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Chemical Equilibrium

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Equilibrium is a state in which there are no observable changes as time goes by.

  Chemical equilibrium is achieved when:

  1.) the rates of the forward and reverse reactions are equal and

  2.) the concentrations of the reactants and products remain constant

Physical Equilibrium

–Chemical Equilibrium

N2O4 (g) ↔ 2NO2 (g)

               N2O4 (g) ↔ 2NO2 (g)

The equilibrium concentrations for the reaction between carbon monoxide and molecular chlorine to form COCl2 (g) at 740C are [CO] = 0.012 M, [Cl2] = 0.054 M, and [COCl2] = 0.14 M.  Calculate the equilibrium constants Kc and Kp.

Consider the following equilibrium at 295 K:

The partial pressure of each gas is 0.265 atm. Calculate Kp and Kc for the reaction.

–Predict the direction in which a reaction mixture will proceed to reach equilibrium

–Calculate the concentration of reactants and products once equilibrium has been reached

                   H2 (g) + I2 (g) → 2HI (g)

The reaction quotient (Qc) is calculated by substituting the initial concentrations of the reactants and products into the equilibrium constant (Kc) expression.

IF

  Reactants  Products

  Initial (M):

  Change (M):

  Equilibrium (M):

–Concentration

–Pressure

–Volume

–Temperature

  Change  Shift in Equilibrium

Increase in [Products]  left

Decrease in [Products]  right

Increase in [Reactants]  right

Decrease in [Reactants]  left

FeSCN2+(aq) ↔ Fe3+(aq) + SCN-(aq)

a.) Solution at equilibrium

b.) Increase in SCN-(aq)

c.) Increase in Fe3+(aq)

d.) Increase in FeSCN2+(aq)

  PV = nRT

  P = (n/V)RT

  Change  Shift in Equilibrium

Increase in Pressure  Side with fewest moles

Decrease in Pressure  Side with most moles

Increase in Volume  Side with most moles

Decrease in Volume  Side with fewest moles

Change  Endo. Rx  Exo. Rx

Increase T  K decreases  K increases

Decrease T  K increases  K decreases

Consider: N2O4(g) ↔ 2NO2(g)

The forward reaction absorbs heat; endothermic

  heat + N2O4(g) ↔ 2NO2(g)

So the reverse reaction releases heat; exothermic

  2NO2(g) ↔ N2O4(g) + heat

Changes in temperature??

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