मराठी

Draw the resonance structure of the following compounds; - Chemistry

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प्रश्न

Draw the resonance structure of the following compounds;

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उत्तर

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Fundamental Concepts in Organic Reaction Mechanism - Resonance Structure
  या प्रश्नात किंवा उत्तरात काही त्रुटी आहे का?
पाठ 12: Organic Chemistry Some Basic Principles and Techniques - Multiple Choice Questions (Type - I) [पृष्ठ १५२]

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एनसीईआरटी एक्झांप्लर Chemistry [English] Class 11
पाठ 12 Organic Chemistry Some Basic Principles and Techniques
Multiple Choice Questions (Type - I) | Q 42.(i) | पृष्ठ १५२

संबंधित प्रश्‍न

Draw the resonance structure for the following compound. Show the electron shift using curved-arrow notation.

C6H5NO2 


Draw the resonance structure for the following compound. Show the electron shift using curved-arrow notation.

\[\ce{C6H5 - \overset{+}{C}H2}\]


What is the hybridisation of each carbon in H2C = C = CH2.


Show the polarisation of carbon-magnesium bond in the following structure.

CH3 – CH2 – CH2 – CH2 – Mg – X


Draw the possible resonance structures for \[\ce{CH3 - \overset{\bullet\bullet}{\underset{\bullet\bullet}{O}} - \overset{+}{C}H2}\] and predict which of the structures is more stable. Give reason for your answer.


The structure of triphenylmethyl cation is given below. This is very stable and some of its salts can be stored for months. Explain the cause of high stability of this cation.


Draw the resonance structure of the following compounds;

\[\begin{array}{cc}
\ce{CH2 = CH - C = O}\\
\phantom{.........}|\\
\phantom{.........}\ce{H}
\end{array}\]


Which of the following compounds will not exist as resonance hybrid. Give reason for your answer:


Resonance structures of propenal are given below. Which of these resonating structures is more stable? Give reason for your answer.

\[\ce{\underset{I}{CH2 = CH - CH = O} <-> \underset{II}{\overset{⊕}{C}H2 - CH = CH - \overset{Θ}{O}}}\]


Which of the two structures (A) and (B) given below is more stabilised by resonance? Explain.

\[\ce{\underset{(A)}{CH3COOH}}\] and \[\ce{\underset{(B)}{CH3CO\overset{Θ}{O}}}\] 


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