they are different because hazardous waste are dangerous chemicals,but nuclear energy is realeased when billons of atomic nuclei from aranium are split apart in a nuclear fission reaction
Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.
Nuclear energy does not produce carbon dioxide.
Nuclear energy generates radioactive waste in the form of spent nuclear fuel, which contains radioactive isotopes. This waste must be stored and managed properly due to its long-term hazardous nature.
The only difference is that between energy and power which is a general observation, not limited to the nuclear field. The point is that power is the rate of energy flow, whether production or absorption (use). Thus energy is measured in Joules, and power is simply Joules per second, 1 watt = 1 Joule/sec
The main difference is the source of energy generation - nuclear energy comes from splitting atoms in a controlled reaction, while biomass energy is obtained from organic materials like wood, crops, or animal waste. Additionally, nuclear energy is a low-carbon option but raises safety and waste disposal concerns, while biomass energy is renewable but can compete with food production and requires land use.
Nuclear energy production generates radioactive waste, which is considered hazardous due to its long-lasting radioactivity. Proper management and disposal of this waste is crucial to prevent environmental contamination and health risks. Regulations are in place to ensure that nuclear facilities safely handle and store hazardous waste to protect public safety and the environment.
Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.Chemical energy refers to forces between atoms; nuclear energy, to forces within the nucleus of individual atoms.
Physical energy is energy due to motion (kinetic energy) and/or energy due to position or configuration (potential energy). Nuclear energy is due to the destruction of mass.
Nuclear fission involves splitting atoms to release energy, while nuclear fusion involves combining atoms to release energy.
energy release aka yield
Nuclear fission involves splitting atoms to release energy, while nuclear fusion involves combining atoms to release energy.
they arn't the same type of energy
a nuclear reactor converts binding energy into heat. a nuclear power plant uses a nuclear reactor to generate electricity.
Nuclear energy does not produce carbon dioxide.
Mass defect is associated with nuclear reactions and nuclear binding energy. It refers to the difference between the measured mass of an atomic nucleus and the sum of the masses of its individual protons and neutrons. This difference is released as energy when the nucleus is formed.
Nuclear fission is the splitting of a heavy nucleus into smaller nuclei, releasing energy. Nuclear fusion is the combining of light nuclei to form a heavier nucleus, also releasing energy.
The key difference between nuclear fission and nuclear fusion is the process by which they release energy. Nuclear fission involves splitting a heavy nucleus into smaller nuclei, while nuclear fusion involves combining light nuclei to form a heavier nucleus.