Determine the reason for the fact that the number of atomic orbitals combined is always the same as that of the hybrid orbitals formed. Concept Introduction: The mathematical process where the standard atomic orbitals are joined to make new atomic orbitals is called hybridization. The new atomic orbitals so formed are called hybrid orbitals which are localized on individual atoms. However, they have distinctive shapes and energies when compared to those of the standard atomic orbitals. They are important in valence bond hypothesis since they relate all the more intently to actual electron distribution that exists in chemically bonded atoms.
Determine the reason for the fact that the number of atomic orbitals combined is always the same as that of the hybrid orbitals formed. Concept Introduction: The mathematical process where the standard atomic orbitals are joined to make new atomic orbitals is called hybridization. The new atomic orbitals so formed are called hybrid orbitals which are localized on individual atoms. However, they have distinctive shapes and energies when compared to those of the standard atomic orbitals. They are important in valence bond hypothesis since they relate all the more intently to actual electron distribution that exists in chemically bonded atoms.
Solution Summary: The author explains that the number of atomic orbitals combined is always the same as that of the hybrid orbital formed.
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Chapter 7, Problem 7.66PAE
Interpretation Introduction
Interpretation: Determine the reason for the fact that the number of atomic orbitals combined is always the same as that of the hybrid orbitals formed.
Concept Introduction: The mathematical process where the standard atomic orbitals are joined to make new atomic orbitals is called hybridization. The new atomic orbitals so formed are called hybrid orbitals which are localized on individual atoms. However, they have distinctive shapes and energies when compared to those of the standard atomic orbitals. They are important in valence bond hypothesis since they relate all the more intently to actual electron distribution that exists in chemically bonded atoms.
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Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell
Author:Steven D. Gammon, Ebbing, Darrell Ebbing, Steven D., Darrell; Gammon, Darrell Ebbing; Steven D. Gammon, Darrell D.; Gammon, Ebbing; Steven D. Gammon; Darrell