
Concept explainers
(a)
Interpretation:
The given structure exhibit geometric isomerism or not has to be given and two isomers have to be drawn and named for the given structure.
Concept Introduction:
The geometric isomers are said to be the isomers which shows different orientation of groups around a double bond. The geometric isomers are also known as cis-trans isomers.
When two similar or higher priority groups are attached to the carbon on same side, it is said to be cis-isomer.
When two similar or higher priority groups are attached to the carbon on opposite sides, it is said to be trans-isomer.
To exhibit the geometric isomerism, a molecule should have double bonded carbon atoms (
(b)
Interpretation:
The given structure exhibit geometric isomerism or not has to be given and two isomers has to be drawn and named for the given structure.
Concept Introduction:
The geometric isomers are said to be the isomers which shows different orientation of groups around a double bond. The geometric isomers are also known as cis-trans isomers.
When two similar or higher priority groups are attached to the carbon on same side, it is said to be cis-isomer.
When two similar or higher priority groups are attached to the carbon on opposite sides, it is said to be trans-isomer.
To exhibit the geometric isomerism, a molecule should have double bonded carbon atoms (
(c)
Interpretation:
The given structure exhibit geometric isomerism or not has to be given and two isomers has to be drawn and named for the given structure.
Concept Introduction:
The geometric isomers are said to be the isomers which shows different orientation of groups around a double bond. The geometric isomers are also known as cis-trans isomers.
When two similar or higher priority groups are attached to the carbon on same side, it is said to be cis-isomer.
When two similar or higher priority groups are attached to the carbon on opposite sides, it is said to be trans-isomer.
To exhibit the geometric isomerism, a molecule should have double bonded carbon atoms (

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Chapter 15 Solutions
Chemistry: The Molecular Nature of Matter and Change - Standalone book
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