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In this Class 11 Geography topic from “World Climate and Climate Change,” students learn how the greenhouse effect regulates Earth’s temperature and why human activities can intensify it. They examine the roles of carbon dioxide, methane, nitrous oxide, and water vapour, distinguishing the natural greenhouse effect from enhanced warming caused by fossil-fuel use, deforestation, and changing land use. The topic connects rising temperatures with melting ice, sea-level rise, shifting rainfall, extreme weather, and impacts on ecosystems and people, while introducing broad approaches to mitigation and adaptation.
Practice questions
01 What effect does increasing greenhouse gases have at night?
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Answer and explanation
Correct answer: A. Heat loss from Earth decreases at night
Explanation: After sunset, the surface continues to emit longwave infrared radiation. Greenhouse gases absorb part of this radiation and re-emit energy in all directions, including downward toward the surface. Increasing their concentration can therefore reduce the rate at which heat escapes to space at night, raising minimum temperatures relative to an atmosphere with fewer greenhouse gases. It does not increase night-time sunlight.
02 Why is atmospheric water vapour called a powerful component of the greenhouse effect?
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Answer and explanation
Correct answer: A. It can absorb infrared (thermal) radiation emitted by Earth
Explanation: Water vapour is an important greenhouse gas because it absorbs outgoing longwave infrared radiation emitted by Earth and re-emits energy in different directions, including back toward the surface. This retains heat in the lower atmosphere. It does not destroy incoming solar energy or stop winds, although its amount is strongly influenced by temperature.
03 What can scattering do when atmospheric transparency decreases?
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Answer and explanation
Correct answer: A. It can change the direction of solar radiation
Explanation: Scattering occurs when dust, smoke, aerosols, or droplets redirect radiation from its original path. Reduced atmospheric transparency can therefore change the direction of incoming solar radiation, and some energy may be sent back toward space. Scattering is not the same as complete absorption of outgoing infrared radiation, which is mainly associated with greenhouse gases.
04 Why can heat be retained when clouds remain at night?
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Answer and explanation
Correct answer: A. They absorb part of Earth’s outgoing longwave thermal radiation and re-radiate it downward
Explanation: At night, the surface loses energy mainly as terrestrial longwave radiation. Cloud droplets and ice crystals absorb part of this radiation and emit some energy downward, reducing radiative cooling of the surface. Consequently, cloudy nights are often warmer than clear nights. Clouds do not increase sunlight at night or completely stop convection.
05 What can happen to crops when carbon dioxide rises?
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Answer and explanation
Correct answer: A. Photosynthesis and growth may increase in some plants, but water stress may also rise
Explanation: Higher carbon dioxide can stimulate photosynthesis in some plants, particularly many C3 crops, and may improve water-use efficiency. However, warming, heat waves, irregular rainfall, pests, and greater evaporative demand can increase water stress and reduce yields. The response varies by crop, temperature, nutrients, and water availability, so no universal benefit occurs.
06 How can rising sea temperature affect cyclones?
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Answer and explanation
Correct answer: A. It can intensify them by giving more energy
Explanation: Tropical cyclones obtain much of their energy from warm ocean water. Higher sea-surface temperatures increase evaporation, and the release of latent heat during condensation can strengthen a suitable storm. Other conditions, including atmospheric circulation and wind shear, also matter, so warmer water does not guarantee intensification of every cyclone or eliminate all uncertainty.
07 Why is proxy data useful in climate change study?
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Answer and explanation
Correct answer: A. It helps estimate past climate from indirect indicators such as tree rings, ice cores, and sediments
Explanation: Proxy data are indirect natural records that preserve evidence of earlier environmental conditions when instrumental measurements were unavailable. Tree rings, ice cores, pollen, corals, and lake or ocean sediments can reveal information about past temperature, precipitation, atmospheric gases, and volcanic activity. They reconstruct past climate; they are not exact forecasts of future rainfall.
08 If nights remain consistently warmer, what broader climate sign should be noted?
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Answer and explanation
Correct answer: A. More heat trapping and enhanced greenhouse effect
Explanation: A persistent rise in nighttime temperatures can indicate that the surface and lower atmosphere are losing less heat overnight. Greenhouse gases, water vapour, clouds, and urban surfaces can absorb or re-radiate outgoing longwave energy, while daytime and nighttime responses may differ. A sustained multi-year pattern is more meaningful than a few warm nights.
