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In which of the folowing reactions, the ...

In which of the folowing reactions, the system will shift towards the forward reaction by adding inert gas at constant pressure?

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In which of the following reactions, the system will shift towards the forward reaction by adding inert gas at constant pressure ? (a) PCl_(5)(g)hArr PCl_(3)(g)+Cl_(2)(g) (b) N_(2)(g)+3H_(2)(g)hArr 2NH_(3)(g) (c ) COCl_(2)(g)hArr CO(g)+Cl_(2)(g) (d) CO(g)+2H_(2)(g) hArr CH_(3)OH(g)

In the folowing reactions, the system will shift towards the forward reaction by adding inert gas at constant pressure? PCl5=PCl3+Cl2

In which of the following reactions equilibrium will shift towards right?

In which of the following reactions equilibrium will shift towards right?

For a general reaction, aA+bB hArr cC+dD , equilibrium constant K_c is given by K_c=([C]^c[D]^d)/([A]^a[B]^b) . However, when all reactants and products are gases the equilibrium constant is generally expressed in terms of partial pressure. K_p=(P_C^cxx P _D^d)/(P_A^axxP_B^b) In which of the following equilibrium will shift forward on addition of inert gas at constant pressure ?

Read the following paragraph and answer the questions given below, for a general reaction, aA+bB hArr cC+dD , equilibrium constant K_c is given by K_c=([C]^c[D]^d)/([A]^a[B]^b) However, when all reactants and products are gases the equilibrium constant is generally expressed in terms of partial pressure. K_p=(P_C^cxx P _D^d)/(P_A^axxP_B^b) In which of the following equilibrium will shift forward on addition of inert gas at constant pressure ?

In which of the following reactions, the forward reaction is favoured by increase of pressure ?

Which of the following is water -gas shift reaction ?

For the reaction : PCI_(5) (g) hArr PCI_(3) (g) + CI_(2) (g) Which of the following are favourable for the forward reaction ? Justify your answer. (i) Introduction of inert gas at constant volume (ii) Introduction of inert gas at constant pressure (iii) Increasing the volume of the container (iv) Introducing PCI_(5) at constant volume.