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The type of nuclear reaction that results in the production of synthetic elements is nuclear fusion. This process involves combining atomic nuclei to create new, heavier elements. In a controlled environment such as a nuclear reactor, scientists can create synthetic elements that do not occur naturally on Earth.
The nuclear reaction that results in a single nucleus undergoing a decrease in atomic number and the release of a helium nucleus is called alpha decay. In this process, an unstable nucleus emits an alpha particle (helium nucleus) which consists of two protons and two neutrons, causing the original nucleus to decrease in atomic number by 2.
The process by which atomic nuclei combine together to form a new element is called nuclear fusion. This process releases a large amount of energy and is the same process that powers the sun and other stars.
Molecular bonding involves the sharing or transfer of electrons between atoms to form molecules, creating chemical compounds. Nuclear fusion is a process in which atomic nuclei combine to form a heavier nucleus, releasing large amounts of energy in the process. While molecular bonding occurs at the atomic level, nuclear fusion involves the fusion of atomic nuclei at the nuclear level.
Nuclear fission involves the splitting of a heavy atomic nucleus into smaller nuclei, releasing energy in the process, commonly used in nuclear reactors. In contrast, nuclear fusion is the process where light atomic nuclei combine to form a heavier nucleus, which also releases energy, and is the reaction that powers stars, including the sun. Nuclear decay, on the other hand, refers to the spontaneous transformation of an unstable atomic nucleus into a more stable one, emitting radiation in the process. While fission and fusion are energy-producing reactions, decay is a natural process of radioactive elements.
Splitting an atomic nucleus results in a process called nuclear fission, where a large nucleus is split into smaller nuclei, releasing a large amount of energy in the form of heat and radiation. This process is the basis of nuclear power plants and nuclear weapons.
The energy released from the sun results from the process of nuclear fusion, where atomic nuclei of hydrogen atoms combine to form helium nuclei, releasing a significant amount of energy in the process. These reactions occur in the sun's core under high pressure and temperature conditions.
The antonym of nuclear fusion is nuclear fission. Nuclear fusion is the process of combining atomic nuclei to form a heavier nucleus, while nuclear fission is the process of splitting a heavy atomic nucleus into smaller nuclei.
The type of nuclear reaction that results in the production of synthetic elements is nuclear fusion. This process involves combining atomic nuclei to create new, heavier elements. In a controlled environment such as a nuclear reactor, scientists can create synthetic elements that do not occur naturally on Earth.
An atomic bomb releases nuclear energy through a process called nuclear fission, where the nucleus of an atom is split into two smaller nuclei, releasing a large amount of energy in the form of heat and radiation. This chain reaction of splitting atoms leads to a massive release of energy that results in the explosion associated with atomic bombs.
The process that results in the increase of atomic number is nuclear fusion. This occurs when two atomic nuclei combine to form a heavier nucleus, leading to an increase in atomic number. Nuclear fusion is the process that powers the sun and other stars.
It is called nuclear fusion. In this process, atomic nuclei combine to form a heavier nucleus, releasing a large amount of energy. Nuclear fusion is the process that powers the sun and other stars.
nuclear fusion
That process is called nuclear fission, where a heavy atomic nucleus splits into two or more smaller nuclei, releasing a large amount of energy in the process. This is the principle behind nuclear power plants and nuclear weapons.
Nothing but the terminology. "Atomic" was the term used in the early days of nuclear weapons and nuclear power. "Nuclear" (describing the fission process of nuclear power and nuclear weapons) became the term when fusion bombs became reality, as Atomic can refer to both fission and fusion processes.
You think probable to nuclear fission.
The process of a heavy atomic nucleus splitting into several smaller particles is known as nuclear fission. This process releases a significant amount of energy and is the basis for nuclear power generation and nuclear weapons.