6. Find the capillary rise in the tube for a mercury-air-glass interface with 0 = 130° if the tube radius is 1.0 mm. c. -12.3 mm d. –5.0 mm a. 4.12 mm b. -6.33 mm 7. A 1-inch-diameter soap bubble has an internal pressure of 0.0045 lb/in? greater than that of the bubble of the outside atmosphere. Compute the surface tension of the soap-air interface. a. 0.00675 lb/ft b. 0.00123 lb/ft c. 0.00351 lb/ft d. 0.00127 lb/it

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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6. Find the capillary rise in the tube for a mercury-air-glass
interface with 0 = 130° if the tube radius is 1.0 mm.
c. -12.3 mm
d. –5.0 mm
a. 4.12 mm
b. -6.33 mm
7. A 1-inch-diameter soap bubble has an internal pressure of
0.0045 lb/in? greater than that of the bubble of the outside
atmosphere. Compute the surface tension of the soap-air
interface.
a. 0.00675 lb/ft
b. 0.00123 lb/ft
c. 0.00351 lb/ft
d. 0.00127 lb/it
Transcribed Image Text:6. Find the capillary rise in the tube for a mercury-air-glass interface with 0 = 130° if the tube radius is 1.0 mm. c. -12.3 mm d. –5.0 mm a. 4.12 mm b. -6.33 mm 7. A 1-inch-diameter soap bubble has an internal pressure of 0.0045 lb/in? greater than that of the bubble of the outside atmosphere. Compute the surface tension of the soap-air interface. a. 0.00675 lb/ft b. 0.00123 lb/ft c. 0.00351 lb/ft d. 0.00127 lb/it
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