The equilibrium constant is 0.0900 at 25°C for the reaction H2₂O(g) + Cl₂O(g) → 2 HOCI(g) For which of the following sets of conditions is the system at equilibrium? For those that are not at equilibrium, in which direction will the system shift? a. A 1.0-L flask contains 3.0 mole of HOCI, 0.30 mole of Cl₂O, and 0.30 mole of H₂O. b. A 2.0-L flask contains 0.084 mole of HOCI, 0.080 mole of Cl₂O, and 0.98 mole of H₂O. c. A 3.0-L flask contains 0.25 mole of HOCI, 0.0010 mole of Cl₂O, and 0.42 mole of H₂O. Submit A Ⓒ ✓ At equilibrium Shifts to the left Shifts to the right tire Group 9 more group attempts remaining

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The equilibrium constant is 0.0900 at 25°C for the reaction
H₂O(g) + Cl₂O(g) ⇒ 2 HOCI(g)
For which of the following sets of conditions is the system at equilibrium? For those that are not at equilibrium, in which
direction will the system shift?
a. A 1.0-L flask contains 3.0 mole of
HOCI, 0.30 mole of
Cl₂O, and 0.30 mole of
H₂O.
↑
b. A 2.0-L flask contains 0.084 mole of
HOCI, 0.080 mole of
Cl₂O, and 0.98 mole of
H₂O.
Submit A
↑
c. A 3.0-L flask contains 0.25 mole of
HOCI, 0.0010 mole of
Cl₂O, and 0.42 mole of
H₂O.
At equilibrium
Shifts to the left
Shifts to the right tire Group
9 more group attempts remaining
Transcribed Image Text:The equilibrium constant is 0.0900 at 25°C for the reaction H₂O(g) + Cl₂O(g) ⇒ 2 HOCI(g) For which of the following sets of conditions is the system at equilibrium? For those that are not at equilibrium, in which direction will the system shift? a. A 1.0-L flask contains 3.0 mole of HOCI, 0.30 mole of Cl₂O, and 0.30 mole of H₂O. ↑ b. A 2.0-L flask contains 0.084 mole of HOCI, 0.080 mole of Cl₂O, and 0.98 mole of H₂O. Submit A ↑ c. A 3.0-L flask contains 0.25 mole of HOCI, 0.0010 mole of Cl₂O, and 0.42 mole of H₂O. At equilibrium Shifts to the left Shifts to the right tire Group 9 more group attempts remaining
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