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Video: Valence Bond Theory Video Lecture | Inorganic Chemistry for NEET

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1. What is Valence Bond Theory?
Ans. Valence Bond Theory is a concept in chemistry that describes the formation of chemical bonds between atoms in terms of the overlapping of atomic orbitals. It suggests that a covalent bond is formed when two atomic orbitals, each containing one electron, overlap and share their electrons.
2. How does Valence Bond Theory explain the bonding in molecules?
Ans. Valence Bond Theory explains the bonding in molecules by considering the overlapping of atomic orbitals. It states that when two atoms approach each other and their orbitals overlap, the electrons from each atom can occupy the overlapping region, resulting in the formation of a covalent bond.
3. What are the key assumptions of Valence Bond Theory?
Ans. Valence Bond Theory is based on several key assumptions. Firstly, it assumes that electrons in atoms occupy atomic orbitals. Secondly, it assumes that the formation of a covalent bond occurs through the overlapping of atomic orbitals. Additionally, it assumes that the overlapping orbitals can hold a maximum of two electrons with opposite spins.
4. How does Valence Bond Theory explain the concept of hybridization?
Ans. Valence Bond Theory explains the concept of hybridization by suggesting that atomic orbitals can mix or hybridize to form new hybrid orbitals. These hybrid orbitals have different shapes and energies compared to the original atomic orbitals and are involved in the formation of covalent bonds. Hybridization helps explain the observed molecular geometries and bond angles in molecules.
5. What are the limitations of Valence Bond Theory?
Ans. Valence Bond Theory has some limitations. It cannot explain the magnetic properties of molecules accurately, as it does not consider the electron-electron repulsion. It also does not provide a quantitative description of bond strengths or bond lengths. Additionally, it does not explain the phenomenon of resonance and the delocalization of electrons in molecules.
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