The vapor pressure of water at 100 C is 101 KNm, because water boils under these conditions. The vapor pressure of water decreases approximately linearly with decreasing temperature at a rate of 3.1 kNimc. Calculate the boiling temperature of water at an altitude of 3000 m, where the amospheric pressure is 69 KN'm absolute. 8.
The vapor pressure of water at 100 C is 101 KNm, because water boils under these conditions. The vapor pressure of water decreases approximately linearly with decreasing temperature at a rate of 3.1 kNimc. Calculate the boiling temperature of water at an altitude of 3000 m, where the amospheric pressure is 69 KN'm absolute. 8.
Chapter2: Loads On Structures
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![8.
The vapor pressure of water at 100°C is 101 kNm*, because water boils under these conditions. The vapor
pressure of water decreases approximately linearly with decreasing temperature at a rate of 3.1 kNimC.
Calculate the boiling temperature of water at an altitude of 3000 m. where the atmospheric pressure is 69
kN/m² absolute.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8b7770d4-3d45-422e-8a91-5ac22509a6fa%2F02bae698-6478-4e2d-b2ad-e777ba1f9ed5%2Fvds7kb_processed.jpeg&w=3840&q=75)
Transcribed Image Text:8.
The vapor pressure of water at 100°C is 101 kNm*, because water boils under these conditions. The vapor
pressure of water decreases approximately linearly with decreasing temperature at a rate of 3.1 kNimC.
Calculate the boiling temperature of water at an altitude of 3000 m. where the atmospheric pressure is 69
kN/m² absolute.
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