4. A capillary tube of 1.2 mm diameter is immersed vertically in water exposed to the atmosphere. Determine how high water will rise in the tube. Take the contact angle at the inner wall of the tube to be 6º and the surface tension to be 1.00 N/m. Answer: 0.338 m
4. A capillary tube of 1.2 mm diameter is immersed vertically in water exposed to the atmosphere. Determine how high water will rise in the tube. Take the contact angle at the inner wall of the tube to be 6º and the surface tension to be 1.00 N/m. Answer: 0.338 m
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![4. A capillary tube of 1.2 mm diameter is immersed vertically
in water exposed to the atmosphere. Determine how high
water will rise in the tube. Take the contact angle at the inner
wall of the tube to be 6º and the surface tension to be 1.00
N/m. Answer: 0.338 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc2a6209a-f883-4c3f-874f-ece416dbc83a%2F5ef1caf7-0bbd-41bc-9378-0f02623ef82d%2Fi8b4c7_processed.png&w=3840&q=75)
Transcribed Image Text:4. A capillary tube of 1.2 mm diameter is immersed vertically
in water exposed to the atmosphere. Determine how high
water will rise in the tube. Take the contact angle at the inner
wall of the tube to be 6º and the surface tension to be 1.00
N/m. Answer: 0.338 m
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