5. Given: 2 Cl2(g) + 2 H₂O (g) 4 HCI (g) + O2(g) Ke or Keq=3.2 x 10-14 What is the concentration of HCI at equilibrium? Initially the chlorine and water are both 1.00 M. a] c] e] 6.6 x 104 M 6.6 x 10-6 M 2.6 x 103 M b] d] 0.99 M 8.9 x 108 M

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5. Given: 2 Cl2 (g) + 2 H₂O (g) 4 HCI (g) + O2(g)
What is the concentration of HCI at equilibrium? Initially
1.00 M.
a]
c]
e]
6.6 x 104 M
6.6 x 106 M
2.6 x 103 M
2012 +21₂0 54 HC 40₂
2X
14x
AX
b]
d]
Ke or Keq = 3.2 x 10-14
the chlorine and water are both
0.99 M
8.9 x 108 M
7. The decomposition of dichlorodifluoromethane at 300.0 K is a second order reaction.
The rate constant (k) for this reaction is 3.00 x 10-3 Litre/mole minute. Determine how
many hours it will take for the concentration to change from 0.850 M to 0.222 M.
a] 9.26 hrs
b] 18.5 hrs
c] 31.6 hrs
d] 1110 hrs e] not listed
11. What is the percent ionization of a 0.0100 M acetic acid solution? Acetic acid is
written as: CH3COOH or HAC or HC₂H3O2. The Ka of HAc is 1.75 x 10-5.
a] 3.26%
b] 4.18%
c] 4.52% d] 5.00%
e] not listed
Transcribed Image Text:5. Given: 2 Cl2 (g) + 2 H₂O (g) 4 HCI (g) + O2(g) What is the concentration of HCI at equilibrium? Initially 1.00 M. a] c] e] 6.6 x 104 M 6.6 x 106 M 2.6 x 103 M 2012 +21₂0 54 HC 40₂ 2X 14x AX b] d] Ke or Keq = 3.2 x 10-14 the chlorine and water are both 0.99 M 8.9 x 108 M 7. The decomposition of dichlorodifluoromethane at 300.0 K is a second order reaction. The rate constant (k) for this reaction is 3.00 x 10-3 Litre/mole minute. Determine how many hours it will take for the concentration to change from 0.850 M to 0.222 M. a] 9.26 hrs b] 18.5 hrs c] 31.6 hrs d] 1110 hrs e] not listed 11. What is the percent ionization of a 0.0100 M acetic acid solution? Acetic acid is written as: CH3COOH or HAC or HC₂H3O2. The Ka of HAc is 1.75 x 10-5. a] 3.26% b] 4.18% c] 4.52% d] 5.00% e] not listed
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