Preparing for your ACS examination in general chemistry
Preparing for your ACS examination in general chemistry
98th Edition
ISBN: 9780970804204
Author: Lucy T Eubanks
Publisher: ACS DIVCHED EXAMINATIONS INST.
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Chapter MS, Problem 4PQ
Interpretation Introduction

Interpretation:

The pair of molecules that are geometrically similar has to be determined.

Concept Introduction:

VSEPR or valence shell electron pair repulsion theory predicts the shape of the molecules with the use of arrangement of electrons around the central metal atom. Its postulates are as follows:

1. The shape of the molecules is governed by the repulsion between electron pairs situated in the outermost or valence shell of the atoms.

2. A distortion is observed in the shape of the molecules if lone pairs are present in it. These are the electron pairs that do not participate in the chemical bonding between the atoms. The electron pairs that take part in bond formation are known as bond pairs.

3. The order of repulsion of electron pairs is as follows:

  lplp repulsion>lpbp repulsion >bpbp repulsion

4. Multiple bonds create more repulsion as compared to single bonds.

5. The following table shows the various molecular shapes that match to different number of electron pairs:

Steric number ornumber ofelectron groupsNumber of lone pairsMolecular geometry20Linear30Trigonal planar31Bent40Tetrahedral41Trigonal pyramid42Bent50Trigonal bipyramidal51Seesaw52Tstructure53Linear60Octahedral61Square pyramidal62Square planar

The geometry of the molecule is predicted with the help of steric number. The formula to calculate the steric number is as follows:

  Steric number=[(Atoms bonded to the central atom)+(Number of lone pairs on the central atom)]        (1)

The least electronegative atom is usually taken to be the central atom.

Expert Solution & Answer
Check Mark

Answer to Problem 4PQ

Option (D) is the correct one.

Explanation of Solution

Reason for correct option:

(D) Substitute 2 for atoms bonded to the central atom and 1 for number of lone pairs on the central atom in equation (1) to calculate the steric number in SO2.

  Steric number in SO2=2+1=3

So the number of electron pairs in SO2 is 3 and one lone pair is also present on it. Therefore its geometry is bent according to the VSEPR theory.

Substitute 2 for atoms bonded to the central atom and 1 for number of lone pairs on the central atom in equation (1) to calculate the steric number in O3.

  Steric number in O3=2+1=3

So the number of electron pairs in O3 is 3 and one lone pair is also present on it. Therefore its geometry is bent according to the VSEPR theory.

Therefore SO2 and O3 are geometrically similar. Hence option (D) is correct.

Reason for incorrect option:

(A) Substitute 2 for atoms bonded to the central atom and 1 for number of lone pairs on the central atom in equation (1) to calculate the steric number in SO2.

  Steric number in SO2=2+1=3

So the number of electron pairs in SO2 is 3 and one lone pair is also present on it. Therefore its geometry is bent according to the VSEPR theory.

Substitute 2 for atoms bonded to the central atom and 0 for number of lone pairs on the central atom in equation (1) to calculate the steric number in CO2.

  Steric number in CO2=2+0=2

So the number of electron pairs in CO2 is 2 and no lone pair is also present on it. Therefore its geometry is linear according to the VSEPR theory.

(B) Substitute 3 for atoms bonded to the central atom and 1 for number of lone pairs on the central atom in equation (1) to calculate the steric number in PH3.

  Steric number in PH3=3+1=4

So the number of electron pairs in PH3 is 4 and one lone pair is also present on it. Therefore its geometry is trigonal pyramidal according to the VSEPR theory.

Substitute 3 for atoms bonded to the central atom and 0 for number of lone pairs on the central atom in equation (1) to calculate the steric number in BF3.

  Steric number in BF3=3+0=3

So the number of electron pairs in BF3 is 3 and no lone pair is also present on it. Therefore its geometry is trigonal planar according to the VSEPR theory.

(C) Substitute 2 for atoms bonded to the central atom and 0 for number of lone pairs on the central atom in equation (1) to calculate the steric number in CO2.

  Steric number in CO2=2+0=2

So the number of electron pairs in CO2 is 2 and no lone pair is also present on it. Therefore its geometry is linear according to the VSEPR theory.

Substitute 2 for atoms bonded to the central atom and 2 for number of lone pairs on the central atom in equation (1) to calculate the steric number in OF2.

  Steric number in OF2=2+2=4

So the number of electron pairs in OF2 is 4 and two lone pairs are also present on it. Therefore its geometry is bent according to the VSEPR theory.

Hence option (A), (B) and (C) are incorrect.

Conclusion

The pair of molecules that are geometrically similar is SO2 and O3. Hence, the correct option is (D).

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