From the options given, the answer that best suits the following question has to be identified. “Why there are no pi bonds in ethane?” (a) The remaining unhybridized p-orbitals do not contain any electrons. (b) There are no unhybridized p-orbitals on either of the C-atom. (c) The remaining unhybridized p-orbitals are not parallel to each other. 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. A bond between two atoms is known as sigma bond if the atomic orbitals of the atoms overlap end to end – it is also called head on overlapping. A bond is said to pi bond if it is formed by sideways overlapping of atomic orbitals of the atoms.
From the options given, the answer that best suits the following question has to be identified. “Why there are no pi bonds in ethane?” (a) The remaining unhybridized p-orbitals do not contain any electrons. (b) There are no unhybridized p-orbitals on either of the C-atom. (c) The remaining unhybridized p-orbitals are not parallel to each other. 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. A bond between two atoms is known as sigma bond if the atomic orbitals of the atoms overlap end to end – it is also called head on overlapping. A bond is said to pi bond if it is formed by sideways overlapping of atomic orbitals of the atoms.
Solution Summary: The author explains that sidewise overlapping of unhybridized atomic orbitals forms a pi bond, which is not formed in ethane.
From the options given, the answer that best suits the following question has to be identified.
“Why there are no pi bonds in ethane?”
(a) The remaining unhybridized p-orbitals do not contain any electrons.
(b) There are no unhybridized p-orbitals on either of the C-atom.
(c) The remaining unhybridized p-orbitals are not parallel to each other.
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.
A bond between two atoms is known as sigma bond if the atomic orbitals of the atoms overlap end to end – it is also called head on overlapping. A bond is said to pi bond if it is formed by sideways overlapping of atomic orbitals of the atoms.
The representation of a one-dimensional velocity distribution function for a gas, as the temperature increases:a) it becomes more flattenedb) the maximum occurs for vi = 0 m/sExplain it.
The velocity distribution function of gas moleculesa) is used to measure their velocity, since the small size of gas molecules means that it cannot be measured in any other wayb) is only used to describe the velocity of particles if their density is very high.c) describes the probability that a gas particle has a velocity in a given interval of velocities
Explain why in the representation of a one-dimensional velocity distribution function for a particular gas, the maximum occurs for vi = 0 m/s.
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