Draw a second resonance form for the structure shown below.

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
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Draw a second resonance form for the structure shown below.

In the image provided, we see the structural formula of a molecule known as propene, specifically focusing on its isomeric form. This particular structure is shown in a diagram known as a Fischer projection.

1. **Molecular Structure:**
   - The molecule consists of three carbon atoms, forming a chain.
   - The first carbon on the left (designated as H₂C) is bonded to two hydrogen atoms.
   - The second carbon (C) is connected to the first carbon by a single bond and has a double bond with the third carbon.
   - The third carbon (C) is bonded to one hydrogen atom (H) and one methyl group (CH₃).

2. **Double Bond:**
   - The double bond between the second and third carbon atoms is denoted by two parallel lines (=), indicating the sharing of two pairs of electrons.

3. **Bonding and Geometry:**
   - The single lines (–) show single covalent bonds, representing the sharing of one pair of electrons.
   - The configuration around the double bond is planar, meaning that all the atoms involved in the double bond lie in the same plane.

This diagram helps in understanding the spatial arrangement and bonding relationships within the molecule. It’s vital for studying organic chemistry, providing insight into the structure and behavior of hydrocarbons.
Transcribed Image Text:In the image provided, we see the structural formula of a molecule known as propene, specifically focusing on its isomeric form. This particular structure is shown in a diagram known as a Fischer projection. 1. **Molecular Structure:** - The molecule consists of three carbon atoms, forming a chain. - The first carbon on the left (designated as H₂C) is bonded to two hydrogen atoms. - The second carbon (C) is connected to the first carbon by a single bond and has a double bond with the third carbon. - The third carbon (C) is bonded to one hydrogen atom (H) and one methyl group (CH₃). 2. **Double Bond:** - The double bond between the second and third carbon atoms is denoted by two parallel lines (=), indicating the sharing of two pairs of electrons. 3. **Bonding and Geometry:** - The single lines (–) show single covalent bonds, representing the sharing of one pair of electrons. - The configuration around the double bond is planar, meaning that all the atoms involved in the double bond lie in the same plane. This diagram helps in understanding the spatial arrangement and bonding relationships within the molecule. It’s vital for studying organic chemistry, providing insight into the structure and behavior of hydrocarbons.
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