The given reaction is N 2(g) + 3H 2(g) ⇌ 2NH 3(g) The partial pressures of each reactant and P total has to be calculated. Concept Introduction: Equilibrium constant using partial pressure: The equilibrium constant of partial pressure can be defined as the ratio of products and reactants concentration at equilibrium in terms of partial pressure. For a reaction, aA (g) + bB (g) ⇌ cC (g) + dD (g) The expression of K p can be given as K p = (P C ) c (P D ) d (P A ) a (P B ) b
The given reaction is N 2(g) + 3H 2(g) ⇌ 2NH 3(g) The partial pressures of each reactant and P total has to be calculated. Concept Introduction: Equilibrium constant using partial pressure: The equilibrium constant of partial pressure can be defined as the ratio of products and reactants concentration at equilibrium in terms of partial pressure. For a reaction, aA (g) + bB (g) ⇌ cC (g) + dD (g) The expression of K p can be given as K p = (P C ) c (P D ) d (P A ) a (P B ) b
The partial pressures of each reactant and Ptotal has to be calculated.
Concept Introduction:
Equilibrium constant using partial pressure:
The equilibrium constant of partial pressure can be defined as the ratio of products and reactants concentration at equilibrium in terms of partial pressure.
For a reaction,
aA(g)+ bB(g)⇌cC(g)+ dD(g)
The expression of Kp can be given as
Kp = (PC)c(PD)d(PA)a(PB)b
(b)
Interpretation Introduction
Interpretation:
The given reaction is
N2(g) + 3H2(g)⇌2NH3(g)
The partial pressure of each reactant and Ptotal under the given conditions assuming that partial pressure of NH3 is 50 atm has to be calculated. The suggestion is valid or not has to be given.
Concept Introduction:
Equilibrium constant using partial pressure:
The equilibrium constant of partial pressure can be defined as the ratio of products and reactants concentration at equilibrium in terms of partial pressure.
Provide the proper IUPAC name only for the following
compound. Dashes, commas, and spaces must be used
correctly, but do not use italics in Canvas.
The kinetics of a gas phase reaction of the form A → Products results in a rate constant of 0.00781 M/min. For this reaction, the initial concentration of A is 0.501 M. How many minutes will it take for the concentration of A to reach 0.144 M
What is the rate for the second order reaction A → Products when [A] = 0.256 M? (k = 0.761 M⁻¹s⁻¹)
Chapter 17 Solutions
CONNECT ACCESS CARD FOR CHEMISTRY: MOLECULAR NATURE OF MATTER AND CHANGE
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