Consider the following reaction initially at equilibrium in a fixed container at 25 °C: P4(s) + 5 O2(g) P4010 (8) If Ne(g) is introduced into the vessel, keeping the volume constant, such that the total pressure of the vessel increases, the rate of the forward reaction will and the system will 11 = If the volume of the container is cut in half, the rate of the forward reaction will and the system will -= -- -- -- When the temperature is increased, the moles of O₂(g) increase. Is the forward reaction endothern 1 Save Submit an

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 12.45PAE: The following equilibrium is established in a closed container: C(s)+O2(g)CO2(g)H=393kJmol1 How does...
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Consider the following reaction initially at equilibrium in a fixed container at 25 °C:
P4(s) + 5 O₂(g) = P4O10(s)
If Ne(g) is introduced into the vessel, keeping the volume constant, such that the total pressure
of the vessel increases, the rate of the forward reaction will
and the system will
If the volume of the container is cut in half, the rate of the forward reaction will
and the system will
-
--
--
11
V
When the temperature is increased, the moles of O₂(g) increase. Is the forward reaction endotherm
Save
1.
Submit an
Transcribed Image Text:Consider the following reaction initially at equilibrium in a fixed container at 25 °C: P4(s) + 5 O₂(g) = P4O10(s) If Ne(g) is introduced into the vessel, keeping the volume constant, such that the total pressure of the vessel increases, the rate of the forward reaction will and the system will If the volume of the container is cut in half, the rate of the forward reaction will and the system will - -- -- 11 V When the temperature is increased, the moles of O₂(g) increase. Is the forward reaction endotherm Save 1. Submit an
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