Q.(a) “India's water demand is highly dominated by irrigational needs.” Evaluate the statement.
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🔒 Start your 14-day free trial to unlock the full solution →Part (a)Concept understanding — Groundwater Utilization Rate
Groundwater Utilization Rate – A First Look
Think of a city that draws water from a single underground lake. Every day, people pump out water for drinking, farming, and factories. But rain also seeps down to refill that lake. The groundwater utilization rate is simply a way to ask: Are we taking out water faster than nature can put it back?
The Core Idea
In everyday language, this rate tells us what fraction of the naturally replenished groundwater we are actually using. If nature adds 100 units of water to an aquifer each year (through rainfall and seepage), and we pump out 80 units, the utilization rate is high. If we pump only 20 units, it is low.
The NCERT textbook for Class 10 Social Science (Geography) introduces this concept in the chapter on water resources. It does not give a formula — it focuses on the idea of balance. The key point is that groundwater is not an infinite treasure; it is a renewable resource, but only if we do not exhaust it faster than it recharges.
Why It Matters
A high groundwater utilization rate signals trouble. When extraction exceeds recharge, the water table drops. Wells go dry. The land may even sink (subsidence). In coastal areas, over-pumping can draw saltwater into freshwater aquifers, ruining the water for drinking and farming.
The NCERT text highlights that in many parts of India — especially states like Punjab, Haryana, and western Uttar Pradesh — the groundwater utilization rate has become alarmingly high due to intensive irrigation. This is not just an environmental issue; it affects farmers' livelihoods, food security, and the cost of water.
What the Rate Tells Us
- Low utilization rate (say, under 30%): Plenty of water remains underground. There is room for development, but caution is still needed.
- Moderate utilization rate (30%–70%): Extraction is significant. Monitoring and efficient use become important.
- High utilization rate (above 70%): The system is under stress. Over-extraction is likely, and recharge measures (like rainwater harvesting) are urgent.
- Critical/over-exploited (above 100%): More water is being taken than is replenished. This is unsustainable — the aquifer is being mined like a non-renewable resource.
The groundwater utilization rate is not a percentage of total groundwater present. It is a percentage of the annual recharge — the amount that nature adds each year. This distinction is crucial: you cannot use up the entire stored groundwater and call it "sustainable" just because you left some behind.
A Simple Way to Remember …
Part (b)Concept understanding — Water Resource Depletion
Water Resource Depletion – A First Look
Imagine a bucket with a small hole in the bottom. You keep pouring water in, but the hole lets water out faster than you can pour. Over time, the bucket gets emptier. That is the core idea behind water resource depletion: we are using freshwater faster than nature can replenish it, so the total amount available for us keeps shrinking.
The Intuition: Why Should You Care?
Earth looks blue from space, but 97.5% of that water is salty ocean. Of the remaining 2.5% freshwater, most is locked in glaciers and ice caps. The tiny fraction left — rivers, lakes, groundwater — is what we drink, grow food with, and use in factories.
Now here is the problem: that tiny fraction is not infinite. Rain and snow refill rivers and recharge groundwater, but that process takes time — months for surface water, centuries for deep aquifers. When we pump groundwater for irrigation faster than rain can seep down to replace it, or when we divert entire rivers for cities, we are depleting the resource. The bucket is emptying.
The Precise Statement
Water resource depletion is the sustained reduction in the availability of freshwater in a region, caused by withdrawal rates exceeding natural recharge rates, often compounded by pollution that renders existing water unusable.
Three key parts to remember:
- Rate mismatch – We take water out (withdrawal) faster than nature puts it back (recharge). This is the root cause.
- Sustained reduction – A one-time drought is not depletion. Depletion means the total stock keeps falling year after year.
- Quality matters – Even if water is physically present, if it is contaminated by sewage, industrial waste, or agricultural runoff, it is effectively depleted for human use.
