Mercury is poured into a U-tube as shown in Figure a. The left arm of the tube has cross-sectional area A₁ of 10.2 cm², and the right arm has a cross-sectional area A₂ of 4.60 cm². Three hundred grams of water are then poured into the right arm as shown in Figure b. A₁ A2 Water Az U U Mercury D (a) Determine the length of the water column in the right arm of the U-tube. 65.2 cm (b) Given that the density of mercury is 13.6 g/cm³, what distance h does the mercury rise in the left arm? 4.794 Your response differs from the correct answer by more than 100%. cm

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Mercury is poured into a U-tube as shown in Figure a. The left arm of the tube has cross-sectional area A₁ of 10.2 cm², and the right arm has a cross-sectional area A₂ of
4.60 cm². Three hundred grams of water are then poured into the right arm as shown in Figure b.
A₁
A2
Water
Az
U U
Mercury
D
(a) Determine the length of the water column in the right arm of the U-tube.
65.2
cm
(b) Given that the density of mercury is 13.6 g/cm³, what distance h does the mercury rise in the left arm?
4.794
Your response differs from the correct answer by more than 100%. cm
Transcribed Image Text:Mercury is poured into a U-tube as shown in Figure a. The left arm of the tube has cross-sectional area A₁ of 10.2 cm², and the right arm has a cross-sectional area A₂ of 4.60 cm². Three hundred grams of water are then poured into the right arm as shown in Figure b. A₁ A2 Water Az U U Mercury D (a) Determine the length of the water column in the right arm of the U-tube. 65.2 cm (b) Given that the density of mercury is 13.6 g/cm³, what distance h does the mercury rise in the left arm? 4.794 Your response differs from the correct answer by more than 100%. cm
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