A Question about Chemical Equilibrium

In summary, we have a reversible reaction where N2O4 dissociates into 2NO2. The initial number of moles of N2O4 is represented as 'a' and at equilibrium, the number of moles decreases by 'x' while the number of moles of NO2 increases by '2x'. This method is valid for all reversible reactions, regardless of the stoichiometric coefficients of the reactants and products. The value of x can be calculated using the quadratic formula and can be used to find the concentrations of N2O4 and NO2 at equilibrium.
  • #1
vijayramakrishnan
90
0
say we have a reaction:

N2O4 <====> 2NO2


for this reaction,if initial number of moles of N2O4 is 'a' can we write

t = 0 a -
at equilbrium a-x 2x

similarly can we do the same for pressure i.e.
if initial pressure is p,then can we say

t=0 p -
at equilbrium p-y 2y

if yes why? and is x=y,i.e is the number of moles x dissociated equal to decrease in pressure of reactant?
and is this method valid for all reversible reaction irrespective of the stoichiometric coefficient of reactants and products

please help.
 
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  • #2
Physics Forums - Equilibrium N2O4(g) <=> 2NO2(g)

------------------- N2O4(g) ---- <=> --- 2NO2(g)
Ci: ------------------ a ------------------------ 0 ---
∆C:---------------- -x ---------------------- +2x ---
Ceq: ------------- a - x -------------------- 2x ---

Kc = [NO2]2/[N2O4] = (2x)2/(a – x) = 4x2/(a – x) => Kc(a – x) = 4x2 => Kc·a - Kc·x = 4x2

4x2 + Kc·x + (-Kc·a) = 0

x = [-b ± (b2 – 4ac)1/2]/2a

a = 4, b = Kc , c = -Kc·a

substitute into quadratic; solve for x …

[N2O4] = a – x

[NO22] = 2x
 

1. What is chemical equilibrium?

Chemical equilibrium is a state in which the forward and reverse reactions of a chemical reaction occur at equal rates, resulting in no net change in the concentrations of reactants and products. This means that the ratio of products to reactants remains constant.

2. How is chemical equilibrium achieved?

Chemical equilibrium is achieved when the rate of the forward reaction is equal to the rate of the reverse reaction. This can be achieved by altering the temperature, pressure, or concentrations of reactants and products.

3. What factors affect chemical equilibrium?

The factors that affect chemical equilibrium include temperature, pressure, and concentrations of reactants and products. Changes in any of these factors can shift the equilibrium in either the forward or reverse direction.

4. How does Le Chatelier's principle relate to chemical equilibrium?

Le Chatelier's principle states that when a system at equilibrium is subjected to a stress, it will shift in the direction that minimizes the effect of that stress. In the context of chemical equilibrium, this means that when a change is made to the system, the equilibrium will shift to counteract that change.

5. Can chemical equilibrium be disturbed?

Yes, chemical equilibrium can be disturbed by changes in temperature, pressure, or concentrations of reactants and products. These changes will cause the equilibrium to shift in order to maintain a constant ratio of products to reactants.

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