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A simple of thliqid H(2)O at 18.0 g is i...

A simple of thliqid `H_(2)O` at 18.0 g is inlected into an evacuated 7.6 L flask maintained at `27.0^(@)C`. If vapour pressure of `H_(0)O` at `27.0^(@)C` is 24.63 mm Hg, what wight percentage of the water will be vaproueied when the ssystem comes to equilibrium? Assume water vapours behaves as an ideal gas. The volume occupied by the liquid water is negligible compared to the volume of the container:

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A sample of the liquid H_(2)O at 18.0 g is injected into an evacuated 7.6 L flask maintained at 27.0^(@)C . If vapour pressure of H_(2)O at 27.0^(@)C is 24.63 mm Hg, what weight percentage of the water will be vaporised when the system comes to equilibrium? Assume water vapors behaves as an ideal gas. The volume occupied by the liquid water is negligible compared to the volume of the container:

A simple of thliqid H_(2)O at 18.0 g is inlected into an evacuated 7.6 L flask maintained at 27.0^(@)C . If vapour pressure of H_(0)O at 27.0^(@)C is 24.63 mm Hg, what wight of the water will be vaproueied when the ssystem comes to equilibrium? Assume water vapours behaves as an ideal gas. The volume occupied by the liquid water is negligible compared to the volume of the container:

A sample of liquid H_2O of mass 18.0 g is injected into an evacuated 7.6 L flask maintained at 27^@C. If vapour pressure of H_(2)O at 27^@C is 24.63 mm Hg, what weight percentage of the water will be vapourised when the system comes to equilibrium? Assume water vapours behaves as an ideal gas. The volume occupied by the liquid water is negligible compared to the volume of the container:

A .189 g sample of liquid H_(2)O is injected into a 5.00L flask at 25^(@)C . What will be present in the falsk when equilibrium is established? (Vapour pressure of H_(2)O at 25^(@)C =23.8mm Hg)

1.00 g of water is introduced into a 5.00 L evacuated flask at 50^@C . {:("Vapour","Pressure at " 50^@C),(H_2O,92.5 mmHg):} What mass of water is present as liquid when equilibrium is established ?

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The vapour pressure of mercury is 0.002 mm Hg at 27^(@)C . K_(c) for the process Hg(l)hArrHg(g) is :