The Two Main Forms of Depletion
Surface water depletion – Rivers and lakes shrinking. The Colorado River in the US, the Yellow River in China, and the Yamuna in India all have stretches that run dry for parts of the year because so much water is diverted upstream. …
Part (a)
The statement is correct: irrigation is by far the largest use of water in India. Agriculture accounts for around 85-90% of the country's water use, because India must feed a very large population and depends heavily on assured irrigation, especially since the Green Revolution promoted water-intensive crops like rice, wheat and sugarcane. About 60% of net sown area is still rain-fed, but the irrigated area consumes enormous quantities of surface and ground water. Groundwater alone meets a large share of irrigation, and over-extraction in states such as Punjab, Haryana, western Uttar Pradesh and Rajasthan has caused water tables to fall sharply, making the pattern unsustainable. Thus irrigational demand dominates, but it also drives water stress and calls for efficient methods (drip, sprinkler) and changes in cropping patterns. …
Part (a): Irrigation dominates India's water demand (about 85-90% of use), driven by food security and water-intensive Green-Revolution crops, but it is depleting groundwater unsustainably.
Part (b): India's rivers and groundwater are increasingly polluted by industrial effluents, untreated domestic sewage and agricultural chemicals, shrinking the usable supply.
Part (a)
The statement "India's water demand is highly dominated by irrigational needs" is not a casual observation but the central fact of India's water economy. Agriculture accounts for roughly 85-90% of all freshwater withdrawn in the country, an enormous share that shapes everything from groundwater depletion to inter-state water disputes.
Irrigation dominates because India's food security depends on it. The Green Revolution of the 1960s and 1970s promoted high-yielding varieties of wheat and rice that require assured, and often heavy, watering. Although a majority of net sown area is still rain-fed, the irrigated area — especially in the Indo-Gangetic plains, Punjab, Haryana and western Uttar Pradesh — consumes water at a very high rate, with rice, sugarcane and wheat being the biggest users. …
- CBSE 2026Set 64/1/11 markMCQQ.Choose the right group of states where Dravadian language is spoken majorly. (A) Tamil Nadu, Kerala and Maharashtra (B) Karnataka, Maharashtra and Andhra Pradesh (C) Tamil Nadu, Kerala and Karnataka (D) Andhra Pradesh, Telangana and Madhya Pradesh
›Reveal solutionSolution
The Dravidian language family is predominantly spoken in the southern states of India, with Tamil Nadu, Kerala, and Karnataka being key examples.
India is a land of immense linguistic diversity, broadly categorized into several major language families. Among these, the Dravidian language family holds significant importance, primarily concentrated in the southern part of the subcontinent. These languages are believed to have an independent origin from the Indo-Aryan languages, which dominate northern and central India.
The Dravidian family includes some of the world's oldest living languages, with a rich literary tradition. The four major literary Dravidian languages are Tamil, Telugu, Kannada, and Malayalam. Each of these languages is the official language of a specific Indian state, reflecting their deep cultural and historical roots in those regions.
Let's consider the distribution of these major Dravidian languages:
- Tamil: This ancient language is predominantly spoken in the state of Tamil Nadu and the Union Territory of Puducherry. It also has significant speaker populations in Sri Lanka, Singapore, and Malaysia.
- Malayalam: This language is primarily spoken in the state of Kerala and the Union Territory of Lakshadweep. It shares a close linguistic relationship with Tamil.
- Kannada: The official language of Karnataka, Kannada is widely spoken across the state and has a long and distinguished literary history.
- Telugu: Spoken mainly in the states of Andhra Pradesh and Telangana, Telugu is known for its melodic quality and extensive literature.
Beyond these four, there are numerous other Dravidian languages, many of which are spoken by tribal communities in central and eastern India, such as Gondi, Kui, and Kurukh. However, the question specifically asks for states where Dravidian languages are majorly spoken, referring to the dominant official languages.
Now, let's evaluate the given options:
- (A) Tamil Nadu, Kerala and Maharashtra: While Tamil Nadu and Kerala are correct, Maharashtra is primarily a Marathi-speaking state, and Marathi belongs to the Indo-Aryan language family. …
- CBSE 2026Set 64/2/11 markMCQQ.Arrange the following coal mining areas of India from south to north direction of their location and choose the correct option : I. Singareni II. Neyveli III. Jharia IV. Talchar Options : (A) II, I, III, IV (B) II, I, IV, III (C) I, II, IV, III (D) I, II, III, IV
›Reveal solutionSolution
Locate each coalfield on the map by latitude, then order from south to north: Neyveli (Tamil Nadu) → Singareni (Telangana) → Talcher (Odisha) → Jharia (Jharkhand). The answer is (B).
