What makes a fission reaction possible is that certain atoms, such as uranium and plutonium, are unstable and capable of splitting into smaller atoms when struck by a neutron. This process releases a large amount of energy in the form of heat and additional neutrons, which can go on to trigger more fission reactions in a chain reaction.
Hydrogen is considered stable in its most common form, which is a diatomic molecule (H2). However, hydrogen can be reactive and form compounds with other elements, making it potentially unstable in certain chemical reactions.
the absorption of a free-moving neutron by the atom's nucleus
No, not everything is possible in life. There are limitations and constraints that can prevent certain things from happening.
Yes, it is possible for something to be infinite, such as the universe or certain mathematical concepts like numbers.
That process is called a chain reaction. In a chain reaction, the products of one reaction act as reactants in the subsequent reactions, leading to a self-sustaining series of reactions. This can result in a rapid release of energy, as seen in nuclear reactions or certain chemical reactions.
Fissile, that is they will split on capturing a neutron, releasing energy. Also if the fission releases more neutrons, as with U-235 and Pu-239, this gives the possibility of a chain reaction.
The Li2 compound is unstable under certain conditions.
It is possible to have an allergic reaction to anything if your body recognizes it as something that will harm it.
its possible, what type of reaction do you have. Some people get migrains from certain fruit, and some fruit makes people's skin hurt
The number 288 does not correspond to an atom as it is not a specific element. Atoms themselves are not considered stable or unstable, but certain isotopes of elements can be unstable and undergo radioactive decay.
no
Generally, an increase in reaction temperature leads to a higher rate of reaction. This is due to the fact that higher temperatures provide reactant molecules with more kinetic energy, leading to more frequent and energetic collisions between them, which in turn increases the chances of successful collisions and reaction. However, extremely high temperatures can also lead to the degradation of reactants or products, affecting the overall reaction rate.
The reaction rate can typically be measured by determining the change in concentration of reactants or products over a certain time period. Depending on the specific reaction and conditions, it is possible to measure multiple reaction rates simultaneously, involving different reactants or products. Each reaction rate will depend on factors such as concentration, temperature, pressure, and catalyst presence.
The thermal neutron is possibly the most energetic and powerful form of radiation. Apart from extensive alpha particle bombardment in certain fissile nuclides, neutrons are the only particle which effectively sustains a chain fission reaction.
The nucleus would become unstable because you need a certain amount of neutrons, electrons, and protons for it to be stable.
Normally, not, because all of its valence electrons are occupied. However, under certain conditions, such as high temperature, it is possible to force a reaction.
Mixing together certain chemicals or substances that undergo a rapid chemical reaction, releasing heat, gas, and pressure, can cause an explosion. These reactions are highly energetic and can be dangerous if not controlled or handled properly. It is important to follow safety guidelines and precautions when handling explosive materials.