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In Class 12 Economics, under National Income and Related Aggregates, students learn how the GDP Deflator measures the overall change in prices of goods and services produced within an economy. The topic explains its relationship with nominal GDP and real GDP, the role of a base year, and the formula: GDP Deflator = (Nominal GDP ÷ Real GDP) × 100. Students also interpret changes in the index to understand inflation and distinguish price effects from changes in production.
TOPIC PRACTICE
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Up to 25 questions from this page. Select your focus, then start.
25 questions
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Hard · Level 2View options
A comparable base-year price may not be available
Its current quantity cannot be known
It is always imported
Its price is always zero
Hard · Level 2View options
A quality adjustment should be made
The entire price rise should be treated as inflation
The good should be excluded from GDP
The price should be treated as zero
Hard · Level 2View options
110
115
120
125
Hard · Level 2View options
₹1,180 crore
₹1,240 crore
₹1,296 crore
₹1,350 crore
Hard · Level 2View options
₹1,100 crore
₹1,150 crore
₹1,200 crore
₹1,250 crore
Hard · Level 2View options
12 percent
15 percent
18 percent
20 percent
Hard · Level 2View options
10 percent
12 percent
15 percent
24 percent
Hard · Level 2View options
8 percent
9.26 percent
10 percent
26 percent
Hard · Level 2View options
6.25 percent fall
6 percent fall
6.67 percent rise
14 percent fall
Hard · Level 2View options
5.36 percent fall
6 percent fall
5.66 percent rise
18 percent rise
Hard · Level 2View options
40 percent
50 percent
60 percent
80 percent
Hard · Level 2View options
20 percent
25 percent
40 percent
80 percent
Hard · Level 2View options
It falls by 25 percent
It falls by 20 percent
It rises by 25 percent
It remains unchanged
Hard · Level 2View options
15 points and 10 percent
10 points and 15 percent
15 points and 15 percent
10 points and 10 percent
Hard · Level 2View options
125
130
137.5
140
Hard · Level 2View options
8 percent
10 percent
12.5 percent
37.5 percent
Hard · Level 2View options
80
100
120
125
Hard · Level 2View options
75
80
100
125
Hard · Level 2View options
Because their coverage and weights differ
Because both always have a zero base
Because both measure only imports
Because neither includes prices
Hard · Level 2View options
The direct effect on the GDP deflator will be limited
The deflator must double
Real GDP must become zero
The deflator and CPI must rise equally
Hard · Level 2View options
Because a new domestic capital good is part of final output
Because all machines are imported
Because capital goods are excluded from GDP
Because only consumer goods enter price indexes
Hard · Level 2View options
There will be no direct effect
The deflator must rise
The deflator must fall
The deflator will become zero
Hard · Level 2View options
Because it is based on the current production structure
Because it always uses a fixed basket
Because it measures only used goods
Because quantities have no importance
Hard · Level 2View options
Because its base-year price is unavailable
Because digital services are excluded from GDP
Because its current price is always zero
Because it is always imported
Hard · Level 2View options
Because the current production structure and new goods are not represented well
Because nominal GDP becomes zero
Because all prices become equal
Because imports become domestic output
Question 1HardLevel 2
Why may including a new technological good in the deflator be challenging?
Correct answer: A
The GDP deflator compares current nominal values with quantities priced at base-year prices. A technological good introduced after the base year has no directly observed price from that earlier period. Statistical agencies may need a comparable product, hedonic quality adjustment, or another estimation method. Hence A is correct; the good’s current quantity is not necessarily unknowable, and C and D are false.
If a good's price and quality both increase, what should be done for an accurate deflator?
Correct answer: A
A price increase can contain two components: pure inflation and payment for improved characteristics or quality. The GDP deflator should isolate the change in the price of a comparable unit, so statistical measurement requires a quality adjustment. Option A is correct. Treating the full increase as inflation overstates price growth, while excluding the good or assigning zero is unjustified.
If nominal GDP is ₹1,440 crore and real GDP is ₹1,200 crore, what will the GDP deflator be?
Correct answer: C
The GDP deflator is a price index calculated as (Nominal GDP ÷ Real GDP) × 100. Substituting the values gives (1,440 ÷ 1,200) × 100 = 1.2 × 100 = 120. Thus, option C is correct. A deflator of 120 also indicates that the overall price level is 20% above the base-year level; the other options do not follow from the stated ratio.
If real GDP is ₹960 crore and the GDP deflator is 135, what will nominal GDP be?
Correct answer: C
Starting with Deflator = (Nominal GDP ÷ Real GDP) × 100, rearrange to Nominal GDP = Real GDP × Deflator ÷ 100. Therefore, Nominal GDP = 960 × 135 ÷ 100 = 960 × 1.35 = ₹1,296 crore. Hence option C is correct. The other amounts do not apply the 1.35 price-level multiplier correctly to real GDP.
