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Question
which of the following electron configurations is impossible? o 1p² o 2p² o 1s² o 2s² question 17 0.4 pts the highest energy level in a silver atom is o 5 o 4 o 3 o 6
Step1: Recall electron - shell rules
Electrons fill orbitals in a specific order. The first energy level ($n = 1$) has only an $s$ orbital ($1s$), and there is no $p$ orbital in the first energy level. The second energy level ($n=2$) has both $s$ ($2s$) and $p$ ($2p$) orbitals, the third energy level ($n = 3$) has $s$, $p$, and $d$ orbitals etc.
Step2: Analyze each option
- For $1p^{2}$: Since the first energy level ($n = 1$) has only the $1s$ orbital and no $p$ orbital, this electron - configuration is impossible.
- For $2p^{2}$: The second energy level can have a $2p$ orbital, and it can hold 2 electrons in the $2p$ sub - shell, so this is possible.
- For $1s^{2}$: The first energy level has a $1s$ orbital which can hold 2 electrons, so this is possible.
- For $2s^{2}$: The second energy level has a $2s$ orbital which can hold 2 electrons, so this is possible.
Step3: Recall silver's electron - configuration
The electron - configuration of silver ($Ag$, atomic number = 47) is $[Kr]4d^{10}5s^{1}$. The highest energy level occupied by electrons in a silver atom is $5$.
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- The impossible electron - configuration is: $1p^{2}$
- The highest energy level in a silver atom is: 5