MCQEasyJEE 2023Electronic Effects (Inductive, Resonance, Hyperconjugation)

JEE Chemistry 2023 Question with Solution

Resonance in carbonate ion (CO32)(CO_3^{2-}) is:

Three resonance structures of carbonate ion are shown with double bond alternating among the three oxygen atoms.Embedded resize handle artifact adjacent to the carbonate ion resonance structure image from the scraped source.
  • A

    All these structures are in dynamic equilibrium with each other.

  • B

    Each structure exists for equal amount of time.

  • C

    CO32CO_3^{2-} has a single structure i.e., resonance hybrid of the above three structures.

  • D

    It is possible to identify each structure individually by some physical or chemical method.

Answer

Correct answer:C

Step-by-step solution

Standard Method

Given: Resonance in carbonate ion CO32CO_3^{2-} is being asked using the shown three canonical structures.

Find: Which statement correctly describes resonance in CO32CO_3^{2-}.

In resonance, the actual molecule or ion is not switching between separate real structures. The true structure is a resonance hybrid of all valid canonical forms. In carbonate ion, the negative charge is delocalized over the three oxygen atoms, so no one structure exists independently.

Therefore:

  • Option A is false because resonance forms are not in dynamic equilibrium.
  • Option B is false because the forms do not exist separately for different amounts of time.
  • Option D is false because individual resonance structures cannot be isolated by physical or chemical methods.
  • Option C is correct because CO32CO_3^{2-} has a single actual structure, which is the resonance hybrid of the three structures.

Therefore, the correct option is C.

Using the definition of resonance

Given: The carbonate ion CO32CO_3^{2-} is represented by three resonance structures.

Find: The true statement about these structures.

A resonance structure is only a contributing canonical form. The real species is a hybrid with delocalized electrons. Thus, the three drawn structures are not separately existing species.

This means:

  1. They are not in dynamic equilibrium with one another.
  2. They do not exist individually for equal time.
  3. They cannot be identified or isolated individually.
  4. The actual carbonate ion is one resonance hybrid structure.

Hence, the correct statement is: CO32CO_3^{2-} has a single structure, the resonance hybrid of the above three structures.

So, the correct option is C.

The answer key conflicts with the solution, and the solution conclusion has been followed.

Common mistakes

  • Assuming resonance structures are in dynamic equilibrium is incorrect because they are not real isolable species. Treat them as contributing forms of one hybrid structure instead.

  • Thinking each resonance form exists for some fraction of time is wrong because resonance is not a time-sharing phenomenon. The electron density is delocalized in the actual structure at all times.

  • Believing individual resonance structures can be identified experimentally is incorrect. Experimental methods observe the resonance hybrid, not separate canonical forms.

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