4) When determining the oxidation state of carbon in an organic molecule, each hydrogen bonded to carbon decreases the oxidation state of carbon by 1 and each oxygen bond to carbon increases the oxidation state of carbon by 1. Using this information, determine the oxidation state of the benzylic carbon in toluene and the carbonyl carbon in benzoic acid. For example, in H3C-CH2-OH the CH₂ carbon has an oxidation state of 0-2+1 = -1.

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4) When determining the oxidation state of carbon in an organic molecule, each hydrogen
bonded to carbon decreases the oxidation state of carbon by 1 and each oxygen bond to
carbon increases the oxidation state of carbon by 1. Using this information, determine
the oxidation state of the benzylic carbon in toluene and the carbonyl carbon in benzoic
acid. For example, in H3C-CH2-OH the CH₂ carbon has an oxidation state of 0-2+1 = -1.
Transcribed Image Text:4) When determining the oxidation state of carbon in an organic molecule, each hydrogen bonded to carbon decreases the oxidation state of carbon by 1 and each oxygen bond to carbon increases the oxidation state of carbon by 1. Using this information, determine the oxidation state of the benzylic carbon in toluene and the carbonyl carbon in benzoic acid. For example, in H3C-CH2-OH the CH₂ carbon has an oxidation state of 0-2+1 = -1.
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Introduction

Oxidation state, also known as oxidation number, is a measure of the degree of oxidation of an atom in a molecule. It is a way of keeping track of the electrons gained or lost by an atom in a compound during a chemical reaction. The oxidation state of an atom in a molecule can be determined based on its electron configuration and its bonding with other atoms in the molecule. 

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