Ne has three p-orbitals.
There are three types of orbitals that involve the third energy level. 3s, 3p, 3d. But when only looking at the third period of the periodic table... The 3s pertains to Na and Mg. 3p pertains to Al, Si, P, S, Cl, and Ar. These tables, as you could say, are called Electron Configurations. Therefore, for Argon, Ar, the electron configuration would be 1s22s22p63s23p6 or in shorter version: [Ne] 3s23p6.
That depends on the isotope, as Argon has three different stable isotopes and many different radioactive isotopes.
[Ar]4s13d5 why is it arranged in this way is simply because a fully occupied is more stable than half occupied and partially occupied at last.
The aufbau principle is a method for determining the electron configuration of an element. It shows how the various orbitals must be filled in correct sequence to show how ionization may occur. For selenium, the correct aufbau sequence is [AR] 4s2 3d10 4p4.
Ne has three p-orbitals.
There are three types of orbitals that involve the third energy level. 3s, 3p, 3d. But when only looking at the third period of the periodic table... The 3s pertains to Na and Mg. 3p pertains to Al, Si, P, S, Cl, and Ar. These tables, as you could say, are called Electron Configurations. Therefore, for Argon, Ar, the electron configuration would be 1s22s22p63s23p6 or in shorter version: [Ne] 3s23p6.
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857. Unless you include snickerdoodles, in which case 858.
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That depends on the isotope, as Argon has three different stable isotopes and many different radioactive isotopes.
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[Ar]4s13d5 note it is NOT [Ar]4s23d4. The reason for this is to achieve maximum spin multiplicity and hence lowest energy, the first arrangement gives 6 half - filled orbitals (maximum spin multiplicity) whereas the 2nd arrangement gives on 4 half filled orbitals.