Photo AI

a) WRITE: $$ K_c = \frac{[H_2]^2[I_2]}{[HI]^2} $$ CALC: Let x = number of moles of hydrogen at equilibrium 2HI ⇌ H2 + I2 Let x = molar conc - Leaving Cert Chemistry - Question 9 - 2021

Question icon

Question 9

a)-WRITE:--$$-K_c-=-\frac{[H_2]^2[I_2]}{[HI]^2}-$$---CALC:--Let-x-=-number-of-moles-of-hydrogen-at-equilibrium--2HI-⇌-H2-+-I2--Let-x-=-molar-conc-Leaving Cert Chemistry-Question 9-2021.png

a) WRITE: $$ K_c = \frac{[H_2]^2[I_2]}{[HI]^2} $$ CALC: Let x = number of moles of hydrogen at equilibrium 2HI ⇌ H2 + I2 Let x = molar conc. of hydrogen at equ... show full transcript

Worked Solution & Example Answer:a) WRITE: $$ K_c = \frac{[H_2]^2[I_2]}{[HI]^2} $$ CALC: Let x = number of moles of hydrogen at equilibrium 2HI ⇌ H2 + I2 Let x = molar conc - Leaving Cert Chemistry - Question 9 - 2021

Step 1

WRITE:

96%

114 rated

Answer

Kc=[H2]2[I2][HI]2K_c = \frac{[H_2]^2[I_2]}{[HI]^2}

Step 2

CALC:

99%

104 rated

Answer

Let xx = number of moles of hydrogen at equilibrium.

For the reaction:

2HIH2+I22HI \rightleftharpoons H_2 + I_2

Let xx = molar concentration of hydrogen at equilibrium, where the volume of the container is 12 liters.

  1. Start with 5 moles.
  2. At equilibrium: (5 - 2x) moles of HI.

Thus,

[HI]=(52x)12[HI] = \frac{(5 - 2x)}{12}

At equilibrium, we have:

For H2H_2: Equil=0.422z mol\text{Equil} = 0.42 - 2z \text{ mol}. The concentration can then be approximated by,

[H2]=0.440.45 mol L1[H_2] = 0.44 - 0.45 \text{ mol L}^{-1}

Step 3

EXPL:

96%

101 rated

Answer

Evidence of an equilibrium is observed when there are approximately equal amounts of both species present. According to Le Chatelier’s principle, if the concentration of one species is decreased, the equilibrium will shift forward (to the right) to compensate for that decrease in concentration.

Step 4

(i) pink

98%

120 rated

Answer

The system shifts backward (to the left) to decrease the concentration of H2O, resulting in a pink color.

Step 5

(ii) blue

97%

117 rated

Answer

The equilibrium shifts forward (to the right) to decrease the concentration of Cl-.

Step 6

(iii) blue

97%

121 rated

Answer

The reaction is endothermic, which implies that heat is absorbed. Therefore, cooling will always shift in the exothermic direction (heat producing). Thus, a backward (left) shift indicates that this is exothermic for this reaction.

Join the Leaving Cert students using SimpleStudy...

97% of Students

Report Improved Results

98% of Students

Recommend to friends

100,000+

Students Supported

1 Million+

Questions answered

;