for each of the following elements, provide the correct electron configuration and the valence electron…

for each of the following elements, provide the correct electron configuration and the valence electron count: 5. h: 6. ar: 7. si: 8. cr: 9. k: 10. br:
Answer
Explanation:
Step1: Determine electron - configuration rules
Electrons fill orbitals in order of increasing energy (1s < 2s < 2p < 3s < 3p < 4s < 3d < 4p etc.). The s - orbital can hold 2 electrons, p - orbital 6 electrons, d - orbital 10 electrons and f - orbital 14 electrons. Valence electrons are the electrons in the outermost shell.
Step2: H (Hydrogen)
Hydrogen has 1 electron. Its electron - configuration is $1s^1$. The number of valence electrons is 1.
Step3: Ar (Argon)
Argon has 18 electrons. Its electron - configuration is $1s^22s^22p^63s^23p^6$. The number of valence electrons is 8.
Step4: Si (Silicon)
Silicon has 14 electrons. Its electron - configuration is $1s^22s^22p^63s^23p^2$. The number of valence electrons is 4.
Step5: Cr (Chromium)
Chromium has 24 electrons. Due to the stability of half - filled d - orbitals, its electron - configuration is $1s^22s^22p^63s^23p^64s^13d^5$ instead of the expected $1s^22s^22p^63s^23p^64s^23d^4$. The number of valence electrons is 6.
Step6: K (Potassium)
Potassium has 19 electrons. Its electron - configuration is $1s^22s^22p^63s^23p^64s^1$. The number of valence electrons is 1.
Step7: Br (Bromine)
Bromine has 35 electrons. Its electron - configuration is $1s^22s^22p^63s^23p^64s^23d^{10}4p^5$. The number of valence electrons is 7.
Answer:
- Electron - configuration: $1s^1$, Valence electrons: 1
- Electron - configuration: $1s^22s^22p^63s^23p^6$, Valence electrons: 8
- Electron - configuration: $1s^22s^22p^63s^23p^2$, Valence electrons: 4
- Electron - configuration: $1s^22s^22p^63s^23p^64s^13d^5$, Valence electrons: 6
- Electron - configuration: $1s^22s^22p^63s^23p^64s^1$, Valence electrons: 1
- Electron - configuration: $1s^22s^22p^63s^23p^64s^23d^{10}4p^5$, Valence electrons: 7