(a)
Interpretation:
Calculate the equilibrium constant of (Kc) given the statement of ammonia synthesis reactions.
Concept Introduction:
Equilibrium constant: Concentration of the products to the respective molar concentration of reactants it is called equilibrium constant. If the K value is less than one the reaction will move to the left side and the K values is higher (or) greater than one the reaction will move to the right side of reaction.
Equilibrium concentration: If Kc and the initial concentration for a reaction and calculate for both equilibrium concentration. The example using ICE chart and equilibrium constant and derived changes in respective reactants and products.
Haber process: This process under industrial method to producing ammonia from nitrogen and hydrogen, using (Fe) as good catalyst at highest temperature and pressure.
(b)
Interpretation:
Calculate the equilibrium constant of (Kc) given the statement of ammonia synthesis reactions.
Concept Introduction:
Chemical equilibrium: The equilibrium reaction Kp and Kc are the constant of gaseous mixture, the difference between the two constants is that Kc is defined by molar concentrations, whereas Kp is defined by the partial pressures of the gasses inside a closed system.
Equilibrium constant: Concentration of the products to the respective molar concentration of reactants it is called equilibrium constant. If the K value is less than one the reaction will move to the left side and the K values is higher (or) greater than one the reaction will move to the right side of reaction.
Equilibrium concentration: If Kc and the initial concentration for a reaction and calculate for both equilibrium concentration. The example using ICE chart and equilibrium constant and derived changes in respective reactants and products.
Haber process: This process under industrial method to producing ammonia from nitrogen and hydrogen, using (Fe) as good catalyst at highest temperature and pressure.

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