3.71 Two hemispheric shells are perfectly sealed together, and the internal pressure is reduced to 25% of atmospheric pressure. The inner radius is 10.5 cm, and the outer radius is 10.75 cm. The seal is located halfway between the inner and outer radius. If the atmospheric pressure is 101.3 kPa, what force is required to pull the shells apart?
3.71 Two hemispheric shells are perfectly sealed together, and the internal pressure is reduced to 25% of atmospheric pressure. The inner radius is 10.5 cm, and the outer radius is 10.75 cm. The seal is located halfway between the inner and outer radius. If the atmospheric pressure is 101.3 kPa, what force is required to pull the shells apart?
Chapter2: Loads On Structures
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![3.71 Two hemispheric shells are perfectly sealed together, and
the internal pressure is reduced to 25% of atmospheric pressure.
The inner radius is 10.5 cm, and the outer radius is 10.75 cm. The
seal is located halfway between the inner and outer radius. If the
atmospheric pressure is 101.3 kPa, what force is required to pull
the shells apart?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7aa3809b-69d6-4672-9efd-0d09f5b3fb3f%2Fc9403724-1248-4c7d-835f-5bb95c6aa48f%2Frw40l6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:3.71 Two hemispheric shells are perfectly sealed together, and
the internal pressure is reduced to 25% of atmospheric pressure.
The inner radius is 10.5 cm, and the outer radius is 10.75 cm. The
seal is located halfway between the inner and outer radius. If the
atmospheric pressure is 101.3 kPa, what force is required to pull
the shells apart?
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