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It is not true that: Carbon dioxide is produced during nuclear reactor operation or during nuclear fission.
According to Dalton's atomic theory chemical reactions occur when atoms are separated, joined, or rearranged. Atoms of one element, however, are never changed into atoms of another element as a result of a chemical reaction (it is possible only during nuclear reactions and radioactive disintegration).
Americium is primarily found in nuclear reactors and nuclear waste, as it is a man-made element produced during nuclear reactions. It may also be present in very small amounts in smoke detectors, as they contain a small amount of americium-241 for ionizing radiation detection.
During a nuclear fission reaction, products such as two or more lighter nuclei, neutrons, gamma rays, and energy are given off. These products can vary depending on the specific isotopes involved in the reaction.
During nuclear decay, an isotope of an element changes by emitting radiation, such as alpha or beta particles, or gamma rays. This process results in the isotope transforming into a different element or a different isotope of the same element. The change is necessary to achieve a more stable configuration, typically by adjusting the number of protons and neutrons in the nucleus.
Plutonium, an element not found in nature, is formed from uranium during reactor operation
New elements(or isotopes of decaying element) are produced and energy is released
The nuclei of two atoms of a smaller element join together to form a different element, releasing large amounts of energy.
If the reaction is exothermic then heat is produced.
This was first discovered during the WW2 Manhattan Project to develop the A-bomb. The first reactor chain reaction was produced in 1942 in Chicago.
When one element replaces another element in a compound during a chemical reaction
It is not true that: Carbon dioxide is produced during nuclear reactor operation or during nuclear fission.
To get an exact answer, you would have to specify a fusion reaction; different reactions will produce different amounts of energy. However, to get a rough idea, the energy produced is in the order of a million times more than the typical chemical reaction.
This is called a displacement reaction. It occurs when a more reactive element displaces a less reactive element from its compound during a chemical reaction.
According to Dalton's atomic theory chemical reactions occur when atoms are separated, joined, or rearranged. Atoms of one element, however, are never changed into atoms of another element as a result of a chemical reaction (it is possible only during nuclear reactions and radioactive disintegration).
During a single-displacement reaction, one element replaces another in a compound. This reaction is most likely to occur if a more reactive element displaces a less reactive element in the compound. The displacement reaction will result in the formation of a new compound and a free element.
Americium is primarily found in nuclear reactors and nuclear waste, as it is a man-made element produced during nuclear reactions. It may also be present in very small amounts in smoke detectors, as they contain a small amount of americium-241 for ionizing radiation detection.