Consider the following equilibrium: N₂(g) + 3H₂(g) 2NH, (g) AG--34. KJ Now suppose a reaction vessel is filled with 2.68 atm of hydrogen (H₂) and 8.02 atm of ammonia (NH,) at 960. "C. Answer the following questions about this system: Under these conditions, will the pressure of H₂ tend to rise or fall? Is it possible to reverse this tendency by adding N₂? In other words, if you said the pressure of H₂ will tend to rise, can that be thanged to a tendency to far by adding N₂? Similarly, if you said the pressure of 1₂ will tend to fall, can that be changed to a tendency to rise by adding N₂ If you said the tendency can be reversed in the second question, calculate the minimum pressure of Ny needed to reverse it. Round your answer to 2 significant digits Orie O fall 00 yes no T al
Consider the following equilibrium: N₂(g) + 3H₂(g) 2NH, (g) AG--34. KJ Now suppose a reaction vessel is filled with 2.68 atm of hydrogen (H₂) and 8.02 atm of ammonia (NH,) at 960. "C. Answer the following questions about this system: Under these conditions, will the pressure of H₂ tend to rise or fall? Is it possible to reverse this tendency by adding N₂? In other words, if you said the pressure of H₂ will tend to rise, can that be thanged to a tendency to far by adding N₂? Similarly, if you said the pressure of 1₂ will tend to fall, can that be changed to a tendency to rise by adding N₂ If you said the tendency can be reversed in the second question, calculate the minimum pressure of Ny needed to reverse it. Round your answer to 2 significant digits Orie O fall 00 yes no T al
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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°Rise, Fall
° Yes, No
° atm
![Consider the following equilibrium:
N₂ (g)+3H₂ (g) 2NH, (g)
AG=-34. kJ
Now suppose a reaction vessel is filled with 2.68 atm of hydrogen (H₂) and 8.02 atm of ammonia (NH,) at 960. "C. Answer the following questions about this
system:
Under these conditions, will the pressure of H₂ tend to rise or fall?
Is it possible to reverse this tendency by adding N₂?
In other words, if you said the pressure of H₂ will tend to rise, can that be
thanged to a tendency to fall by adding N₂? Similarly, if you said the
pressure of H₂ will tend to fall, can that be changed to
by adding N₂?
a tendency to rise
If you said the tendency can be reversed in the second question, calculate
the minimum pressure of Ny needed to reverse it.
Round your answer to 2 significant digits.
Orise
O yes
O no
T
wi](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Feeb37bd8-ce90-4f67-9710-8ab0b147d518%2F6424fb4c-e57a-42ad-b4cb-50d45814bc3f%2F7f2t5v8_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Consider the following equilibrium:
N₂ (g)+3H₂ (g) 2NH, (g)
AG=-34. kJ
Now suppose a reaction vessel is filled with 2.68 atm of hydrogen (H₂) and 8.02 atm of ammonia (NH,) at 960. "C. Answer the following questions about this
system:
Under these conditions, will the pressure of H₂ tend to rise or fall?
Is it possible to reverse this tendency by adding N₂?
In other words, if you said the pressure of H₂ will tend to rise, can that be
thanged to a tendency to fall by adding N₂? Similarly, if you said the
pressure of H₂ will tend to fall, can that be changed to
by adding N₂?
a tendency to rise
If you said the tendency can be reversed in the second question, calculate
the minimum pressure of Ny needed to reverse it.
Round your answer to 2 significant digits.
Orise
O yes
O no
T
wi
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