
(a)
Interpretation:
When the given compound is heated, ethene gas is evolved and a product with the formula
Concept introduction:
The Diels-Alder reaction is reversible at high temperature, and this process is called a retro Diels-Alder reaction. The mechanism for this reaction is as the reverse of a Diels-Alder mechanism i.e. the entire six-membered ring is break-down into the corresponding diene and the dienophile. The aromatic proton given signal range from

Answer to Problem 24.82P
The structure of
Explanation of Solution
The given compound is
So when this compound is heated, ethene gas is evolved and a product with formula
The signal in
The product of the retro Diels-Alder reaction is also aromatic and matched with the given spectra and also ethene gas is evolved. so the above product is the correct one.
When the given compound is heated, ethene gas is evolved and a product with the formula
(b)
Interpretation:
When the given compound is heated, ethene gas is evolved and a product with the formula
Concept introduction:
The Diels-Alder reaction is reversible at high temperature and this process is called a retro Diels-Alder reaction. The mechanism for this reaction is as the reverse of a Diels-Alder mechanism i.e. the entire six-membered ring is broken down into the corresponding diene and the dienophile. The aromatic proton given signal range from

Answer to Problem 24.82P
The mechanism for the given reaction is
Explanation of Solution
The given compound is
So when this compound is heated, ethene gas is evolved and product with formula
The signal in
The product of the retro Diels-Alder reaction is also aromatic and matched with the given spectra and also ethene gas is evolved. So the above product and the mechanism (retro Diels-Alder mechanism) is the correct one.
When the given compound is heated, ethene gas is evolved and a product with the formula
(c)
Interpretation:
When the given compound is heated, ethene gas is evolved and a product with the formula
Concept introduction:
The Diels-Alder reaction is reversible at high temperature and this process is called a retro Diels-Alder reaction. The mechanism for this reaction is as the reverse of a Diels-Alder mechanism i.e. the entire six-membered ring is break-down into the corresponding diene and the dienophile. The aromatic proton given signal range from

Answer to Problem 24.82P
The main driving force that favours the product in the given reaction is the formation of a more stable aromatic compound.
Explanation of Solution
The given reaction is
It is noticed that the starting material in the given reaction is overall non-aromatic and also possesses strain due to middle ethylene groups on both sides, but the product is aromatic and strain-free one. Since aromatic compounds are more stable than the non-aromatic compounds this is a key state and the main driving force for the given reaction.
When the given compound is heated, ethene gas is evolved and a product with the formula
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Chapter 24 Solutions
Organic Chemistry: Principles And Mechanisms (second Edition)
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- A student proposes the transformation below in one step of an organic synthesis. There may be one or more reactants missing from the left-hand side, but there are no products missing from the right-hand side. There may also be catalysts, small inorganic reagents, and other important reaction conditions missing from the arrow. • Is the student's transformation possible? If not, check the box under the drawing area. • If the student's transformation is possible, then complete the reaction by adding any missing reactants to the left-hand side, and adding required catalysts, inorganic reagents, or other important reaction conditions above and below the arrow. • You do not need to balance the reaction, but be sure every important organic reactant or product is shown. + T G OH де OH This transformation can't be done in one step.arrow_forwardMacmillan Leaming Draw the major organic product of the reaction. 1. CH3CH2MgBr 2. H+ - G Select Draw Templates More H о QQarrow_forwardDraw the condensed structure of 3-hydroxy-2-butanone. Click anywhere to draw the first atom of your structure.arrow_forward
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