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Cl(3)C.CHO will reacts with water.True/F...

`Cl_(3)C.CHO` will reacts with water.True/False

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To determine whether the compound \( \text{Cl}_3\text{C.CHO} \) (which is chloral) reacts with water, we can analyze the structure and the nature of the compound. ### Step 1: Identify the structure of the compound The compound \( \text{Cl}_3\text{C.CHO} \) consists of a carbon atom bonded to three chlorine atoms (trichloromethyl group) and a carbonyl group (aldehyde). The structure can be represented as: \[ \text{CCl}_3 - \text{CHO} \] ### Step 2: Understand the reactivity of aldehydes with water Aldehydes generally react with water to form hydrates. In this case, the aldehyde group (\(-CHO\)) can react with water to form a geminal diol (hydrate). ### Step 3: Reaction with water When chloral (trichloroacetaldehyde) reacts with water, it forms chloral hydrate. The reaction can be represented as follows: \[ \text{CCl}_3\text{CHO} + \text{H}_2\text{O} \rightarrow \text{CCl}_3\text{CH(OH)2} \] ### Step 4: Stability of the product The product formed, chloral hydrate, is stabilized by intramolecular hydrogen bonding between the hydroxyl group and the chlorine atoms. This intramolecular hydrogen bonding contributes to the stability of the chloral hydrate. ### Conclusion Since chloral does react with water to form chloral hydrate, the statement "Cl\(_3\)C.CHO will react with water" is **True**. ---

To determine whether the compound \( \text{Cl}_3\text{C.CHO} \) (which is chloral) reacts with water, we can analyze the structure and the nature of the compound. ### Step 1: Identify the structure of the compound The compound \( \text{Cl}_3\text{C.CHO} \) consists of a carbon atom bonded to three chlorine atoms (trichloromethyl group) and a carbonyl group (aldehyde). The structure can be represented as: \[ \text{CCl}_3 - \text{CHO} \] ...
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