Question
Explain Hoffmann bromamide degradation reaction with mechanism.
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| Column I | Column II | ||
| i. | Mass percentage | a. | $\frac{\text{Number of moles of the solute component}}{\text{Volume of solution in litres}}$ |
| ii. | Volume percentage | b. | $\frac{\text{Number of moles of a component}}{\text{Total number of moles of all the components}}$ |
| iii. | Mole fraction | c. | $\frac{\text{Volume of the solute component in solution}}{\text{Total volume of solution}}\times100$ |
| iv. | Molality | d. | $\frac{\text{Mass of the solute component in solution}}{\text{Total mass of the solution}}\times100$ |
| v. | Molarity | e. | $\frac{\text{Number of moles of the solute components}}{\text{Mass of solvent in kilograms}}$ |
| Column I | | Column II | |
| i. | Saturated solution | a. | Solution having same osmotic pressure at a given temperature as that of given solution. |
| ii. | Binary solution | b. | A solution whose osmotic pressure is less than that of another. |
| iii. | Isotonic solution | c. | Solution with two components. |
| iv. | Hypotonic solution | d. | A solution which contains maximum amount of solute that can be dissolved in a given amount of solvent at a given temperature. |
| v. | Solid solution | e. | A solution whose osmotic pressure is more than that of another. |
| vi | Hypertonic solution | f. | A solution in solid phase. |