Q.‘‘The non-conventional sources of energy in India will provide more sustained and environment friendly energy.’’ Examine the statement.
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Start your 14-day free trial to unlock the full solution →Concept understanding — Non Conventional Energy
Imagine you are sitting in a room and the lights go out. The first thing you check is whether the electricity bill was paid. But what if the problem is bigger — what if the coal that powers the thermal plant has run out, or the dam has no water? That is the worry behind the word conventional energy: sources that we have used for over a century, but which are limited and will eventually finish.
Now think of the sun that beats down on your terrace every afternoon, or the wind that blows across an open field. These are not going anywhere. They are always there, and they do not get used up. That is the core idea of non-conventional energy — energy from sources that are naturally replenished and will not run out on a human timescale.
What the NCERT textbook says
The NCERT Class 10 Geography textbook (Chapter 5: Minerals and Energy Resources) introduces this distinction clearly. It groups conventional sources as those that have been in common use for a long time — firewood, coal, petroleum, natural gas, and electricity from thermal or hydro power plants. These are either exhaustible (like coal and oil) or cause significant environmental harm.
Non-conventional sources, the textbook explains, are the newer, cleaner alternatives: solar energy, wind energy, tidal energy, geothermal energy, and nuclear energy. The key point is that most of these are renewable — they do not deplete with use. The textbook also mentions that these sources are generally environmentally friendly and have lower operational costs once set up, though the initial investment can be high.
The single most important idea to remember: Non-conventional energy sources are those that are renewable, cause less pollution, and are being developed as alternatives to the limited, polluting conventional sources. They are not a luxury — they are a necessity for a sustainable future.
Why does this matter for a commerce/humanities student?
You might think this is a science topic, but it affects every part of your life and future career.
- Economics: The cost of energy decides the price of everything you buy — from a packet of biscuits to an airline ticket. Non-conventional energy can reduce a country's dependence on imported oil, stabilise prices, and create new industries (solar panel manufacturing, wind turbine maintenance). This is a huge factor in national budgets and trade balances.
- Business: Companies today are judged on their environmental record. A business that uses solar power or buys green energy certificates can attract customers and investors who care about sustainability. This is not just ethics — it is a market reality.
- Policy and Law: Governments offer subsidies, tax breaks, and regulations to promote non-conventional energy. Understanding this helps you grasp why certain industries grow, why electricity tariffs change, and what "carbon credits" mean in international trade. …
Part (a): True — renewable, clean non-conventional energy gives India sustained, environment-friendly supply and cuts fossil-fuel dependence, despite intermittency and cost.
Part (b): True — minerals are finite and non-renewable, so conserving them by recycling, efficient use and substitutes is essential for India's continued development.
Non-conventional (renewable) energy sources include solar, wind, small-hydro, biomass, geothermal and tidal energy. The statement that they will provide more sustained and environment-friendly energy can be examined as follows.
- Sustained supply: unlike coal, oil and gas, which are finite and depleting, these sources are naturally replenished and effectively inexhaustible, giving long-term energy security. They also reduce India's heavy dependence on imported fossil fuels, insulating the economy from price shocks, and can be generated in a decentralized way near the point of use, cutting transmission losses.
- Environment friendly: solar, wind and hydro produce little or no greenhouse gases, so they help mitigate climate change; they release almost no sulphur dioxide, nitrogen oxides or particulates, reducing air pollution and respiratory disease; and they use little water compared with thermal plants.
- India's potential: abundant sunshine, a long coastline and windy uplands give India great scope, and government programmes have expanded renewable capacity rapidly.
- Balanced view: intermittency (sun and wind vary), high initial capital cost, land requirements and grid-integration challenges are real limitations, but they are being addressed by storage and smart-grid technology.
On balance the statement is valid — non-conventional energy does offer a more sustained and cleaner energy future for India.
Concept understanding — Abiotic Resource
Abiotic Resource – From Intuition to Precision
Imagine you are standing in a forest. Around you are trees, birds, deer, mushrooms, and insects — all living things. Now look past them. Feel the soil under your feet, the rock jutting out of the hillside, the water in a nearby stream, the air you are breathing, and the sunlight warming your skin. None of these are alive. Yet without them, the forest could not exist.
That is the core idea: abiotic resources are the non-living parts of nature that living things depend on.
The Intuition
The word abiotic comes from Greek: a- (without) + bios (life). So an abiotic resource is simply a resource that comes from the non-living world. It is not and never was alive. Think of:
- Water – rivers, lakes, groundwater, rain
- Air – the atmosphere, especially oxygen and carbon dioxide
- Soil – minerals, sand, clay, silt
- Minerals and rocks – iron ore, copper, limestone, gold
- Sunlight – solar energy
- Fossil fuels – coal, petroleum, natural gas (these come from once-living organisms, but they have been transformed by geological processes into non-living substances; they are still classified as abiotic resources because they are now inert, non-living materials)
Every time you drink water, breathe, or use a metal object, you are using an abiotic resource.
The Precise Statement
Abiotic Resource: Any naturally occurring, non-living substance or energy form that is useful to humans (or to other living organisms) and is obtained from the environment.
Key characteristics:
- Non-living – never had life, or has been transformed into a non-living state (e.g., fossil fuels).
- Naturally occurring – found in nature, not manufactured by humans (though humans may extract or process them).
- Useful – serves a purpose, whether for survival (water, air) or for economic activity (minerals, energy).
A Quick Classification to Lock It In
| Category | Examples | Why It Matters |
|---|---|---|
| Energy resources | Sunlight, wind, geothermal heat, tidal energy | Renewable, non-polluting (mostly) |
| Mineral resources | Iron, copper, bauxite, limestone | Used in construction, electronics, industry |
| Water resources | Rivers, lakes, groundwater | Essential for life, agriculture, industry |
| Atmospheric resources | Oxygen, nitrogen, carbon dioxide | Breathing, plant growth, industrial gases |
| Land/soil resources | Topsoil, clay, sand | Agriculture, building materials |
Common Mistake to Avoid …
Part (a): True — renewable, clean non-conventional energy gives India sustained, environment-friendly supply and cuts fossil-fuel dependence, despite intermittency and cost.
Part (b): True — minerals are finite and non-renewable, so conserving them by recycling, efficient use and substitutes is essential for India's continued development.
Minerals are a different kind of resource, and the statement that their conservation is essential can be examined as follows.
- Finite and non-renewable: minerals are formed over millions of years by geological processes and cannot be regenerated within human time. Once a deposit is mined out, it is gone forever.
- Basis of industry: India's development rests on mineral-based industries — iron and steel, aluminium, cement, copper, engineering and petrochemicals. Continuous supply of iron ore, bauxite, manganese, mica, coal and limestone is vital to keep these running. …
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