Consider the reaction of NH3 and I2 to give N2 and HI. 2NH3(g)+3I2(g)−⇀↽−N2(g)+6HI(g)K Using two or more of the given equations, determine the equilibrium constant, K , for the reaction of NH3 with I2. H2(g)+I2(g)−⇀↽−2HI(g)Ka=160 I2(g)−⇀↽−2I(g) Kb=2.1×10−3 N2(g)+3H2(g)−⇀↽−2NH3(g)Kc=3.6×10−2 H2(g)+Cl2(g)−⇀↽−2HCl(g)Kd=4.0×1018 K=
Consider the reaction of NH3 and I2 to give N2 and HI. 2NH3(g)+3I2(g)−⇀↽−N2(g)+6HI(g)K Using two or more of the given equations, determine the equilibrium constant, K , for the reaction of NH3 with I2. H2(g)+I2(g)−⇀↽−2HI(g)Ka=160 I2(g)−⇀↽−2I(g) Kb=2.1×10−3 N2(g)+3H2(g)−⇀↽−2NH3(g)Kc=3.6×10−2 H2(g)+Cl2(g)−⇀↽−2HCl(g)Kd=4.0×1018 K=
Chemistry: Principles and Practice
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Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
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Chapter14: Chemical Equilibrium
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Consider the reaction of NH3 and I2 to give N2 and HI.
2NH3(g)+3I2(g)−⇀↽−N2(g)+6HI(g)K
Using two or more of the given equations, determine the equilibrium constant, K , for the reaction of NH3 with I2.
H2(g)+I2(g)−⇀↽−2HI(g)Ka=160
I2(g)−⇀↽−2I(g) Kb=2.1×10−3
N2(g)+3H2(g)−⇀↽−2NH3(g)Kc=3.6×10−2
H2(g)+Cl2(g)−⇀↽−2HCl(g)Kd=4.0×1018
K=
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