Volume of CO2 obtained from complete decomposition of 20 g CaCO3 at STP is
2.24 litre
4.48 litre
20 litre
22.4 litre
B.
4.48 litre
CaO +
100 gm of CaCO3, on decomposition, gives 22.4 litre CO2 at STP
20 gm of CaCO3, on decomposition, will give
= = 4.48 litre CO2 at STP.
Nitrogen (N2) is in equilibrium state at T = 421K. The value of most probable speed Vmp is:
400 m/s
421 m/s
500 m/s
600 m/s
0.5 mole of each of H2 , SO2 and CH4 are kept in a container. A hole was made in the container . After 3h , the order of partial pressures in the container will be :
pSO2 > pH2 > pCH4
pSO2 > PCH4 > pH2
pH2 > pSO2 > pCH4
pH2 > pCH4 > pSO2
An evacuated glass vessel weighs 50 g when empty, 144.0 g when filled with a liquid of density 0.47 g mL-1 and 50.5 g when filled with an ideal gas at 760 mm Hg and 300 K. The molar mass of the ideal gas is :
[R = 0.0821 L atm K-1 mol-1]
61.575
130.98
123.75
47.87
The density of a gas A is thrice that of a gas B at the same temperature. The molecular weight of gas B is twice that of A. What will be the ratio of the pressures acting on B and A?
10 ml of liquid carbon disulphide (specific gravity 2.63) is burnt in oxygen. Find the volume of the resulting gases measured at STP.
23.25 L
22.26 L
23.50 L
20.08 L
A 1 L flask contains 32 g O2 gas at 27C. What mass of O2 must be released to reduce the pressure in the flask to 12.315 atm?
8 g
16 g
24 g
32 g
1 mol of O2 and x mol of Ne in a 10 L flask at constant temperature exert a pressure of 10 atm. If partial pressure of O2 is 2 atm , moles of Ne in the mixture is :
1
2
4
3
A 25 W bulb emits monochromatic yellow light of wavelength of 0.57 m. Calculate the rate of emission of quanta per second.
7.169 x 1019
4.569 x 1019
8.579 x 1019
9.662 x 1019