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current attempt in progress why is the 11th electron of the sodium atom…

Question

current attempt in progress
why is the 11th electron of the sodium atom located in the third energy level rather than in the second energy level?
○ the 3s orbital is at a lower energy level than the 2d orbital.
○ sodium is unlike every other group 1a element.
○ the 3s orbital must have at least one electron before the 2p can be filled.
○ the first and second energy levels are filled.

Explanation:

Brief Explanations

The first energy level (\(n = 1\)) can hold a maximum of \(2\) electrons (\(1s^2\)). The second energy level (\(n=2\)) has \(s\) and \(p\) sub - shells. The \(2s\) sub - shell can hold \(2\) electrons (\(2s^2\)) and the \(2p\) sub - shell can hold \(6\) electrons (\(2p^6\)). So, the first two energy levels together can hold \(2 + 2+6=10\) electrons. According to the Aufbau principle (electrons fill orbitals starting from the lowest energy level), once the first two energy levels (\(n = 1\) and \(n = 2\)) are filled (with \(10\) electrons), the \(11^{th}\) electron of sodium must go to the next available energy level (\(n = 3\)).

  • The \(2d\) orbital does not exist. The \(d\) orbitals start from \(n = 3\) (\(3d\)).
  • Sodium follows the general electron - filling rules for group \(1A\) elements.
  • The \(2p\) sub - shell is filled (\(2p^6\)) before electrons start filling the \(3s\) sub - shell.

Answer:

The first and second energy levels are filled.