Примери за използване на Ionization energy на Английски и техните преводи на Български
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The ionization energy of an atom.
First and second ionization energy.
The ionization energy is 6.82 eV.
They have a very high ionization energy.
The first ionization energy is 7.099 eV.
Helium has the highest ionization energy.
The ionization energy of the hydrogen atom.
So just as we saw as the elements in this bottom left have a very low ionization energy.
Ionization energy of atomic hydrogen is 13.6 eV.
This is the same principle that we thought about ionization energy, and electronegativity.
When we talked about ionization energy, I think, we talked about when oxygen and water bond, right?
The other characteristic that the elements within a period shares is an increase in ionization energy.
The first molar ionization energy applies to the neutral atoms.
Elements in the same group tend to show patterns in atomic radius, ionization energy, and electronegativity.
The ionization energy of the mass spectrometer was 70 eV and a scan cycle time was 0.5 ms(33- 40 m/z).
This is due to its small size and high ionization energy in relation to the other elements in the group.
It corresponds to the energy of the photon whose wavenumber is the Rydberg constant,i.e. the ionization energy of the hydrogen atom.
Electronegativity increases in the same manner as ionization energy because of the pull exerted on the electrons by the nucleus.
The ionization energy has a low value(8.807- 9.181 eV), it is a type of binding energy, or, as it is sometimes called, the first ionization potential(I1), which is the lowest energy required to remove an electron from a free ground-state atom in its lowest energy(ground) state to infinity.
Elements in the same period show trends in atomic radius, ionization energy, electron affinity, and electronegativity.
The second, third,etc., molar ionization energy applies to the further removal of an electron from a singly, doubly, etc., charged ion.
Elements in the same period exhibit trends in atomic radius, ionization energy, electronegativity, and electron affinity.
This decrease in atomic radius also causes the ionization energy to increase when moving from left to right across a period.
Period: Elements present in the same period exhibits trends in electronegativity, ionization energy, atomic radius and electron affinity.
From the top, each successive element has a lower ionization energy because it is easier to remove an electron since the atoms are less tightly bound.
Elements in the same period show trends in atomic radius, ionization energy, electron affinity, and electro negativity.
The degree of ionization is determined by the electron temperature relative to the ionization energy(and more weakly by the density) in accordance with the Saha equation.
The degree of plasma ionisation is determined by the electron temperature relative to the ionization energy(and more weakly by the density), in a relationship called the Saha equation.
These should possess the highest ionization energies.
These tables list values of molar ionization energies, measured in kJ mol- 1.