A. | \(212 ~g ~\text{of}~Na_2CO_3 (s) \text{[molar mass}=106 ~g]\) |
B. | \(~248 g ~\text{of}~ {Na}_2 \mathrm{O}({s}) [\text{molar mass} =62 \mathrm{~g} ]\) |
C. | \(240 g ~\text{of} ~NaOH (s)~ [\text{molar mass} =40 \mathrm{~g} \) |
D. | \( 12 g~ \text{of}~ \mathrm{H}_2(\mathrm{~g})[ \text{molar mass} =2 \mathrm{~g}].\) |
E. | \( 220 g~ \text{of} ~\mathrm{CO}_2(\mathrm{~g})[\text{ molar mass }=44 \mathrm{~g}]\) |
1. | 14 g of \(N_2\) | 2. | 18 g of \(H_2O\) |
3. | 16 g of CO | 4. | 28 g of \(N_2\) |
Match List-I with List-II:
List-I (Quantities) |
List-II (Corresponding Values) |
||
(a) | 4.48 litres of O2 at STP | (i) | 0.2 mole |
(b) | 12.022 × 1022 molecules of H2O | (ii) | 12.044 × 1023 molecules |
(c) | 96 g of O2 | (iii) | 6.4 g |
(d) | 88 g of CO2 | (iv) | 67.2 litres at STP |
(a) | (b) | (c) | (d) | |
1. | (i) | (iii) | (iv) | (ii) |
2. | (iii) | (i) | (iv) | (ii) |
3. | (iv) | (i) | (ii) | (iii) |
4. | (iii) | (i) | (ii) | (iv) |
The maximum number of atoms is present in which of the following -
1. | 1 g of Mg(s) | 2. | 1 g of O2 (g) |
3. | 1 g of Li(s) | 4. | 1 g of Ag(s) |
One mole of carbon atom weights 12 g, the number of atoms in it is equal to:
(Mass of carbon – 12 is )
1.
2.
3.
4.
If Avogadro number \(N_{A}\), is changed from \(6 . 022 \times \left(10\right)^{23}\)\(\text{mol}^{- 1}\) to \(6 . 022 \times \left(10\right)^{20} ~\text{mol}^{- 1}\) this would change the:
1. | definition of mass in units of grams. |
2. | mass of one mole of carbon. |
3. | coefficient of chemical species in a balanced equation. |
4. | ratio of elements in a compound. |