Consider the gas phase reaction: А (g) В (g) С (9) D (g) Experiment 1: Below is a pictorial representation of an initial mixture just after mixing at "time zero" (t0, left) and once the mixture has reached a state of equilibrium (teq, right). Initial at equilibrium Assume T= 298 K and V= 1.00 L (both are constant) All species are in the gas phase. Each “icon" represents 1 mol of a given species What is the equilibrium constant (Kc) of this reaction? Type your numeric answer and submit Let's imagine you monitor the concentrations of the different species in this container as a function of time. Which of the follow-- statements about the Q value of the system is correct? Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. a The Q value increases between to and teg- b The Q value is constant between to and teg: The Q value decreases between to and teq' d. There is not enough information to determine how the Q value changes as a function of time. Which of the diagram below best depicts how the concentration of every species is changing as it reaches equilibrium? Click or touch the big letter label corresponding to your choice. A or B C or D C or D A or B Time Time C or D C or D A or B A or B Time Time Targets placed: 0/3 Undo Delete selected Remove All You can place up to 3 targets [Conc] [Conc] [Conc] [Conc]

Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter12: Chemical Equilibrium
Section: Chapter Questions
Problem 12.40PAE: Because carbonic acid undergoes a second ionization, the student in Exercise 12.39 is concerned that...
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Consider the gas phase reaction:
А (g)
В (g)
С (9)
D (g)
Experiment 1: Below is a pictorial representation of an initial mixture just after mixing at "time zero" (t0,
left) and once the mixture has reached a state of equilibrium (teq, right).
Initial
at equilibrium
Assume T= 298 K and V= 1.00 L (both are constant)
All species are in the gas phase. Each “icon" represents 1 mol of a given species
Transcribed Image Text:Consider the gas phase reaction: А (g) В (g) С (9) D (g) Experiment 1: Below is a pictorial representation of an initial mixture just after mixing at "time zero" (t0, left) and once the mixture has reached a state of equilibrium (teq, right). Initial at equilibrium Assume T= 298 K and V= 1.00 L (both are constant) All species are in the gas phase. Each “icon" represents 1 mol of a given species
What is the equilibrium constant (Kc) of this reaction?
Type your numeric answer and submit
Let's imagine you monitor the concentrations of the different species in this container as a function of time. Which of the follow--
statements about the Q value of the system is correct?
Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer.
a
The Q value increases between to and teg-
b
The Q value is constant between
to
and
teg:
The Q value decreases between
to
and
teq'
d.
There is not enough information to determine how the Q value changes as a function of time.
Which of the diagram below best depicts how the concentration of every species is changing as it reaches equilibrium? Click or
touch the big letter label corresponding to your choice.
A or B
C or D
C or D
A or B
Time
Time
C or D
C or D
A or B
A or B
Time
Time
Targets placed: 0/3
Undo
Delete selected
Remove All
You can place up to 3 targets
[Conc]
[Conc]
[Conc]
[Conc]
Transcribed Image Text:What is the equilibrium constant (Kc) of this reaction? Type your numeric answer and submit Let's imagine you monitor the concentrations of the different species in this container as a function of time. Which of the follow-- statements about the Q value of the system is correct? Select an answer and submit. For keyboard navigation, use the up/down arrow keys to select an answer. a The Q value increases between to and teg- b The Q value is constant between to and teg: The Q value decreases between to and teq' d. There is not enough information to determine how the Q value changes as a function of time. Which of the diagram below best depicts how the concentration of every species is changing as it reaches equilibrium? Click or touch the big letter label corresponding to your choice. A or B C or D C or D A or B Time Time C or D C or D A or B A or B Time Time Targets placed: 0/3 Undo Delete selected Remove All You can place up to 3 targets [Conc] [Conc] [Conc] [Conc]
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