The angle between the following hybrid orbitals has to be predicted. (a) sp (b) sp 2 (c) sp 3 The reason for why angle between sp 3 d orbitals and sp 3 d 2 orbitals is complicated to be predicted has to be explained. Concept Introduction: Hybridization is a hypothetical concept. It refers to overlapping of atomic orbitals and the resultant orbitals formed are known as hybrid orbitals . An orbital that doesn’t involve in hybridization is termed as unhybridized orbital . After hybridization, the orbitals cannot be distinguished individually. The orientation of the orbitals while overlapping impacts the nature of the bond forms. By knowing the hybridization of central atom in the molecule its geometry can be predicted and vice-versa.
The angle between the following hybrid orbitals has to be predicted. (a) sp (b) sp 2 (c) sp 3 The reason for why angle between sp 3 d orbitals and sp 3 d 2 orbitals is complicated to be predicted has to be explained. Concept Introduction: Hybridization is a hypothetical concept. It refers to overlapping of atomic orbitals and the resultant orbitals formed are known as hybrid orbitals . An orbital that doesn’t involve in hybridization is termed as unhybridized orbital . After hybridization, the orbitals cannot be distinguished individually. The orientation of the orbitals while overlapping impacts the nature of the bond forms. By knowing the hybridization of central atom in the molecule its geometry can be predicted and vice-versa.
Solution Summary: The author explains how the angle between the two sp hybrid orbitals is complicated to be predicted.
The angle between the following hybrid orbitals has to be predicted.
(a) sp (b) sp2 (c) sp3
The reason for why angle between sp3d orbitals and sp3d2 orbitals is complicated to be predicted has to be explained.
Concept Introduction:
Hybridization is a hypothetical concept. It refers to overlapping of atomic orbitals and the resultant orbitals formed are known as hybrid orbitals. An orbital that doesn’t involve in hybridization is termed as unhybridized orbital. After hybridization, the orbitals cannot be distinguished individually. The orientation of the orbitals while overlapping impacts the nature of the bond forms. By knowing the hybridization of central atom in the molecule its geometry can be predicted and vice-versa.
(b)
Interpretation Introduction
Interpretation:
The angle between the following hybrid orbitals has to be predicted.
(b) sp (b) sp2 (c) sp3
The reason for why angle between sp3d orbitals and sp3d2 orbitals is complicated to be predicted has to be explained.
Concept Introduction:
Hybridization is a hypothetical concept. It refers to overlapping of atomic orbitals and the resultant orbitals formed are known as hybrid orbitals. An orbital that doesn’t involve in hybridization is termed as unhybridized orbital. After hybridization, the orbitals cannot be distinguished individually. The orientation of the orbitals while overlapping impacts the nature of the bond forms. By knowing the hybridization of central atom in the molecule its geometry can be predicted and vice-versa.
(c)
Interpretation Introduction
Interpretation:
The angle between the following hybrid orbitals has to be predicted.
(c) sp (b) sp2 (c) sp3
The reason for why angle between sp3d orbitals and sp3d2 orbitals is complicated to be predicted has to be explained.
Concept Introduction:
Hybridization is a hypothetical concept. It refers to overlapping of atomic orbitals and the resultant orbitals formed are known as hybrid orbitals. An orbital that doesn’t involve in hybridization is termed as unhybridized orbital. After hybridization, the orbitals cannot be distinguished individually. The orientation of the orbitals while overlapping impacts the nature of the bond forms. By knowing the hybridization of central atom in the molecule its geometry can be predicted and vice-versa.
In general, which is more polar, the stationary phase or the mobile phase?
The stationary phase is always more polar
The mobile phase is always more polar
It depends on our choices for both stationary and mobile phase
Their polarity doesn't really matter so we never consider it
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Quantum Molecular Orbital Theory (PChem Lecture: LCAO and gerade ungerade orbitals); Author: Prof Melko;https://www.youtube.com/watch?v=l59CGEstSGU;License: Standard YouTube License, CC-BY