Tiny samples of aqueous solutions are sketched below, as if under a microscope so powerful that individual molecules could be seen. (The water molecules are not shown.) The two substances in each sample can interconvert. That is, each kind of molecule can turn into the other. The equilibrium constant K for each Interconversion equilibrium is shown below the sketch. Decide whether each solution is at equilibrium. 000 V K=9 K=- At equilibrium? At equilibrium? Oyes O no O yes O no K= K=3 At equilibrium? At equilibrium? O yes O no O yes O no

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Chapter13: Chemical Equilibrium
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Problem 3ALQ: For the reactionH2(g)+I2(g)2HI(g), consider two possibilities: (a) you mix 0.5 mole of each...
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Tiny samples of aqueous solutions are sketched below, as if under a microscope so powerful that individual molecules could be seen. (The water molecules are
not shown.)
The two substances in each sample can interconvert. That is, each kind of molecule can turn into the other. The equilibrium constant K for each interconversion
equilibrium is shown below the sketch.
Decide whether each solution is at equilibrium.
do
K-
K=9
At equilibrium?
At equilibrium?
O yes
O no
O yes
O no
2
K=
3
K=3
At equilibrium?
At equilibrium?
O yes
O no
O yes
O no
Explanation
Check
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Transcribed Image Text:Tiny samples of aqueous solutions are sketched below, as if under a microscope so powerful that individual molecules could be seen. (The water molecules are not shown.) The two substances in each sample can interconvert. That is, each kind of molecule can turn into the other. The equilibrium constant K for each interconversion equilibrium is shown below the sketch. Decide whether each solution is at equilibrium. do K- K=9 At equilibrium? At equilibrium? O yes O no O yes O no 2 K= 3 K=3 At equilibrium? At equilibrium? O yes O no O yes O no Explanation Check 2021 McGraw-Hill Education. All Rights Reserved. Terms of Use Privacy Accessibility
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