QUESTION IMAGE
Question
select the lewis structure that most accurately represents sulfur hexafluoride (sf₆). refer to a periodic table.
Step1: Determine valence electrons
Sulfur (S) is in group 16, so it has 6 valence electrons. Fluorine (F) is in group 17, so each F has 7 valence electrons. For \( SF_6 \), total valence electrons: \( 6 + 6\times7 = 6 + 42 = 48 \).
Step2: Analyze bonding and octets
Fluorine follows the octet rule (needs 8 electrons, 7 valence + 1 from bond). Sulfur can expand its octet (has empty d - orbitals). In \( SF_6 \), S is bonded to 6 F atoms. Each F - S bond is a single bond (since F only needs 1 more electron to complete octet, and S can form 6 single bonds here).
Looking at the structures:
- The first and third structures have a central F (incorrect, central atom should be S).
- The fourth structure has double bonds, but F doesn't form double bonds (it only needs 1 bond to complete octet).
- The second structure has S as the central atom, bonded to 6 F atoms (each single bond), and each F has 3 lone pairs (completing octet), and S has 6 bonding pairs (no lone pairs, which is allowed as S expands its octet here).
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The Lewis structure with S as the central atom, bonded to 6 F atoms (each with 3 lone pairs) (the second structure in the given options).