A capillary tube is immersed vertically in a water container. Knowing that water starts to evaporate when the pressure drops below 4 kPa, determine the maximum capillary rise and tube diameter for this maximum-rise case. Take the contact angle at the inner wall of the tube to be 6° and the surface tension to be 1.00 N/m. The maximum capillary rise is The tube diameter for the maximum rise is m. um.
A capillary tube is immersed vertically in a water container. Knowing that water starts to evaporate when the pressure drops below 4 kPa, determine the maximum capillary rise and tube diameter for this maximum-rise case. Take the contact angle at the inner wall of the tube to be 6° and the surface tension to be 1.00 N/m. The maximum capillary rise is The tube diameter for the maximum rise is m. um.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Transcribed Image Text:A capillary tube is immersed vertically in a water container. Knowing that water starts to evaporate when the pressure drops
below 4 kPa, determine the maximum capillary rise and tube diameter for this maximum-rise case. Take the contact angle at
the inner wall of the tube to be 6° and the surface tension to be 1.00 N/m.
The maximum capillary rise is
The tube diameter for the maximum rise is
m.
μm.
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