ISCo400)(0.800)= X-0.800 X= 2.95M-CN Eg 4. Calculating Equilibrium Concentrations At a certain temperature, Keq 1.50 for %3D CO +H 20 9 + H CO 2(g) 2(g) (g) Initially 0.60 M H2 and 0.60 M CO2 are placed into a sealed container. Calculate the concentration of each substance at equilibrium. Step 1: Write the Keq expression: Ex-0.8007 18= Co.800]?[0.40 [co] CHa] Step 2: Take inventory and calculate concentrations: 0.800 [Hz]initial = 0.60M %3D [CO2]initial = ().60M %3D 76

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Eg4
UISCO400)0.800)?.= X-0.800
X= 2.95M- [N
Eg 4. Calculating Equilibrium Concentrations
At a certain temperature, Keq = 1.50 for
%3D
CO
+ H
+ H ,0
(g)
2(g)
2(g)
CO
Initially 0.60 M H2 and 0.60 M CO2 are placed into a sealed container. Calculate the
concentration of each substance at equilibrium.
Step 1: Write the Keq expression:
Ex-0.8007
18=
Co.800] [0.40
[co] CHa]
Step 2: Take inventory and calculate concentrations:
0.800
[Hz]initial = 0.60M
5u.608
%3D
[CO2]initial = ().60M
%3D
76
Transcribed Image Text:UISCO400)0.800)?.= X-0.800 X= 2.95M- [N Eg 4. Calculating Equilibrium Concentrations At a certain temperature, Keq = 1.50 for %3D CO + H + H ,0 (g) 2(g) 2(g) CO Initially 0.60 M H2 and 0.60 M CO2 are placed into a sealed container. Calculate the concentration of each substance at equilibrium. Step 1: Write the Keq expression: Ex-0.8007 18= Co.800] [0.40 [co] CHa] Step 2: Take inventory and calculate concentrations: 0.800 [Hz]initial = 0.60M 5u.608 %3D [CO2]initial = ().60M %3D 76
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