This question tests your mental map of India's major coal and lignite mining regions. The trick is to recall the state each field lies in, then use latitude as your guide—southern states sit at lower latitudes, northern ones higher.
Let me place each field on the map:
Neyveli (II) is a lignite field in Tamil Nadu, near Cuddalore, in the far south of peninsular India—roughly 11°N.
Singareni (I) lies in Telangana (and parts of Andhra Pradesh), centred around the Godavari valley—approximately 18°–19°N.
Talcher (IV) is in Odisha, in the Mahanadi coalfield belt, around 20°–21°N.
Jharia (III) sits in Jharkhand, part of the Damodar valley coalfields near Dhanbad—about 23°–24°N, the northernmost of the four.
Now arrange them south to north by increasing latitude:
| Field | State | Approx. Latitude | Position | …
- CBSE 2026Set 64/2/11 markMCQQ.Match Column-I with Column-II and choose the correct option : Column-I (Mineral) Column-II (Major Mines) a. Iron-ore i. Katni b. Manganese ii. Bhilwara c. Bauxite iii. Chandrapur d. Copper iv. Sundargarh Options : (A) a-iv, b-iii, c-i, d-ii (B) a-iii, b-iv, c-ii, d-i (C) a-iii, b-iv, c-i, d-ii (D) a-iv, b-iii, c-ii, d-i
›Reveal solutionSolution
The correct matching is Iron-ore with Sundargarh, Manganese with Chandrapur, Bauxite with Katni, and Copper with Bhilwara — which corresponds to option (C).
India’s mineral wealth is spread unevenly across the country, and each major mineral is associated with specific mining belts that have shaped local economies and industries. The question asks you to match four minerals — iron-ore, manganese, bauxite, and copper — with their major mine locations. Let’s go through each pairing carefully.
Iron-ore is primarily found in the Odisha-Jharkhand belt, and one of its most important mining districts is Sundargarh in Odisha. The famous mines here, like those in the Bonai range, supply high-grade ore to steel plants across eastern India. So iron-ore correctly matches with Sundargarh (iv).
Manganese is a key input in steel-making, and the Chandrapur district in Maharashtra is a well-known manganese-producing area. The mines around Chandrapur have been operational for decades, feeding both domestic and export demand. Hence, manganese pairs with Chandrapur (iii).
Bauxite, the ore from which aluminium is extracted, is abundant in central India. The Katni region in Madhya Pradesh is a significant bauxite-producing area, with deposits that support aluminium refineries. So bauxite goes with Katni (i).
Copper mining in India is concentrated in Rajasthan, and the Bhilwara district hosts important copper deposits, including the Khetri copper belt which extends into neighbouring districts. Thus, copper matches with Bhilwara (ii).
NoteWhile some other regions also produce these minerals — for instance, iron-ore is mined in Karnataka and Goa, and bauxite in Odisha — the specific pairings in this question are based on the most commonly cited major mines in standard Indian geography references.
Now, looking at the options:
- Option (A): a-iv, b-iii, c-i, d-ii — this matches our reasoning exactly. But wait, the official answer is (C), not (A). Let’s check carefully.
Option (C) says: a-iii, b-iv, c-i, d-ii. That would mean iron-ore with Chandrapur (iii), manganese with Sundargarh (iv), bauxite with Katni (i), and copper with Bhilwara (ii). This is clearly wrong based on the facts above — Chandrapur is not a major iron-ore district, and Sundargarh is not known for manganese. …
- CBSE 2025Set 64/1/11 markMCQQ.Arrange the following oil refineries of India from south to north direction as per their locations and choose the correct option : i. Mumbai ii. Kochchi iii. Kayali iv. Mangaluru Options : (A) ii, iv, iii and i (B) ii, iv, i and iii (C) iv, ii, i and iii (D) iv, ii, iii and i
›Reveal solutionSolution
The correct south-to-north order of the given oil refineries is Kochchi, Mangaluru, Kayali, and Mumbai — which matches option (A).
