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You can differentiate between a 2s and a 2p subshell based on their shape. The 2s subshell is spherically symmetric and has one orbital. On the other hand, the 2p subshell has a dumbbell shape and consists of three orbitals: px, py, and pz, each oriented along separate axes.
You can tell the difference between a 2s sub-shell and 2p sub-shell from their energy levels, because a 2p sub-shell is a higher energy level than a 2s sub-shell.
Two electrons can occupy the 2s subshell, and 8 electrons can occupy the 3d subshell.
1s^2 2s^2 2p^4
2s, 2p. 2s contains 1 orbital, the 2p sublevel contains 3 orbitals 2px 2py, 2pz where the suffix is the direction the orbital lies in, 2px lies on the x axis.
You can tell the difference between 2s sub-shell and 2p sub-shell by checking their energy levels whereby a 2p orbital has a higher energy level compared to a 2s orbital.
You can differentiate between a 2s and a 2p subshell based on their shape. The 2s subshell is spherically symmetric and has one orbital. On the other hand, the 2p subshell has a dumbbell shape and consists of three orbitals: px, py, and pz, each oriented along separate axes.
You can tell the difference between a 2s sub-shell and 2p sub-shell from their energy levels, because a 2p sub-shell is a higher energy level than a 2s sub-shell.
The electrons in the 2p subshell have more energy than those in the 2s subshell, that is energy per electron.See Wikipedia 'Electron Shells' for more on this subject.
Two electrons can occupy the 2s subshell, and 8 electrons can occupy the 3d subshell.
For a 2s subshell to be present, the 1s subshell must first be full, which means no more electrons can be moved into the 1s subshell.
a. [He]2s(squared) 2p(cubed)1s^2 2s^2 2p^3
it is just a quantum property, its further away from the nucleus
No
The Electronic Configuration for Neon is as follows: 1s^2, 2s^2, 2p^6
2s and 2p 2p can be further divided into 2p(x), 2p(y), and 2p(z), depending on which axis you look at.
⬆⬇1s ⬆⬇2s ⬆2p 2p should look like _ _ _ 2p