The equilibrium constant, K, for the following reaction is 10.5 at 350 К. 2CH2Cl2(g) CH4(g) + CC14(g) An equilibrium mixture of the three gases in a 1.00 L flask at 350 K contains 5.15x10~² M CH2CI2, 0.167 M CH4 and 0.167 M CCI4. What will be the concentrations of the three gases once equilibrium has been reestablished, if 2.66×102 mol of CH2C12(g) is added to the flask? [CH,Cl,] = M [CH4] M [CC4] M %3D DOD

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The equilibrium constant, K, for the following reaction is 10.5 at 350
K.
2CH2C12(g) C
CH4(g) + CC14(g)
An equilibrium mixture of the three gases in a 1.00 L flask at 350 K
contains 5.15x10-2 M CH2C12, 0.167 M CH4 and 0.167 M CC14.
What will be the concentrations of the three gases once equilibrium
has been reestablished, if 2.66×10-² mol of CH2C12(g) is added to
the flask?
[CH,Cl,]:
M
[CH4]
M
[CC14]
M
I| || ||
Transcribed Image Text:The equilibrium constant, K, for the following reaction is 10.5 at 350 K. 2CH2C12(g) C CH4(g) + CC14(g) An equilibrium mixture of the three gases in a 1.00 L flask at 350 K contains 5.15x10-2 M CH2C12, 0.167 M CH4 and 0.167 M CC14. What will be the concentrations of the three gases once equilibrium has been reestablished, if 2.66×10-² mol of CH2C12(g) is added to the flask? [CH,Cl,]: M [CH4] M [CC14] M I| || ||
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