/ m diameter closed cylinder 2.7 m. high is completely filled with glycerin SG is 1.65 under the pressure of 230.25 kPa at the The steel plates which form the cylinder are 16 mm thick and can withstand allowable tensile stress of 82300 kPa. hpute the maximum pressure at the bottom of the tank to resist hoop tension if it is rotated about its vertical axis. 594.18 kPa 549.18 kPa 459.81 kPa lone of These 495.81 kPa

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter8: Centroids And Distributed Loads
Section: Chapter Questions
Problem 8.141RP: The thin-walled cylindrical can with a spherical dimple weighs 0.2 lb. Determine the force P...
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A 1.7 m diameter closed cylinder 2.7 m. high is completely filled with glycerin SG is 1.65 under the pressure of 230.25 kPa at the
top. The steel plates which form the cylinder are 16 mm thick and can withstand allowable tensile stress of 82300 kPa.
Compute the maximum pressure at the bottom of the tank to resist hoop tension if it is rotated about its vertical axis.
01594.18 kPa
01549.18 kPa
01459.81 kPa
ONone of These
O1495.81 kPa
Transcribed Image Text:A 1.7 m diameter closed cylinder 2.7 m. high is completely filled with glycerin SG is 1.65 under the pressure of 230.25 kPa at the top. The steel plates which form the cylinder are 16 mm thick and can withstand allowable tensile stress of 82300 kPa. Compute the maximum pressure at the bottom of the tank to resist hoop tension if it is rotated about its vertical axis. 01594.18 kPa 01549.18 kPa 01459.81 kPa ONone of These O1495.81 kPa
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