A capillary tube of diameter 2 mm is placed in a reservoir of water, and a similar capillary tube is placed in a reservoir of methanol. If both tubes are made of clean glass and the water-glass and methanol-glass contact angles are both approximately equal to 0'. Surface tension of water is 0.073 N/m. Surface tension and density of methanol are 0.0225 N/m and 791 kg/m3, respectively. 8.0 Determine the rise of methanol. a.) 7.4 mm b.) 5.8 mm c.) 14.9 mm d.) 2.9 mm 9.0 Determine the rise of water. c.) 14.9 mm d.) 2.9 mm a.) 7.4 mm b.) 5.8 mm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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A capillary tube of diameter 2 mm is placed in a reservoir of water, and a similar
capillary tube is placed in a reservoir of methanol. If both tubes are made of clean
glass and the water-glass and methanol-glass contact angles are both
approximately equal to 0°. Surface tension of water is 0.073 N/m. Surface tension
and density of methanol are 0.0225 N/m and 791 kg/m3, respectively.
8.0 Determine the rise of methanol.
a.) 7.4 mm
b.) 5.8 mm
c.) 14.9 mm
d.) 2.9 mm
e.)
9.0 Determine the rise of water.
a.) 7.4 mm
b.) 5.8 mm
c.) 14.9 mm
d.) 2.9 mm
e.).
Transcribed Image Text:A capillary tube of diameter 2 mm is placed in a reservoir of water, and a similar capillary tube is placed in a reservoir of methanol. If both tubes are made of clean glass and the water-glass and methanol-glass contact angles are both approximately equal to 0°. Surface tension of water is 0.073 N/m. Surface tension and density of methanol are 0.0225 N/m and 791 kg/m3, respectively. 8.0 Determine the rise of methanol. a.) 7.4 mm b.) 5.8 mm c.) 14.9 mm d.) 2.9 mm e.) 9.0 Determine the rise of water. a.) 7.4 mm b.) 5.8 mm c.) 14.9 mm d.) 2.9 mm e.).
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