If nominal GDP is ₹1,530 crore and the GDP deflator is 127.5, what is real GDP?
Correct answer: C
Use Deflator = (Nominal GDP ÷ Real GDP) × 100 and rearrange: Real GDP = Nominal GDP × 100 ÷ Deflator. Thus, Real GDP = 1,530 × 100 ÷ 127.5 = 153,000 ÷ 127.5 = ₹1,200 crore. Therefore, option C is correct. The decimal deflator is handled as 127.5, not as 1.275 in this formula.
If the GDP deflator rises from 120 to 138, what is the inflation rate?
Correct answer: B
Inflation is the percentage increase relative to the initial price index. Calculate it as [(138 − 120) ÷ 120] × 100 = (18 ÷ 120) × 100 = 15%. Thus, option B is correct. The 18-point increase is not an 18% inflation rate, while 12% and 20% use an incorrect denominator or calculation.
If the deflator falls from 160 to 136, by what percentage does the price level decline?
Correct answer: C
The percentage decline must be measured against the original deflator. The fall is 160 − 136 = 24 index points. Percentage decline = (24 ÷ 160) × 100 = 15%. Therefore, option C is correct. The answer is not 24%, because 24 is the index-point fall; using the initial value as the denominator converts it into the correct percentage change.
If nominal GDP rises by 18 percent and real GDP rises by 8 percent, what is the approximate exact growth rate of the deflator?
Correct answer: B
Since the deflator equals nominal GDP divided by real GDP, use growth factors rather than simply subtracting rates. Deflator growth = [(1.18 ÷ 1.08) − 1] × 100 = 9.259..., or approximately 9.26%. Therefore, option B is correct. The 10% difference between growth rates is only an approximation and is not the exact rate requested.
If nominal GDP falls by 10 percent and real GDP falls by 4 percent, what is the approximate percentage change in the GDP deflator?
Correct answer: A
The GDP deflator equals nominal GDP divided by real GDP, multiplied by 100. After the changes, nominal GDP is 0.90 of its original value and real GDP is 0.96 of its original value. Thus the deflator factor is 0.90/0.96 = 0.9375, so it falls by 1 − 0.9375 = 0.0625, or 6.25%. Option A is therefore correct; option B is only a rough subtraction and ignores the ratio.
If real GDP rises by 12 percent but nominal GDP rises by only 6 percent, what is the approximate change in the GDP deflator?
Correct answer: A
The deflator is proportional to nominal GDP divided by real GDP. The new nominal value is 1.06 times the old value, while the new real value is 1.12 times the old value. Hence the deflator factor is 1.06/1.12 = 0.946428..., implying a fall of about 5.36%. Option A is correct. A direct subtraction of 12% − 6% gives 6%, but that is only an approximation and not the exact ratio-based result.
If nominal GDP doubles and real GDP rises by 25 percent, by what percentage will the GDP deflator rise?
Correct answer: C
The GDP deflator is nominal GDP divided by real GDP, with the same base factor in both periods. A doubling of nominal GDP gives a multiplier of 2, while a 25% increase in real GDP gives a multiplier of 1.25. The deflator multiplier is therefore 2/1.25 = 1.6. Its increase is 1.6 − 1 = 0.6, or 60%. Option C is correct; 80% would incorrectly use only the nominal change.
If real GDP falls by 20 percent while nominal GDP remains unchanged, by how much will the GDP deflator rise?
Correct answer: B
The GDP deflator equals nominal GDP divided by real GDP, multiplied by 100. With nominal GDP unchanged, let its original value be 1. A 20% fall makes real GDP 0.80 of its original value. The new deflator is therefore 1/0.80 = 1.25 times the old deflator, which is a 25% rise. Option B is correct. The 20% choice wrongly assumes that an equal percentage fall in the denominator creates an equal rise in the ratio.
If nominal GDP falls by 25 percent while real GDP remains unchanged, what happens to the GDP deflator?
Correct answer: A
Because the GDP deflator is nominal GDP divided by real GDP, holding real GDP constant makes the deflator move in exactly the same proportion as nominal GDP. A 25% fall in nominal GDP changes its multiplier to 0.75, while the real-GDP multiplier remains 1. Thus the deflator multiplier is 0.75/1 = 0.75, a 25% fall. Option A is correct; no denominator change occurs to offset the fall.
If the GDP deflator is 150 in one year and 165 in the next, what are the index-point rise and inflation rate respectively?
Correct answer: A
The index-point change is found by subtraction: 165 − 150 = 15 points. The inflation rate is the percentage change relative to the initial index, not the final index: (15/150) × 100 = 10%. Therefore option A is correct. Option C confuses the 15-point difference with a 15% rate, while options B and D calculate the point change incorrectly.
