Consider the equilibrium system described by the chemical reaction below, which has a value of Kp equal to 60.6 at a certain temperature. If an initial mixture of 0.20 atm of every species is allowed to react, what will the equilibrium partial pressure of NO be?. 2 NOBr(g) = 2 NO(g) + Br2(g)

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Consider the equilibrium system described by the chemical reaction below, which
has a value of Kp equal to 60.6 at a certain temperature. If an initial mixture of
0.20 atm of every species is allowed to react, what will the equilibrium partial
pressure of NO be?.
2 NOBr(g) =2 NO(g) + Br2(g)
1
2
3
NEXT
Set up the expression for Qp and then evaluate it to determine the direction of the reaction. Do
not combine or simplify terms.
5 RESET
(0)
(0.20)
(0.40)
(0.20)?
(0.40)?
(x)
(x)?
(2x)
(2x)?
0.20
0.40
0.040
0.020
II
Transcribed Image Text:Consider the equilibrium system described by the chemical reaction below, which has a value of Kp equal to 60.6 at a certain temperature. If an initial mixture of 0.20 atm of every species is allowed to react, what will the equilibrium partial pressure of NO be?. 2 NOBr(g) =2 NO(g) + Br2(g) 1 2 3 NEXT Set up the expression for Qp and then evaluate it to determine the direction of the reaction. Do not combine or simplify terms. 5 RESET (0) (0.20) (0.40) (0.20)? (0.40)? (x) (x)? (2x) (2x)? 0.20 0.40 0.040 0.020 II
Question 9 of 50
Consider the equilibrium system described by the chemical reaction below, which
has a value of Kp equal to 60.6 at a certain temperature. If an initial mixture of
0.20 atm of every species is allowed to react, what will the equilibrium partial
pressure of NO be?.
2 NOBr(g) = 2 NO(g) + Br2(g)
PREV
1
NEXT
>
Based on the given values and your value for Qp, set up ICE table in order to determine the
unknown.
2 NOBr(g)
2 NO(g)
Br (g)
+
Initial (atm)
Change (atm)
Equilibrium (atm)
5 RESET
0.20
0.40
-X
+x
-2x
+2x
0.20 - x
0.20 + x
0.20 - 2x
0.20 + 2x
0.40 - x
0.40 + x
0.40 - 2x
0.40 + 2x
1L
Transcribed Image Text:Question 9 of 50 Consider the equilibrium system described by the chemical reaction below, which has a value of Kp equal to 60.6 at a certain temperature. If an initial mixture of 0.20 atm of every species is allowed to react, what will the equilibrium partial pressure of NO be?. 2 NOBr(g) = 2 NO(g) + Br2(g) PREV 1 NEXT > Based on the given values and your value for Qp, set up ICE table in order to determine the unknown. 2 NOBr(g) 2 NO(g) Br (g) + Initial (atm) Change (atm) Equilibrium (atm) 5 RESET 0.20 0.40 -X +x -2x +2x 0.20 - x 0.20 + x 0.20 - 2x 0.20 + 2x 0.40 - x 0.40 + x 0.40 - 2x 0.40 + 2x 1L
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