Examples of using Binding energy in English and their translations into Malay
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Binding Energy.
Nickel-62 has the highest binding energy per nucleon of any isotope.
Binding energy The mechanical energy that is required to disassemble a whole into separate parts.
Nickel-62 has the highest binding energy per nucleon of any isotope for any element.
Electron binding energy is a measure of the energy required to free electrons from their atomic orbits.
In order for fission to produce energy, the total binding energy of the resulting elements must be less negative(higher energy) than that of the starting element.
If new binding energy is available when light nuclei fuse, or when heavy nuclei split, either process can result in release of this binding energy.
Atomic nuclei consisting of such a magicnumber of nucleons have a higher average binding energy per nucleon than one would expect based upon predictions such as the semi-empirical mass formula[SEMF] and are hence more stable against nuclear decay.
The binding energy of nuclei is always a positive number, since all nuclei require net energy to separate them into individual protons and neutrons.
In astrophysics, gravitational binding energy of a celestial body is the energy required to expand the material to infinity.
If the binding energy for the products is higher when light nuclei fuse, or when heavy nuclei split, either of these processes will result in a release of the extra binding energy….
There's a binding energy structure that could overheat.
If new binding energy is available when light nuclei fuse, or when heavy nuclei split, either of these processes result in releases of the binding energy.
Systematic measurements of the binding energy of atomic nuclei show systematic deviations with respect to those estimated from the liquid drop model.
In general, binding energy represents the work that must be done against the forces that hold an object together, disassembling the object into its component parts with enough distance between them so that further separation requires negligible additional work.
At the nuclear level, binding energy is also equivalent to the energy liberated when a nucleus is created from other nucleons or nuclei.
In general, binding energy represents the mechanical work which must be done against the forces which hold an object together, disassembling the object into component parts separated by sufficient distance that further separation requires negligible additional work.
In bound systems, if the binding energy is removed from the system, it must be subtracted from the mass of the unbound system, because this energy has mass.
This nuclear binding energy(binding energy of nucleons into a nuclide) is derived from the strong nuclear force and is the energy required to disassemble a nucleus into the same number of free unbound neutrons and protons it is composed of, so that the nucleons are far/distant enough from each other so that the strong nuclear force can no longer cause the particles to interact.
A nucleus with greater binding energy has a lower total energy, and therefore a lower mass according to Einstein's mass- energy equivalence relation E= mc2.
Determining the relevant nuclear binding energy encompasses three steps of calculation, which involves the creation of mass defect by removing the mass as released energy. .
At the atomic level the atomic binding energy of the atom derives from electromagnetic interaction and is the energy required to disassemble an atom into free electrons and a nucleus.
When the energy is greater than the binding energy of its molecular bond energy, the molecular bonds of the contaminant molecules are broken and directly decomposed into single atoms or harmless gas molecules formed of single atoms.
The nuclear binding energies andforces are on the order of a million times greater than the electron binding energies of light atoms like hydrogen.
Nuclei of iron atoms have some of the highest binding energies per nucleon, surpassed only by the nickel isotope 62Ni.
In refractory metals, the energy binding the individual atoms together is particularly high.
The mass defect of a nucleus represents the mass of the energy binding the nucleus, and is the difference between the mass of a nucleus and the sum of the masses of the nucleons of which it is composed.
Application: Double Loop Wire Ties be widely used in the construction binding because it save time and energy.