MCQ
For ${N_2} + 3{H_2}$ $\rightleftharpoons$ $2N{H_3} + $ heat
- A${K_p} = {K_c}(RT)$
- B${K_p} = {K_c}(RT)$
- ✓${K_p} = {K_c}\,{(RT)^{ - 2}}$
- D${K_p} = {K_c}\,{(RT)^{ - 1}}$
$\Delta \operatorname{ng}=-2$
${K_p} = {K_c}\,{(RT)^{ - 2}}$
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$HSO_4^- = 1.2 \times 10^{- 2} ,H_2PO_4^- = 6.3 \times 10^{-8} ,$$HCO_3^- = 4.7 \times 10^{-11}$
$(A)$ $\sigma$ orbital has a total of two nodal planes.
$(B)$ $\sigma^*$ orbital has one node in the $x z$-plane containing the molecular axis.
$(C)$ $\pi$ orbital has one node in the plane which is perpendicular to the molecular axis and goes through the center of the molecule.
$(D)$ $\pi^*$ orbital has one node in the $x y$-plane containing the molecular axis.