through their fusion stages.
Nuclear fusion is the type of nuclear reaction that occurs in stars. Older stars with a collapsing center can exceed a temperature of one hundred million Kelvin.
None.
Fusion
nuclear fusion