Mass defect is the difference between the mass of an atomic nucleus and the sum of the masses of its individual protons and neutrons. This lost mass is converted into binding energy, which is the energy required to hold the nucleus together. The greater the mass defect, the greater the binding energy holding the nucleus together.
In a nuclear power plant, the reactor produces nuclear energy which transforms to thermal energy, and this is then used to produce steam which is used in a conventional staem turbine/generating set to produce electricity
These are the constituents of atoms. Nuclei are made up of protons and neutrons. Useful nuclear energy is only obtained from a few nuclei which can be made to fission and release energy. The two main ones are Uranium235 and Plutonium239.
The Sun's structure consists of a core where nuclear fusion occurs, releasing energy in the form of light and heat. This energy gradually moves outward from the core through radiation and convection processes. The energy produced in the core is transferred to the Sun's surface, where it is emitted as sunlight.
The two main types of energy that relate to motion are kinetic energy, which is associated with the motion of an object, and potential energy, which is associated with the position or configuration of an object that can lead to motion.
Studying physics and related scientific disciplines can help you understand the natural laws that relate to matter and energy. This could include learning about principles such as conservation of energy, laws of thermodynamics, and the behavior of particles at the atomic level. Experimentation, observation, and critical thinking are essential for gaining a deeper understanding of these natural laws.
The mass defect represents the mass converted to binding energy
The sun's energy is produced by nuclear ENERGY!!! im in school..lol
It gets its energy from the atomic nucleus.
First, you ask your mom if she does not know ask your dad(if You are living with him) if he does not know as your gradparents then if they dont know Your WHOLE fanil is some DUMB Bi..ches
We derive electromagnetic energy from the nuclear fusion reactions on the sun. We also apply nuclear energy (fission) on earth to generate lots of thermal energy, which we use in a steam cycle to generate lots of electric power.
In a nuclear power plant, the reactor produces nuclear energy which transforms to thermal energy, and this is then used to produce steam which is used in a conventional staem turbine/generating set to produce electricity
These are the constituents of atoms. Nuclei are made up of protons and neutrons. Useful nuclear energy is only obtained from a few nuclei which can be made to fission and release energy. The two main ones are Uranium235 and Plutonium239.
In a nuclear power plant, nuclear energy is used to produce heat through nuclear reactions. This heat is then used to produce steam, which drives a turbine to generate kinetic energy in the form of mechanical motion. The kinetic energy is ultimately transformed into electrical energy through a generator.
One of the sources of nuclear energy is nuclear fission. Nuclear fission is the splitting of heavy nuclei (as U-235) when bombarded by neutrons. The nuclear fission results in loss of mass (or mass defect) that transforms into energy according to formula E = mc2 (c is light velocity). The resulting energy manifests itself as heat energy that produces steam. The steam spins the turbines that spins electric generators and hence producing electricity.
The equation Emc2, also known as the "sexed equation," shows that energy (E) and mass (m) are equivalent and can be converted into each other. This means that a small amount of mass can be converted into a large amount of energy, as demonstrated in nuclear reactions like atomic bombs and nuclear power plants.
There is a one to one relationship.
The Sun's structure consists of a core where nuclear fusion occurs, releasing energy in the form of light and heat. This energy gradually moves outward from the core through radiation and convection processes. The energy produced in the core is transferred to the Sun's surface, where it is emitted as sunlight.