Electronic configurations are the arrangement of electrons in the orbits or shells. The maximum number of electrons that can be accommodated in the shell goes as 2-s, 8-p and so on..
So, when the last shell contains the maximum electrons it can hold, there is no possibility of any reaction to occur because it has the 8 electrons in the final shell already.
This arrangement in any atom, which shares or donates or accepts electrons to form the final arrangement as above is called noble gas configuration
The electron configuration of polonium is: [Xe]6s24f145d106p4.
The noble gas electron configuration of Phosphorus is [Ne] 3s2 3p3
No, chlorine (Cl) does not have a noble gas electronic configuration. It has the electron configuration [Ne]3s^2 3p^5, which is one electron away from achieving a stable, noble gas configuration like argon (Ar).
Only group 18 elements have noble gas configuration. All other elements lack a noble gas electronic configuration.
The noble gas configuration of sulfur is [Ne]3s2 3p4. It represents the electron configuration of sulfur when it has achieved a stable electronic configuration similar to the nearest noble gas, neon.
Yes. S2- has the electronic configuration of argon
Yes- Cl- has the electronic configuration of argon.
Cl- and Ca2+ has the electronic configuration of the noble gas, Ar, with 18 electrons.
The electronic configuration of Ga is 1s22s22p63s23p64s23104p1 Expressed as a noble gas configuration this is [Ar] 4s2, 3d10, 4p1
The noble gas configuration for selenium is [Ar] 3d10 4s2 4p4, which means it has the same electron configuration as argon, followed by 4d10 4p4 electrons.
There is no noble gas with the same electronic configuration as the element barium (Ba). But Ba2+ ion and the noble gas xenon (Xe) will have the same number of electrons (54 electrons each).
Titanium's noble gas configuration is [Ar] 3d2 4s2. This configuration represents the electron arrangement in the ground state of titanium and can be abbreviated using the noble gas before the element (argon in this case).