Sovi.AI - AI Math Tutor

Scan to solve math questions

QUESTION IMAGE

which structure is most like to be an exception to the octet rule?\ \\(…

Question

which structure is most like to be an exception to the octet rule?\
\\(\bigcirc\\) \\(\ce{sf4}\\)\
\\(\bigcirc\\) \\(\ce{ch3f}\\)\
\\(\bigcirc\\) \\(\ce{ccl4}\\)\
\\(\bigcirc\\) \\(\ce{pcl3}\\)

Explanation:

Step1: Recall the octet rule

The octet rule states that atoms tend to gain, lose, or share electrons to achieve a stable electron configuration with 8 valence electrons (except for hydrogen and helium).

Step2: Analyze each molecule

  • \( \text{SF}_4 \): Sulfur (S) is in period 3, so it can have an expanded octet (more than 8 valence electrons). Sulfur in \( \text{SF}_4 \) has 10 valence electrons (5 bonding pairs: 4 with F and 1 lone pair), violating the octet rule.
  • \( \text{CH}_3\text{F} \): Carbon (C) has 4 valence electrons, forming 4 bonds (3 with H, 1 with F), so it has 8 valence electrons (satisfies octet).
  • \( \text{CCl}_4 \): Carbon forms 4 bonds with Cl, each bond contributing 2 electrons to C's valence shell, so C has 8 electrons (satisfies octet).
  • \( \text{PCl}_3 \): Phosphorus (P) has 5 valence electrons, forming 3 bonds with Cl (3×2 = 6 electrons) and 1 lone pair (2 electrons), so total 8 valence electrons (satisfies octet).

Answer:

\( \text{SF}_4 \) (the first option: \( \text{SF}_4 \))