To determine which pharmaceutical solvent has the highest dielectric constant at 25°C, we need to understand the concept of dielectric constant, which is a measure of a substance's ability to insulate charges from each other. A higher value indicates a better ability to reduce the electrostatic forces between charged particles.
Let's analyze the given options one by one:
After comparing the dielectric constants of the mentioned solvents, it is clear that glycerin has the highest dielectric constant at 25°C.
Therefore, the correct answer is: Glycerin.
List I | List II | ||
|---|---|---|---|
| A | \(\Omega^{-1}\) | I | Specific conductance |
| B | \(∧\) | II | Electrical conductance |
| C | k | III | Specific resistance |
| D | \(\rho\) | IV | Equivalent conductance |
List I | List II | ||
|---|---|---|---|
| A | Constant heat (q = 0) | I | Isothermal |
| B | Reversible process at constant temperature (dT = 0) | II | Isometric |
| C | Constant volume (dV = 0) | III | Adiabatic |
| D | Constant pressure (dP = 0) | IV | Isobar |