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What gases are made from nuclear fission?

The primary gases produced from nuclear fission are xenon and krypton. These noble gases are formed as byproducts of the nuclear fission process in nuclear reactors. They contribute to the overall radioactive inventory generated during nuclear power production.


When uranium undergoes spontaneous nuclear fission it can?

When uranium undergoes spontaneous nuclear fission, it splits into smaller nuclei, releasing a significant amount of energy in the process. This fission also produces additional neutrons, which can induce further fission events in nearby uranium nuclei, potentially leading to a chain reaction. The byproducts of fission include various isotopes and radiation, which can be harnessed for energy in nuclear reactors or can contribute to nuclear weapons. Overall, spontaneous fission is a key process in both energy generation and nuclear physics research.


None of the products of nuclear fission of uranium are radioactive?

This statement is incorrect. The products of nuclear fission of uranium are typically highly radioactive, including elements such as cesium, strontium, and iodine. These radioactive byproducts require proper handling and disposal to prevent harm to human health and the environment.


What is the half-life of barium and krypton and any other radioactive byproducts that are formed from nuclear fission?

This is an extensive subject, I cannot summarise all the isotopes formed into one answer. I suggest you go to the Wikipedia link given below, if that is not detailed enough there are other tables and charts available, an internet search should find several.


What is fission product?

Fission products are the fragments resulting from the fission of heavy nuclids during nuclear fission process

Related Questions

Where can you acquire large quantities of Cs-137?

Cs-137 is one of the mixed fission byproducts of nuclear fission. You get Cs-137 in a nuclear reactor.


What gases are made from nuclear fission?

The primary gases produced from nuclear fission are xenon and krypton. These noble gases are formed as byproducts of the nuclear fission process in nuclear reactors. They contribute to the overall radioactive inventory generated during nuclear power production.


Pros and cons of fission energy?

Pros: Relatively easy reaction start Usability in power plants Relatively safe if operated correctly Cons: relatively rare fuel Radioactive byproducts Byproducts can be used for weapons.


When uranium undergoes spontaneous nuclear fission it can?

When uranium undergoes spontaneous nuclear fission, it splits into smaller nuclei, releasing a significant amount of energy in the process. This fission also produces additional neutrons, which can induce further fission events in nearby uranium nuclei, potentially leading to a chain reaction. The byproducts of fission include various isotopes and radiation, which can be harnessed for energy in nuclear reactors or can contribute to nuclear weapons. Overall, spontaneous fission is a key process in both energy generation and nuclear physics research.


None of the products of nuclear fission of uranium are radioactive?

This statement is incorrect. The products of nuclear fission of uranium are typically highly radioactive, including elements such as cesium, strontium, and iodine. These radioactive byproducts require proper handling and disposal to prevent harm to human health and the environment.


What element was being used in Chernobyl?

The Chernobyl disaster involved the release of radioactive materials, specifically radioactive isotopes of iodine, cesium, and strontium, which are byproducts of nuclear fission reactions.


Where do you get nuclear fission?

You get nuclear fission in:nuclear fission reactorsatomic fission bombs


What is the half-life of barium and krypton and any other radioactive byproducts that are formed from nuclear fission?

This is an extensive subject, I cannot summarise all the isotopes formed into one answer. I suggest you go to the Wikipedia link given below, if that is not detailed enough there are other tables and charts available, an internet search should find several.


Why are fission and fusion called nuclear energy?

Nuclear energy is the source of the energy produced by both fission and fusion. Per Einstein's equation E = mc2 matter may be converted into energy. In fission, the nuclei of heavy atoms like Uranium or Plutonium are split into less heavy elements. Byproducts of fission are nuclear energy and neutrons that may be used to sustain the nuclear fission process as in a reactor or a bomb. In fusion, two nuclei are merged (or fused) to form a heavier element. Often two Hydrogen atoms are fused to form a Helium atom. Fusion is the process that occurs in our sun. Both fission and fusion result in the conversion of a small amount of the matter in the nuclei of the source atom(s) into energy. Therefore, both may be considered nuclear energy.


What are some examples that illustrate the differences between nuclear fission and fusion processes?

Nuclear fission involves splitting a heavy nucleus into smaller ones, releasing energy and neutrons. This is used in nuclear power plants and atomic bombs. Nuclear fusion involves combining light nuclei to form a heavier one, releasing more energy and no harmful byproducts. This is the process that powers the sun and hydrogen bombs.


Prokaryotic cells reproduce by a process called?

binary fission


What is fission product?

Fission products are the fragments resulting from the fission of heavy nuclids during nuclear fission process