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Therefore, at higher altitudes, water reaches its vapor pressure (boiling point) at a lower temperature than at sea level. Therefore, the pressure at the dead sea would be greater than at mean sea level and the boiling point of water would be above 100c. The boiling point of water is 100 degrees c, but only at sea level, or in other words, at an atmospheric pressure of 1013.2 millibars.
The boiling point of pure water at sea level atmospheric pressure (1 atm or 101.325 kpa, 760mm hg) The dead sea is below mean sea level for the earth The boiling point of water decreases as elevation increases
At 4500 meters above sea level, the boiling point of water is around 85°c (185°f) due to the lower atmospheric pressure.
The boiling point of water decreases at higher altitudes because the atmospheric pressure is lower. Boiling point of water is inversely proportional to atmospheric pressure, which depends on altitude and weather Higher altitude, lower boiling point Water boils at 100 c at sea level
The boiling point of a liquid is defined as when the vapour pressure of that liquid is equal to the atmospheric pressure On mountains, the air pressure is lower than at sea level, so it follows. The boiling point of water decreases at higher altitudes because the atmospheric pressure is lower At lower pressure, molecules in the water can escape into the air more easily, requiring less.
In atmospheric pressure (ie at sea level), water boils at 100 degrees celsius
Kelvin temperature scale indicates a boiling water temperature of 373º.
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