An ideal gas (X) present in a vessel of volume \( V \) exerted a pressure of 16.4 atm at 200 K. What is its concentration in mol \( L^{-1} \)? Given Data Given \( R = 0.082 \, \text{L atm mol}^{-1} \text{K}^{-1} \)
The isotherms of an ideal gas at $ T_1, T_2, T_3 $ along with their slopes (m) (in the brackets) are shown here. If $ T_1 > T_2 > T_3 $, then the correct order of slopes of these isotherms is:
What is the boiling point of solution of 0.1 m KCl? K$_b$ of water is 0.52 K kg mol$^{-1}$, $\alpha = 100%$ (water boils at 373 K)
Match the following:
The correct value for log\(_{10}\) \(K_c\) (where \(K_c\) is the equilibrium constant) for the equilibrium reaction at 298 K \[ \text{2Fe}^{3+} + 3\text{I}^- \rightleftharpoons 2\text{Fe}^{2+} + \text{I}_3^- \quad (\text{E}^\circ_{\text{cell}} = x \, \text{V}) \]
Match the following