Consider the following reaction where K = 55.6 at 698 K: H2(g) + 2(g) 2HI(g) A reaction mixture was found to contain 2.61×102 moles of H2(g), 3.63×10-2 moles of 12(g) and 0.279 moles of HI(g), in a 1.00 Liter container. Indicate True (T) or False (F) for each of the following: 1. In order to reach equilibrium HI(g) must be produced. F 2. In order to reach equilibrium K must decrease. TV3. In order to reach equilibrium H₂ must be produced. T4. Qc is greater than Kr. F5. The reaction is at equilibrium. No further reaction will occur. The equilibrium constant, Kc, for the following reaction is 1.80 × 10-4 at 298 K. NH HS(s) NH3 (g) + H2S(9) Calculate the equilibrium concentration of H2S when 0.456 moles of NH4HS(s) are introduced into a 1.00 L vessel at 298 K. [H2S]=0.00897 M
Consider the following reaction where K = 55.6 at 698 K: H2(g) + 2(g) 2HI(g) A reaction mixture was found to contain 2.61×102 moles of H2(g), 3.63×10-2 moles of 12(g) and 0.279 moles of HI(g), in a 1.00 Liter container. Indicate True (T) or False (F) for each of the following: 1. In order to reach equilibrium HI(g) must be produced. F 2. In order to reach equilibrium K must decrease. TV3. In order to reach equilibrium H₂ must be produced. T4. Qc is greater than Kr. F5. The reaction is at equilibrium. No further reaction will occur. The equilibrium constant, Kc, for the following reaction is 1.80 × 10-4 at 298 K. NH HS(s) NH3 (g) + H2S(9) Calculate the equilibrium concentration of H2S when 0.456 moles of NH4HS(s) are introduced into a 1.00 L vessel at 298 K. [H2S]=0.00897 M
Chemistry: Principles and Reactions
8th Edition
ISBN:9781305079373
Author:William L. Masterton, Cecile N. Hurley
Publisher:William L. Masterton, Cecile N. Hurley
Chapter8: Thermochemistry
Section: Chapter Questions
Problem 90QAP: Consider a metal ion A2+ and its nitrate salt, In an experiment, 35.00 mL of a 0.217 M solution of...
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Transcribed Image Text:Consider the following reaction where K = 55.6 at 698 K:
H2(g) + 2(g) 2HI(g)
A reaction mixture was found to contain 2.61×102 moles of H2(g), 3.63×10-2 moles of
12(g) and 0.279 moles of HI(g), in a 1.00 Liter container.
Indicate True (T) or False (F) for each of the following:
1. In order to reach equilibrium HI(g) must be produced.
F 2. In order to reach equilibrium K must decrease.
TV3. In order to reach equilibrium H₂ must be produced.
T4. Qc is greater than Kr.
F5. The reaction is at equilibrium. No further reaction will occur.
![The equilibrium constant, Kc, for the following reaction is 1.80 × 10-4 at 298 K.
NH HS(s) NH3 (g) + H2S(9)
Calculate the equilibrium concentration of H2S when 0.456 moles of NH4HS(s) are
introduced into a 1.00 L vessel at 298 K.
[H2S]=0.00897
M](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd2c1d2e3-89ea-47de-ad2a-ad4f6e93129c%2F339de22f-79d6-40f9-a7cf-4da4a1d3fa11%2Fqnsgqk7_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The equilibrium constant, Kc, for the following reaction is 1.80 × 10-4 at 298 K.
NH HS(s) NH3 (g) + H2S(9)
Calculate the equilibrium concentration of H2S when 0.456 moles of NH4HS(s) are
introduced into a 1.00 L vessel at 298 K.
[H2S]=0.00897
M
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