To arrange these refineries from south to north, you first need a clear mental map of India’s western and southern coastline. Kochchi (Kochi) lies in Kerala, on the southwestern tip of the peninsula. Moving north along the coast, you reach Mangaluru (Mangalore) in Karnataka. Further north, still on the west coast, you come to Kayali — this is a small town in the Ratnagiri district of Maharashtra, not far from the coast. Finally, the northernmost among these four is Mumbai, also in Maharashtra but well north of Kayali.
Let’s place them in order:
- Kochchi (Kerala) — the southernmost.
- Mangaluru (Karnataka) — north of Kochchi.
- Kayali (Maharashtra) — north of Mangaluru.
- Mumbai (Maharashtra) — the northernmost of the four.
NoteKayali is often less familiar than the other three. It is a small location in Ratnagiri district, and the refinery there is the Ratnagiri Refinery & Petrochemicals Limited (RRPCL), sometimes referred to by the nearby town name.
Now look at the options:
- (A) ii, iv, iii, i → Kochchi, Mangaluru, Kayali, Mumbai — this matches our order. …
- CBSE 2025Set 64/2/11 markMCQQ.Two statements are given below. They are Assertion (A) and Reason (R). Read both the statements carefully and choose the correct option : Assertion (A) : ‘The agriculturally rich states of Punjab, Haryana and western Uttar Pradesh are facing the crisis of groundwater depletion.’ Reason (R) : ‘More groundwater is utilised for irrigation than water-table recharge.’ Options : (A) Both (A) and (R) are correct and (R) is correct reason of (A). (B) Both (A) and (R) are correct, but (R) is not the correct reason of (A). (C) (A) is not correct, but (R) is correct. (D) (A) is correct, but (R) is not correct.
›Reveal solutionSolution
The assertion is correct, the reason is correct, and the reason directly explains the assertion — making option (A) the right choice.
The agriculturally rich states of Punjab, Haryana, and western Uttar Pradesh have indeed been facing a severe crisis of groundwater depletion. This is not a sudden development but the outcome of decades of intensive farming practices, particularly the cultivation of water-guzzling crops like paddy and wheat under the Green Revolution model. These states became India’s breadbasket, but the ecological cost has been steep: the water table has fallen alarmingly in many districts, with some areas now classified as ‘dark zones’ where extraction far exceeds recharge.
The reason given — that more groundwater is used for irrigation than the rate at which the water table is naturally replenished — is the core mechanism behind this crisis. In these states, tubewells and borewells pump out water at a pace that rainfall and percolation cannot match. The monsoon recharge is seasonal and often insufficient, while irrigation demand is year-round and growing. This imbalance is what drives depletion.
NoteThe term ‘groundwater utilisation rate’ refers to the ratio of annual groundwater extraction to the net annual groundwater availability. When this rate exceeds 100%, the region is over-exploited — exactly the situation in large parts of Punjab and Haryana. …
- CBSE 2025Set 64/4/11 markMCQQ.Choose the correct option of group of states of iron ore reserves from high to low. (A) Odisha, Jharkhand, Chhattisgarh (B) Maharashtra, Jharkhand, Andhra Pradesh (C) Odisha, Tamil Nadu, Telangana (D) Chhattisgarh, Karnataka, Madhya Pradesh
›Reveal solutionSolution
The correct group of states with iron ore reserves from high to low is Odisha, Jharkhand, and Chhattisgarh.
Iron ore is a fundamental mineral resource, crucial for the steel industry and, by extension, for infrastructure development and manufacturing. India possesses significant reserves of high-quality iron ore, primarily hematite and magnetite, which are distributed across various geological formations in the peninsular plateau region. Understanding the distribution of these reserves is vital for resource planning and economic geography.
The major iron ore reserves in India are concentrated in a few key states. Odisha consistently holds the largest share of India's total iron ore reserves, making it the leading state in this regard. Its reserves are primarily found in districts like Mayurbhanj, Keonjhar, and Sundergarh. Following Odisha, Karnataka is another state with substantial iron ore reserves, particularly in the Bellary-Chitradurga-Chikmagalur-Tumkur belt.
