Match the following characteristics of transition metals given in Column I with the examples listed in Column II
S. No. | Characteristic properties | S. No. | Examples |
---|---|---|---|
W | Chemically inert, non-stoichiometric compound | A | $$\mathrm{WO}_3$$ |
X | Higher oxidation states are more stable | B | $$\mathrm{TiCl_4}$$ |
Y | Due to inert pair effect, lower oxidation state is more stable | C | $$\mathrm{Mn_4N}$$ |
Z. | Colourless compound of transition metal | D | $$\mathrm{SnCl_2}$$ |
Gaseous Nitrous oxide decomposes at $$298 \mathrm{~K}$$ to form Nitrogen gas and Oxygen gas. The $$\Delta \mathbf{H}$$ for the reaction at $$1.0 \mathrm{~atm}$$ pressure and $$298 \mathrm{~K}$$ is $$\mathbf{- 1 6 3 . 1 5} \mathbf{~ k J}$$. Calculate Internal energy change for the decomposition of $$100 \mathrm{~g}$$ of Nitrous oxide gas under the same conditions of temperature and pressure.
In neutral medium $$\mathrm{KMnO}_4$$ oxidises $$\mathrm{MnSO}_4$$ to _________
What would be the van't Hoff factor for a solution prepared by dissolving $$3.42 \mathrm{~g}$$ of $$\mathrm{CaCl}_2$$ in $$2500 \mathrm{~ml}$$ of water having an Osmotic pressure equal to $$0.75 \mathrm{~atm}$$. at $$27^{\circ} \mathrm{C}$$ ? Molar mass of $$\mathrm{CaCl}_2=111 \mathrm{~amu}$$.