Because of the energy source and it can also provide the needed speed for fusion.
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Not speed. The nuclear fusion of is hydrogen to helium, and it occurs because the core of the star as it developed gained sufficient pressure and temperature for the reaction to start and become self-sustaining. The outer regions of a star are neither hot enough nor compressed enough for fusion to occur.
The reflector in a nuclear reactor helps to reflect neutrons back into the reactor core, increasing the chances of nuclear reactions occurring. The reactor core is where the nuclear reactions take place, generating heat that is used to produce electricity.
The chain reaction in a nuclear power plant occurs in the reactor core, where nuclear fission reactions take place. Heat generated from these reactions is used to produce steam, which then drives turbines to generate electricity.
The part of a nuclear reactor in which the fuel is located is called the core. This is where the nuclear fission reactions take place, producing heat that is used to generate electricity.
Nuclear energy is produced in the core of a nuclear reactor, where controlled nuclear fission reactions occur. These reactions release heat energy, which is then used to generate electricity through steam turbines.
The Sun is an example of nuclear energy because it produces energy through nuclear fusion reactions in its core. These reactions involve the combining of atoms to release energy in the form of light and heat. This process is similar to how nuclear power plants on Earth generate electricity using nuclear reactions.
The reflector in a nuclear reactor helps to reflect neutrons back into the reactor core, increasing the chances of nuclear reactions occurring. The reactor core is where the nuclear reactions take place, generating heat that is used to produce electricity.
The chain reaction in a nuclear power plant occurs in the reactor core, where nuclear fission reactions take place. Heat generated from these reactions is used to produce steam, which then drives turbines to generate electricity.
The place where controlled nuclear fission reactions take place is called a nuclear reactor. In a nuclear reactor, uranium atoms are split in a controlled manner to produce heat energy, which is used to generate electricity.
The part of a nuclear reactor in which the fuel is located is called the core. This is where the nuclear fission reactions take place, producing heat that is used to generate electricity.
The end product of nuclear reactions in the Sun's core is helium. Hydrogen atoms fuse together to form helium through a process called nuclear fusion, releasing energy in the form of light and heat.
nuclear reactions at its core
Nuclear energy is produced in the core of a nuclear reactor, where controlled nuclear fission reactions occur. These reactions release heat energy, which is then used to generate electricity through steam turbines.
No, the sun actually glows due to nuclear fusion reactions that occur in its core. In the core, hydrogen atoms fuse together to form helium, releasing a tremendous amount of energy in the form of light and heat. The corona is the sun's outer atmosphere and is much cooler than the core where nuclear fusion takes place.
The nuclear reactions are all over the sun but between core and surface the central part observes more.
If you are asking where does solar nuclear fusion take place, then that would be at the core of stars.
Yes, and it is formed from the process called nuclear fusion. The sun's own energy comes from nuclear reactions taking place in the sun's core.
The Sun is an example of nuclear energy because it produces energy through nuclear fusion reactions in its core. These reactions involve the combining of atoms to release energy in the form of light and heat. This process is similar to how nuclear power plants on Earth generate electricity using nuclear reactions.