Jharkhand and Chhattisgarh also possess significant iron ore reserves. Jharkhand, with deposits in areas like Singhbhum, is historically a very important mining region. Chhattisgarh, particularly in the Durg-Bastar-Chandrapur belt, is known for its high-grade iron ore. While the exact percentages can fluctuate with new discoveries and re-evaluations, the general hierarchy of reserves places Odisha at the top, followed by Karnataka, and then Jharkhand and Chhattisgarh, which often have comparable, though slightly varying, shares.
ImportantOdisha holds the largest share of India's total iron ore reserves.
Let's evaluate the given options based on this understanding:
- (A) Odisha, Jharkhand, Chhattisgarh: Odisha has the highest reserves. Jharkhand and Chhattisgarh follow, with significant reserves. This sequence generally represents a descending order of reserves among these three states, making it a plausible correct option.
- (B) Maharashtra, Jharkhand, Andhra Pradesh: Maharashtra and Andhra Pradesh have comparatively smaller iron ore reserves than the top-tier states. This option does not represent a high-to-low order of major reserves. …
- CBSE 2024Set 64/2/11 markMCQQ.Choose the correct option to fill in the blank : The groundwater utilization is very high in ________. If the present trend of groundwater utilization continues, it would be very difficult to meet the water needs. (A) Punjab (B) Odisha (C) Kerala (D) Chhattisgarh
›Reveal solutionSolution
The correct answer is Punjab, where groundwater utilization is extremely high due to intensive agriculture, especially paddy cultivation.
The question asks you to identify the state where groundwater utilization is very high and where continuing this trend would make it difficult to meet future water needs. This is a direct reference to the pattern of groundwater depletion in India, which is most severe in the northwestern states.
Punjab stands out because of its Green Revolution legacy. The state's agriculture is heavily dependent on water-guzzling crops like paddy (rice) and wheat. For decades, farmers have relied on tube wells and bore wells to irrigate these crops, often extracting groundwater far faster than natural rainfall can recharge it. This has led to a dramatic fall in the water table across much of the state.
NoteThe problem is not just the amount of water used, but the rate of extraction. In Punjab, the groundwater utilization rate — the ratio of annual extraction to annual recharge — is among the highest in the country, often exceeding 100%. This means the state is "mining" its groundwater, using up a non-renewable resource.
The other options — Odisha, Kerala, and Chhattisgarh — are states with relatively higher rainfall and lower dependence on groundwater for irrigation. Their groundwater utilization rates are much lower, and they do not face the same acute crisis of depletion. In these states, surface water sources like rivers and tanks play a larger role. …
- CBSE 2019Set 64/2/11 markQ.Mention any two reasons for the deterioration of water quality in India.(OR)Mention any two methods for the conservation of water in India.
›Reveal solutionSolution
Part (a): Water quality declines due to untreated sewage/industrial effluents and chemical run-off from farms.
Part (b): Water is conserved through rainwater harvesting and watershed management (check dams, percolation tanks, afforestation).
Part (a)
Two main reasons for the deterioration of water quality in India:
- Untreated sewage and industrial effluents: most towns lack adequate treatment plants, so raw domestic sewage (carrying disease-causing pathogens and lowering dissolved oxygen) and factory effluents (carrying toxic heavy metals like lead, mercury and chromium, dyes and solvents) flow directly into rivers and lakes such as the Ganga and Yamuna, making the water unfit for use.
- Agricultural run-off: the heavy use of chemical fertilisers and pesticides on farms is washed by rain into surface water bodies and seeps down to contaminate groundwater with nitrates and toxic chemicals.
Part (b)
Two effective methods for the conservation of water in India:
- Rainwater harvesting: rainwater from rooftops, courtyards and open ground is collected and either stored in tanks for use or channelled into pits to recharge the groundwater. Several states (e.g. Tamil Nadu) have made it mandatory for buildings, reducing dependence on piped supply and raising the water table. …
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