![SOLVED: 1 - Capillary tube diameter( 0.1 cm) is placed in a water cleaner for a distance of ( h cm): if the pressure at this distance is (10 cm Hg) and SOLVED: 1 - Capillary tube diameter( 0.1 cm) is placed in a water cleaner for a distance of ( h cm): if the pressure at this distance is (10 cm Hg) and](https://cdn.numerade.com/ask_images/31ad47f548cc485892b6e352488182ae.jpg)
SOLVED: 1 - Capillary tube diameter( 0.1 cm) is placed in a water cleaner for a distance of ( h cm): if the pressure at this distance is (10 cm Hg) and
![Calculate the height to which water will rise in a capillary tube of diameter 1xx10^(-3)m [given surface tension of water is 0.072Nm^(-1) angle of contact is 0^(@),g=9.8ms^(-2) and density of water =1000kgm^(-3)] Calculate the height to which water will rise in a capillary tube of diameter 1xx10^(-3)m [given surface tension of water is 0.072Nm^(-1) angle of contact is 0^(@),g=9.8ms^(-2) and density of water =1000kgm^(-3)]](https://d10lpgp6xz60nq.cloudfront.net/web-thumb/645851880_web.png)
Calculate the height to which water will rise in a capillary tube of diameter 1xx10^(-3)m [given surface tension of water is 0.072Nm^(-1) angle of contact is 0^(@),g=9.8ms^(-2) and density of water =1000kgm^(-3)]
![Calculate the rise of water inside a clean glass capillary tube of radius 0.1 mm , when immersed in water of surface tension 7 × 10^-2 N/m . The angle of contact Calculate the rise of water inside a clean glass capillary tube of radius 0.1 mm , when immersed in water of surface tension 7 × 10^-2 N/m . The angle of contact](https://haygot.s3.amazonaws.com/questions/1549849_1703287_ans_98788f84939d45878d8fa9dac1f158d3.jpg)
Calculate the rise of water inside a clean glass capillary tube of radius 0.1 mm , when immersed in water of surface tension 7 × 10^-2 N/m . The angle of contact
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Numerical: Capillary Rise or fall due to surface tension || Hindi & English || Properties of fluid - YouTube
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Derive the formula for rise of liquid in a capillary tube (Ascent formula) - CBSE Class 11 Physics - Learn CBSE Forum
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Physics 33 - Fluid Statics - Surface Tension (6 of 12): Capillary Action: Example 1 (Water) - YouTube
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