Q4. (a) (b) Verify the following relations: Determine Symmetry Adapted Linear Combinations for XY2 molecule considering o bonding. Reduce the following representation using the orthogonality theorem 2 2 D3 E 2C3. 3C2 T3N 7 1 -3 Use the character table: D3 E 2C3 3C2 Τι 1 1 1 T2 1 1 -1 T3 2 -1 0
Q4. (a) (b) Verify the following relations: Determine Symmetry Adapted Linear Combinations for XY2 molecule considering o bonding. Reduce the following representation using the orthogonality theorem 2 2 D3 E 2C3. 3C2 T3N 7 1 -3 Use the character table: D3 E 2C3 3C2 Τι 1 1 1 T2 1 1 -1 T3 2 -1 0
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Q4. Verify the following relations:
(a) Determine Symmetry Adapted Linear Combinations for xY2 molecule considering σ bonding.
2
(b) Reduce the following representation using the orthogonality theorem
2
\table[[,2C3,S2,],[D3,E,2,],[τ3N,7,1,-3]]
Use the character table:
\table[[D3,E,2C3,3C2

Transcribed Image Text:Q4.
(a)
(b)
Verify the following relations:
Determine Symmetry Adapted Linear Combinations for XY2 molecule
considering o bonding.
Reduce the following representation using the orthogonality theorem
2
2
D3
E
2C3.
3C2
T3N
7
1
-3
Use the character table:
D3
E
2C3
3C2
Τι
1
1
1
T2
1
1
-1
T3
2
-1
0
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