In an economy, nominal GDP rises from ₹2,000 crore to ₹2,310 crore and real GDP rises from ₹1,600 crore to ₹1,680 crore. What is the new-year GDP deflator?
Correct answer: C
For the new year, use the new nominal and real GDP values directly. The GDP deflator formula is (nominal GDP/real GDP) × 100. Substitution gives (2310/1680) × 100 = 1.375 × 100 = 137.5. Hence option C is correct. The older values can be used to find the previous deflator, but they are unnecessary for the requested new-year index and should not distract from the calculation.
If the initial GDP deflator is 125 and the final GDP deflator is 137.5, what is the inflation rate?
Correct answer: B
Inflation is the percentage increase in the price index relative to its initial value. The deflator rises by 137.5 − 125 = 12.5 index points. Dividing this increase by the initial deflator gives (12.5/125) × 100 = 10%. Therefore option B is correct. The value 12.5 is the index-point increase, not the inflation percentage, and 37.5 is simply the final-minus-unrelated-base error.
If nominal GDP is ₹2,250 crore and real GDP is 80 percent of nominal GDP, what is the GDP deflator?
Correct answer: D
Real GDP is 80% of nominal GDP, so the real-to-nominal ratio is 0.80. The GDP deflator is (nominal GDP/real GDP) × 100. Thus its value is (1/0.80) × 100 = 125. The rupee amount cancels because only the ratio matters. Option D is correct. A value of 80 would reverse the formula and calculate real GDP as a percentage of nominal GDP rather than the deflator.
If real GDP is 25 percent higher than nominal GDP, what is the GDP deflator?
Correct answer: B
If real GDP is 25% higher than nominal GDP, let nominal GDP be 1. Real GDP is then 1.25. Using the GDP deflator formula, (nominal GDP/real GDP) × 100, we get (1/1.25) × 100 = 80. Therefore option B is correct. The value 125 is the inverse relationship, real GDP as a percentage of nominal GDP, not the nominal-to-real deflator index.
Why can the GDP deflator and the Consumer Price Index show different inflation rates?
Correct answer: A
The GDP deflator measures prices of final goods and services produced domestically, with weights that reflect current domestic production. CPI measures the cost of a selected consumer basket, including relevant imported consumer goods, using its own weights. Since coverage and weights differ, their inflation rates can differ. Thus option A is correct; B, C, and D contradict the definitions.
If the price of imported petrol rises sharply while domestic output prices remain stable, which conclusion is most appropriate?
Correct answer: A
The GDP deflator covers prices of final goods and services produced within the domestic economy. Imported petrol is not domestic production, so its price is not directly included in the deflator’s domestic-output coverage. It may indirectly raise transport or production costs, but that effect is not automatic or necessarily large. Therefore option A is the most appropriate; the other statements are absolute and false.
Why can a rise in the price of a domestically produced capital machine affect the GDP deflator?
Correct answer: A
A newly produced machine purchased for investment is a final capital good, because it is not being bought for further processing in the same accounting period. Since it is produced domestically and forms part of gross fixed investment, its price contributes to nominal GDP and can influence the GDP deflator. Therefore option A is correct; B, C, and D incorrectly exclude domestic capital goods.
If only intermediate-good prices rise while final-good prices and value added remain unchanged, what will be the direct effect on the GDP deflator?
Correct answer: A
The GDP deflator compares the value of final domestic output at current prices with its value at base-year prices. Intermediate goods are not counted separately because doing so would double-count the value already embodied in final goods. If final-good prices and value added remain unchanged, a rise limited to intermediate prices has no direct effect on the deflator. Hence option A is correct.
Why can the weights of goods in the GDP deflator change over time?
Correct answer: A
The GDP deflator is an implicit price index calculated from nominal GDP and real GDP. Its relative weights are influenced by the quantities and composition of goods and services produced in the current period. As production shifts toward or away from particular products, their importance in the index changes. Therefore option A is correct; CPI’s fixed-basket idea makes option B unsuitable here.
Why may it be difficult to measure the price change of a new digital service that did not exist in the base year?
Correct answer: A
A price change normally requires a comparable price for the same or a suitably adjusted service in both the current and base periods. A newly introduced digital service has no observed base-year price, and quality changes may make simple comparison difficult. Statistical agencies may use an estimated comparable price or revise the base series. Thus option A is correct; the other statements make unsupported universal claims.
Why can using a very old base year make the GDP deflator less representative?
Correct answer: A
A base year supplies the price and production reference used to express real GDP and construct the deflator. Over time, consumers’ choices, technology, production shares, and available products change. If the base year is very old, important current goods may be missing and outdated goods may receive inappropriate importance. Consequently, the index may represent today’s price structure poorly. Option A is correct.
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