(a) Interpretation: The correct form of dichloroethylene needs to be matched with its corresponding electrostatic potential map. Concept introduction: The molecule is said to be polar if there is an electronegative difference between two atoms in the molecule. The more electronegative atom gets partial negative charge and less electronegative atom gets a partial positive charge.
(a) Interpretation: The correct form of dichloroethylene needs to be matched with its corresponding electrostatic potential map. Concept introduction: The molecule is said to be polar if there is an electronegative difference between two atoms in the molecule. The more electronegative atom gets partial negative charge and less electronegative atom gets a partial positive charge.
Solution Summary: The author explains that the correct form of dichloroethylene needs to be matched with its corresponding electrostatic potential map.
The correct form of dichloroethylene needs to be matched with its corresponding electrostatic potential map.
Concept introduction:
The molecule is said to be polar if there is an electronegative difference between two atoms in the molecule. The more electronegative atom gets partial negative charge and less electronegative atom gets a partial positive charge.
Interpretation Introduction
(b)
Interpretation:
The form of dichloroethylene with dipole moment 2.39 D and dipole moment 0 D needs to be identified.
Concept introduction:
The molecule is said to be polar if there is an electronegative difference between two atoms in the molecule. The more electronegative atom gets partial negative charge and less electronegative atom gets a partial positive charge.
Interpretation Introduction
(c)
Interpretation:
The form of dichloroethylene with a higher boiling point needs to be determined.
Concept introduction:
The polarity or dipole moment in the molecule plays an important role in determining the boiling point of the molecule.
Please answer the question and provide a detailed drawing of the structure. If there will not be a new C – C bond, then the box under the drawing area will be checked.
Will the following reaction make a molecule with a new C – C bond as its major product:
Draw the major organic product or products, if the reaction will work. Be sure you use wedge and dash bonds if necessary, for example to distinguish between major products with different stereochemistry.
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