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The shape of SF(3)Cl(3) molecule is:...

The shape of `SF_(3)Cl_(3)` molecule is:

A

trgonal bi-pyramidal

B

cubic

C

octahedral

D

thetrahedral.

Text Solution

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The correct Answer is:
To determine the shape of the molecule \( SF_3Cl_3 \), we can follow these steps: ### Step 1: Determine the Valence Electrons Sulfur (S) is the central atom in \( SF_3Cl_3 \). Sulfur has 6 valence electrons. ### Step 2: Count the Number of Bonds In \( SF_3Cl_3 \), sulfur is bonded to three fluorine (F) atoms and three chlorine (Cl) atoms. This gives a total of 6 bond pairs (3 from F and 3 from Cl). ### Step 3: Identify the Electron Geometry With 6 bond pairs around the sulfur atom, we can use VSEPR (Valence Shell Electron Pair Repulsion) theory to determine the molecular geometry. The arrangement of 6 electron pairs around a central atom leads to an octahedral geometry. ### Step 4: Determine the Molecular Shape Since all 6 positions are occupied by bonding pairs (3 F and 3 Cl), the molecular shape remains octahedral. ### Conclusion The shape of the \( SF_3Cl_3 \) molecule is octahedral. ---

To determine the shape of the molecule \( SF_3Cl_3 \), we can follow these steps: ### Step 1: Determine the Valence Electrons Sulfur (S) is the central atom in \( SF_3Cl_3 \). Sulfur has 6 valence electrons. ### Step 2: Count the Number of Bonds In \( SF_3Cl_3 \), sulfur is bonded to three fluorine (F) atoms and three chlorine (Cl) atoms. This gives a total of 6 bond pairs (3 from F and 3 from Cl). ...
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