Problem 4: from the figure, calculate, (a.) maximum normal stress in the Horton sphere diameter 60 – ft. and wall thickness of 1.13 in. with welded joints by a gas at pressure of 75 psi (Ib per square inch), (b.) the force transmitted by the internal pressure to a 10 – in. length of the vertical meridian joint of the shell.
Problem 4: from the figure, calculate, (a.) maximum normal stress in the Horton sphere diameter 60 – ft. and wall thickness of 1.13 in. with welded joints by a gas at pressure of 75 psi (Ib per square inch), (b.) the force transmitted by the internal pressure to a 10 – in. length of the vertical meridian joint of the shell.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Provide complete solution with FBD and explanation.
![Problem 4: from the figure, calculate, (a.) maximum normal stress in the Horton sphere
diameter 60 – ft. and wall thickness of 1.13 in. with welded joints by a gas at pressure of 75
psi (Ib per square inch), (b.) the force transmitted by the internal pressure to a 10 – in.
length of the vertical meridian joint of the shell.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F5c32c28f-2e1d-496b-b7fa-3650dcdd0d10%2Fdbed8157-23f6-402b-8fd3-707bbee4137b%2Frc40bv5_processed.png&w=3840&q=75)
Transcribed Image Text:Problem 4: from the figure, calculate, (a.) maximum normal stress in the Horton sphere
diameter 60 – ft. and wall thickness of 1.13 in. with welded joints by a gas at pressure of 75
psi (Ib per square inch), (b.) the force transmitted by the internal pressure to a 10 – in.
length of the vertical meridian joint of the shell.
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