For the reaction:
CO(g) + O2(g) CO2(g), Kp/Kc is:
(c) =1-1-1/2 = -1/2
... Kp =Kc(RT)-1/2
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For the reaction:
CO(g) + O2(g) CO2(g), Kp/Kc is:
(c) =1-1-1/2 = -1/2
... Kp =Kc(RT)-1/2
A weak acid, HA has a Ka of 1.00 x 10-5. If 0.100 mole of this acid is dissolved in one litre of water, the percentage of acid dissociated at equibrium is closest to
(b) HA H+ + A-
At equlibrium, [H+]=[A-]
Ka = =
[H+] = = = = x 1
= /0.1 =
% of acid dissociated = x 100 = 1.00%
If little heat is added to ice liquid equilibrium in a sealed container, then:
(d) Heat will be used to melt ice.
In the equilibrium,
2SO2(g) + O2 (g) 2SO3(g), the partial pressure of SO2, O2 and SO3 are 0.662, 0.101 and 0.331 atm respectively. What should be the partial pressure of oxygen so that the equilibrium concentration of SO2 and SO3 are equal.
(a) Kp = ==2.5
Now, Kp =
Then, = 1/Kp =1/0.25 = 0.4 atm
Ionisation constant of CH3COOH is 1.7 X 10-5 and concentration of H+ ions is 3.4 X 10-4.Then, find out initial concentration of CH3COOH molecules.
(d)
The formation of phosgene is represented as,
CO + Cl2 COCl2
The reaction is carried out in 500 mL flask. At equilibrium o.3 mole of phosgene, 0.1 mole of CO and 0.1 mole of Cl2 are present. The equilibrium constant of the reaction is:
(b) [CO] =0.1/0.5
[Cl2] =0.1/0.5
[COCl2] = 0.3/0.5
... Kc = = 15
The decreasing order of strength of the bases,
OH-, N, H-CC- and CH3-C is:
(a) CH3-CH3 is neutral or least acidic and thus, its conjugate base should be strongest.
For the reaction,
PCl5 (g) PCl3(g) +Cl2 (g)
The forward reaction at constant temperature is favored by:
(c) PCl5 (g) PCl3(g) +Cl2 (g)
Mole
At eq. (a-x) x x
Addition of inert gas at constant V has no effect on reactions having = 0 or 0. But addition of inert gas at constant P has an effect on reactions having 0, and no effect if =0. The given reaction has 0 and thus, only choice (c) is correct. Also, the effect may be drawn as: On addition of inert gas at constant P, volume increases. To have Kc constant, X must increase.
The reaction quotient (Q) for the reaction, is given by
The reaction will proceed towards the right side, if
(d) For the reaction,
Q(Quotient) =
At equilibrium Q is equal to Kc but for the progress of reaction towards right side, Q<Kc
In the dissociation of 2HI H2 + I2, the degree of dissociation will be influenced by the:
(c) An increase in temperature will change Kc. Addition of inert gas has no effect in n = 0. Also increase in pressure has no effect if n =0.
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