Match List I with List II
| List I | List II | ||
| A. | Laspayre's Index number | I. | $\frac{∑p_1(q_0+q_1)}{∑p_0(q_0+q_1)}×100$ |
| B. | Fisher's Ideal INdex Number | II. | $\frac{∑p_1q_1}{∑p_0q_1}×100$ |
| C. | Paasche's Index Number | III. | $\frac{∑p_1q_0}{∑p_0q_0}×100$ |
| D. | Marshall-Edgeworth's Index Number | IV. | $\frac{∑p_1q_0}{∑p_0q_0}×\frac{∑p_1q_1}{∑p_0q_1}×100$ |
Choose the correct answer from the options given below :
Answer & explanation
Correct answer: option 2
The correct answer is Option (2) → A-III, B-IV, C-II, D-I
| List I | List II | ||
| A. | Laspayre's Index number | III. | $\frac{∑p_1q_0}{∑p_0q_0}×100$ |
| B. | Fisher's Ideal INdex Number | IV. | $\frac{∑p_1q_0}{∑p_0q_0}×\frac{∑p_1q_1}{∑p_0q_1}×100$ |
| C. | Paasche's Index Number | II. | $\frac{∑p_1q_1}{∑p_0q_1}×100$ |
| D. | Marshall-Edgeworth's Index Number | I. | $\frac{∑p_1(q_0+q_1)}{∑p_0(q_0+q_1)}×100$ |