The progress of the reaction A⇔nB with time is represented in the figure given below:
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One mole of N2 and 3 moles of PCl5 are placed in a 100 L vessel heated to 227°C. The equilibrium pressure is 2.05 atm. Assuming ideal behaviour calculate the degree of dissociation for PCl5 and Kp for the reaction, PCl5g ⇋ PCl3g + Cl2g
02
Jun
One mole of N2 and 3 moles of PCl5 are placed in a 100 L vessel heated to 227°C. The equilibrium pressure is 2.05 atm. Assuming ideal behaviour calculate the degree of dissociation for PCl5 and Kp for the reaction, PCl5g ⇋ PCl3g + Cl2g The progress of the reaction A⇔nB with time is represented [...]
The equilibrium constant Kp of the reaction, 2SO2(g) + O2(g) ⇋ 2SO3(g) is 900 atm at 800 K. A mixture containing SO3 and O2 having initial pressure of 1 and 2 atm respectively is heated at constant volume to equilibrate. Calculate the partial pressure of each gas at 800 K.
02
Jun
The equilibrium constant Kp of the reaction, 2SO2(g) + O2(g) ⇋ 2SO3(g) is 900 atm at 800 K. A mixture containing SO3 and O2 having initial pressure of 1 and 2 atm respectively is heated at constant volume to equilibrate. Calculate the partial pressure of each gas at 800 K. The equilibrium constant Kp of [...]
0.15 mole of CO taken in a 2.5L flask is maintained at 750K along with a catalyst so that the following reaction can take place: CO(g)+2H2(g)⇔CH3OH(g) Hydrogen is introduced until the total pressure of the system is 8.5 atm at equilibrium and 0.08 mole of methanol is formed. Calculate (i) Kp and Kc and (ii) the final pressure if the same amount of CO and H2 as before are used, but with no catalyst so that the reaction does not take place.
02
Jun
0.15 mole of CO taken in a 2.5L flask is maintained at 750K along with a catalyst so that the following reaction can take place: CO(g)+2H2(g)⇔CH3OH(g) Hydrogen is introduced until the total pressure of the system is 8.5 atm at equilibrium and 0.08 mole of methanol is formed. Calculate (i) Kp and Kc and (ii) [...]
The progress of the reaction A⇔nB with time is represented in the figure given below:
02
Jun
The progress of the reaction A⇔nB with time is represented in the figure given below: The progress of the reaction A⇔nB with time is represented in the figure given below: June 2, 2021 Category: Chapter 7 - Equilibrium , Chemistry , JEE Adv and Mains Chemistry 41 Years Solved Video Solutions 1979 - 2019 ,