An evacuated glass vessel weighs when empty, when filled with a liquid of density and 50.5 g when filled with an ideal gas at at . Determine the molar mass or the gas.
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The average speed at (in kelvin) and the most probable speed at (in kelvin) of gas is . Calculate the values of and .
Two flasks of equal volume connected by a narrow tube (of negligible volume) at 27ºC and contain 0.70 mole of at 0.5 atm. One of the flasks is then immersed into a hot bath, kept at 127ºC, while the other remains at 27ºC. Calculate the final pressure.
(B). Each flask initially contains 0.35 mole of
Let ‘x’ moles of hydrogen gas be diffused from flask II to flask I
No. of moles of in flask I = (0.35 + x)
No. of moles of in flask II = (0.35 – x)
If the new pressure is P, then
In flask I, PV = (0.35 + x) × R × 300
In flask II, PV = (0.35 – x) × R × 400 x = 0.05
If volume of each flask is ‘V’ litre V = 17.241 L
So, P × 17.241 = 0.30 × 0.0821 × 400P = 0.5714 atm
A certain sample of gas has a volume of 0.2 litre measured at 1 atm pressure and 0. At the same pressure but at
273, its volume will be:
1)
when temp became twice, vol will become twice ( Boyle's law)
A certain hydrate has the formula . A quantity of 54.2 g of the compound is heated in an oven to drive off the water. If the water vapour generated exerts a pressure of 24.8 atm in a 2.0 L container at 120, calculate x.
PV = nRT , n = moles of water vapour
wt of = 54-27.6 = 26.5
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1. |
0.22 |
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2. |
1.53 |
A mixture of Ne and Ar at 250 K has a total K.E.=3 kJ in a closed vessel, the total mass if Ne and Ar is 30 g. Find mass % of Ne in a gaseous mixture at 250 K.
4.
Let x be the mass of Ne and y be the mass of Ar
x + y = 30 ...(i)
The molar mass of Ar = 40 g
The molar mass of Ne = 20 g
Moles of Neon + moles of Argon = Total noles
In two vessels of 1 litre each at the same temperature 1 g of and 1 g of are taken, for these:
K.E = 3/2 RT, so does not depend on moles
At what temperature will average speed of the molecules of the second member of the series be the same of at ?
If of a gas is then the molar mass of gas is:
The compressibility factor for nitrogen at 330 K and 800 atm is 1.90 and at 570 K and 200 atm is 1.10. A certain mass of occupies a volume of at 330 K and 800 atm. Calculate volume occupied by same quantity of gas at 570 K and 200 atm:
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