Water Capillary Tube Formula at Trisha Kevin blog

Water Capillary Tube Formula. Calculate the radius of a capillary tube if water climbs up to a height of 12.5 cm within it, supposing the angle of contact between the glass and the. When the lower end of a narrow capillary tube is immersed in a liquid, the liquid inside the tube rises a little above the level of the liquid outside. If is then very simple to calculate how far the liquid rises in terms of the surface tension, the angle of contact and the inside radius of the tube. The height of liquid in a tube due to capillarity can be calculated. Application of newton’s second law. Important points regarding capillarity action. H = 2 σ cosθ / (ρ g r) (1) where. Capillary action is the resultant of intermolecular attraction between the molecules of water and the adhesive force in between the walls of the capillary and the liquid. The height to which a liquid will rise in a capillary tube is determined by several factors as shown in the following equation:

11.8 Cohesion and Adhesion in Liquids Surface Tension and Capillary
from pressbooks.online.ucf.edu

Important points regarding capillarity action. The height to which a liquid will rise in a capillary tube is determined by several factors as shown in the following equation: Calculate the radius of a capillary tube if water climbs up to a height of 12.5 cm within it, supposing the angle of contact between the glass and the. The height of liquid in a tube due to capillarity can be calculated. H = 2 σ cosθ / (ρ g r) (1) where. Capillary action is the resultant of intermolecular attraction between the molecules of water and the adhesive force in between the walls of the capillary and the liquid. When the lower end of a narrow capillary tube is immersed in a liquid, the liquid inside the tube rises a little above the level of the liquid outside. Application of newton’s second law. If is then very simple to calculate how far the liquid rises in terms of the surface tension, the angle of contact and the inside radius of the tube.

11.8 Cohesion and Adhesion in Liquids Surface Tension and Capillary

Water Capillary Tube Formula When the lower end of a narrow capillary tube is immersed in a liquid, the liquid inside the tube rises a little above the level of the liquid outside. Calculate the radius of a capillary tube if water climbs up to a height of 12.5 cm within it, supposing the angle of contact between the glass and the. The height to which a liquid will rise in a capillary tube is determined by several factors as shown in the following equation: Important points regarding capillarity action. H = 2 σ cosθ / (ρ g r) (1) where. When the lower end of a narrow capillary tube is immersed in a liquid, the liquid inside the tube rises a little above the level of the liquid outside. If is then very simple to calculate how far the liquid rises in terms of the surface tension, the angle of contact and the inside radius of the tube. Application of newton’s second law. The height of liquid in a tube due to capillarity can be calculated. Capillary action is the resultant of intermolecular attraction between the molecules of water and the adhesive force in between the walls of the capillary and the liquid.

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