The standard heat of combustion of Al is -837.8 kJ mol-1 at which of the following releases 250 kcal of heat ?
1. The reaction of 0.624 mol of Al
2. The formation of 0.624 mol of Al2O3
3. The reaction of 0.312 mol of Al
4. The formation of 0.150 mol of Al2O3
Following reaction occurs at :
1. -45.65 kJ
2. -28.53 kJ
3. -22.82 kJ
4. -57.06 kJ
The bond energies of, C-H, H-H and C=C are 198, 98, 103 and145 kcal respectively. The enthalpy change of the reaction is:
1. 48 kcal
2. 96 kcal
3. -40 kcal
4. -152 kcal
The enthalpies of formation of CO2(g) and CO(g) at 298 K are in the ratio 2.56 : 1. For the reaction,
1. -150.6 kJ mol-1
2. -113.78 kJ mol-1
3. -130.2 kJ mol-1
4. -141.8 kJ mol-1
The enthalpies of the following reactions are shown alongwith.
Calculate the O-H bond energies for the hydroxyl radical.
1. 223.18 kJ mol-1
2. 423.38 kJ mol-1
3. 513.28 kJ mol-1
4. 113.38 kJ mol-1
4.8 g of C(diamond) on complete combustion evolves 1584 kJ of heat. The standard heat of formation gaseous carbon is 725 kJ/mol. The energy required for the process
(i)
(ii) are
1. 725, 727
2. 727, 725
3. 725, 723
4. None of these
The reaction is endothermic. What can be concluded about the average energy per bond in ?
1. The average energy per bond in is greater than that in
2. The average energy per bond in is less than that in
3. The average energy per bond in is equal to that is
4. Number conclusion can be drawn about the average bond energies from this information done
The amount of heat required to raise the temperature of 1 mole diatomic gas by at constant pressure is 60 cal. The amount of heat which goes as internal energy of the gas is nearly
1. 60 cal
2. 30 cal
3. 42.6 cal
4. 49.8 cal
An ideal gas is taken through the cycle as shown in figure, if net heat supplied to the gas in the cycle is 5 J, the work done by the gas in the process is
1. -5 J
2. -10 J
3. -15 J
4. -20 J
The maximum work (in kJ ) that can be derived from complete combustion of 1 mol of CO at 298 K and 1 atm is
[standard enthalpy of combustion of CO=-283.0 kJ ; standard molar entropies at 298 K: , ]
1. - 257
2. 227
3. 257
4. 127