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Q.Assertion (A) : Glucose gets oxidized to six carbon gluconic acid on reaction with bromine water. Reason (R) : The carbonyl group is absent in the open chain structure of glucose.

CBSECBSE Class XII Board 2026MCQ· 1mImportance★★★★★
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Glucose has an aldehyde group in its open-chain form, which is selectively oxidized by bromine water to a carboxylic acid, giving gluconic acid. The reason is false because the carbonyl group is present, not absent.

The key to this question lies in understanding the structure of glucose and the specific action of bromine water as an oxidizing agent. Many students get confused because glucose usually exists as a cyclic hemiacetal, but in solution, a tiny amount of the open-chain aldehyde form is always present — and that’s what reacts.

Let’s break it down.

  1. Glucose exists in equilibrium between cyclic and open-chain forms.

    In aqueous solution, glucose is predominantly in its cyclic pyranose form (about 99.9%). However, a very small fraction (roughly 0.1%) exists as the open-chain aldehyde. This equilibrium is dynamic — as the open-chain form is consumed in a reaction, more cyclic molecules open up to replenish it.

  2. Bromine water is a mild oxidizing agent.

    Unlike strong oxidizers like nitric acid (which can oxidize both ends of glucose to give saccharic acid), bromine water selectively oxidizes the aldehyde group (−CHO-CHO) to a carboxylic acid (−COOH-COOH). It does not attack the primary alcohol group at C-6 under these conditions.

  3. The reaction produces gluconic acid.

    When the open-chain aldehyde form of glucose reacts with bromine water, the aldehyde group at C-1 is oxidized to a carboxyl group. The product is gluconic acid, which still has six carbons — the chain length is preserved.

    Glucose (open-chain)→Br2/H2OGluconic acid\text{Glucose (open-chain)} \xrightarrow{\text{Br}_2/\text{H}_2\text{O}} \text{Gluconic acid}

    The reaction can be written as:

C6H12O6+Br2+H2O→C6H12O7+2HBrC_6H_{12}O_6 + Br_2 + H_2O \rightarrow C_6H_{12}O_7 + 2HBr

  1. Now examine the Assertion and Reason. …

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