X(g) + Y2(g) 2XY(g) Ke 3.0 A mbture of Xg(9). Y2(g), and XY (9) is placed in a previously evacuated, rigid container and allowed to reach equilibrium at a constant temperature, as shown above. Which of the following sets of initial concentrations would lead to the formation of more product as the system moves toward equilibrium? [Xlinitial [Y,linitial [XYinitial 0.40 M 0.40 M 0.20 M [Y,linitial [XY initial initio 0.30 M 0.30 M 0.90 M [X,ntial [Y,Jinitial XYinitial 0.15 M 0.15 M 0.30 M [X,] mitial [Y,linitial XYinitial 0.10 M 0.10 M 0.20 M

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X(9) + Y2(g) P2XY(g) K.-3.0
Ambxture of Xg(G) Ya(9), and XY (G) Is placed in a previously evacuated, rigid container and allowed to reach equilibrium at a constant temperature, as shown
above. Which of the following sets of initial concentrations would lead to the formatlon of more product as the system moves toward equilibrium?
[X,linitial
[XY]initial
2linitial
0.40 M
0.40 M
0.20 M
[Xlinitial
[XY]mitial
initic
BI
0.30 M
0.30 M
0.90 M
X,initial
[Y,Jinitial
[XYmitial
C.
0.15 M
0.15 M
0.30 M
[X2linitial
XYmitial
lnitial
D.
0.10 M
0.10 M
0.20 M
Transcribed Image Text:X(9) + Y2(g) P2XY(g) K.-3.0 Ambxture of Xg(G) Ya(9), and XY (G) Is placed in a previously evacuated, rigid container and allowed to reach equilibrium at a constant temperature, as shown above. Which of the following sets of initial concentrations would lead to the formatlon of more product as the system moves toward equilibrium? [X,linitial [XY]initial 2linitial 0.40 M 0.40 M 0.20 M [Xlinitial [XY]mitial initic BI 0.30 M 0.30 M 0.90 M X,initial [Y,Jinitial [XYmitial C. 0.15 M 0.15 M 0.30 M [X2linitial XYmitial lnitial D. 0.10 M 0.10 M 0.20 M
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