Consider the equilibrium system described by the chemical reaction below. For this reaction, Kc = 2.4 × 103 at a particular temperature. If the equilibrium concentrations of H,0 and H, are 0.11 M and 0.019 M, respectively, determine the concentration of O, at equilibrium.. 2 H,O(g) = 2 H,(g) + O,(g)

Chemistry: The Molecular Science
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Chapter12: Chemical Equilibrium
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Consider the equilibrium system described by the chemical reaction below. For
this reaction, Kc = 2.4 × 103 at a particular temperature. If the equilibrium
concentrations of H,0 and H, are 0.11 M and 0.019 M, respectively, determine
the concentration of O, at equilibrium...
2
2 H,O(9) = 2 H,(9) + O,(g)
PREV
1
2
[O,leq
M
5 RESET
0.014
0.080
1.4 x 105
2.4 x 103
0.28
120
II
Transcribed Image Text:Consider the equilibrium system described by the chemical reaction below. For this reaction, Kc = 2.4 × 103 at a particular temperature. If the equilibrium concentrations of H,0 and H, are 0.11 M and 0.019 M, respectively, determine the concentration of O, at equilibrium... 2 2 H,O(9) = 2 H,(9) + O,(g) PREV 1 2 [O,leq M 5 RESET 0.014 0.080 1.4 x 105 2.4 x 103 0.28 120 II
Consider the equilibrium system described by the chemical reaction below. For
this reaction, Kc = 2.4 x 103 at a particular temperature. If the equilibrium
concentrations of H,0 and H, are 0.11 M and 0.019 M, respectively, determine
the concentration of O, at equilibrium..
2
2 H,O(g) = 2 H,(g) + 0,(g)
2
NEXT >
If [x] represents the equilibrium concentration of O, set up the equilibrium expression for Kc to
solve for the concentration. Do not combine or simplify terms..
2'
K. =
= 2.4 x 103
5 RESET
[О.11]
[0.019]
2[0.11]
2[0.019]
[0.11]?
[0.019]?
[x]
[x]?
[2x]
[2x]?
Transcribed Image Text:Consider the equilibrium system described by the chemical reaction below. For this reaction, Kc = 2.4 x 103 at a particular temperature. If the equilibrium concentrations of H,0 and H, are 0.11 M and 0.019 M, respectively, determine the concentration of O, at equilibrium.. 2 2 H,O(g) = 2 H,(g) + 0,(g) 2 NEXT > If [x] represents the equilibrium concentration of O, set up the equilibrium expression for Kc to solve for the concentration. Do not combine or simplify terms.. 2' K. = = 2.4 x 103 5 RESET [О.11] [0.019] 2[0.11] 2[0.019] [0.11]? [0.019]? [x] [x]? [2x] [2x]?
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