Correct answer: A. A projected pathway of possible future climate conditions
Explanation: A climate scenario is a plausible, assumption-based pathway describing how future emissions, land use, population, technology, energy systems, and policies might develop. Models use different scenarios to explore possible future temperature, rainfall, and other outcomes. A scenario is not a certain prediction or a measuring instrument; it is a structured possibility for analysis.
10 Why is water vapour considered a feedback factor in climate?
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Answer and explanation
Correct answer: A. Because its amount can increase as temperature rises
Explanation: Water vapour is a powerful greenhouse gas, but its atmospheric amount is controlled mainly by temperature and the hydrological cycle rather than by long-term direct human emissions. When warming increases evaporation, warmer air can hold more water vapour. The additional vapour absorbs more outgoing infrared radiation and can cause further warming. This amplifying response is called a positive water-vapour feedback, although clouds can produce more complicated effects.
11 Why is methane considered more effective per molecule?
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Answer and explanation
Correct answer: A. It can trap more heat
Explanation: Methane is more effective per molecule because its molecular structure allows it to absorb infrared radiation strongly in important atmospheric wavelength bands. Its atmospheric concentration is much lower than carbon dioxide, but molecule for molecule its warming influence over a specified time period is substantially greater. Methane also has a shorter atmospheric lifetime than carbon dioxide, so potency and persistence must be considered separately when comparing greenhouse gases.
12 How can reduced atmospheric transparency affect radiation?
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Answer and explanation
Correct answer: A. Absorption and scattering may increase
Explanation: Atmospheric transparency describes how freely radiation passes through the atmosphere. When dust, smoke, aerosols, clouds or absorbing gases increase, transparency can decrease. More radiation is then scattered or absorbed along its path, and less direct solar radiation may reach the surface. The exact surface-temperature response can vary because aerosols may also affect clouds and outgoing infrared radiation, but reduced transparency does not mean radiation passes unchanged or that surface sunlight necessarily increases.
Correct answer: A. Release of trapped carbon dioxide and methane into the atmosphere
Explanation: Permafrost is permanently or persistently frozen ground containing organic matter accumulated over long periods. When it thaws, microbes decompose the exposed material and release carbon dioxide; in waterlogged, oxygen-poor conditions they may release methane. Both gases strengthen the greenhouse effect, producing a positive feedback that can cause further warming and more thaw. The main risk is greenhouse-gas release, not an immediate direct rise in global sea level.
14 Which property of greenhouse gases enables them to warm the lower atmosphere of Earth?
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Answer and explanation
Correct answer: A. Absorbing and re-emitting outgoing longwave infrared radiation from Earth
Explanation: Greenhouse gases have molecular vibration and rotation modes that interact with wavelengths of Earth’s outgoing thermal infrared radiation. They absorb part of this longwave energy and re-emit it in all directions, including downward toward the surface and lower atmosphere. This slows the loss of energy to space and raises the temperature required for outgoing energy balance. They do not simply reflect all incoming sunlight or act only by forming stratospheric ozone.
15 Why did chlorofluorocarbons become an environmental hazard?
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Answer and explanation
Correct answer: A. They were linked to both ozone-layer depletion and global warming
Explanation: CFCs are chemically stable in the lower atmosphere, allowing them to reach the stratosphere. Ultraviolet radiation breaks them apart and releases chlorine atoms, which participate in catalytic reactions that destroy ozone molecules. CFCs are also strong greenhouse gases because they absorb outgoing infrared radiation and contribute to warming. Their dual role in ozone depletion and climate change made them a major environmental hazard and led to international controls under the Montreal Protocol.
16 On what inequality is the idea of climate justice based?
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Answer and explanation
Correct answer: A. Inequality in emissions and climate risk
Explanation: Climate justice is based on the fact that responsibility for greenhouse-gas emissions and exposure to climate harm are distributed unequally. Some countries and groups have contributed much more historical emissions, while poorer or vulnerable communities may suffer greater losses from heat, floods, droughts, and sea-level rise. Justice therefore considers responsibility, capacity, vulnerability, and fair support.
Correct answer: A. To simulate the climate system and estimate possible future climate trends
Explanation: Climate models use mathematical equations and observations to represent interactions among the atmosphere, oceans, land, ice, and living systems. Researchers run them under different greenhouse-gas and land-use scenarios to estimate long-term patterns in temperature, rainfall, sea level, and extremes. They do not directly control emissions, replace short-term weather forecasts, or prevent disasters.
18 Why can air over warm oceans hold more moisture?
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Answer and explanation
Correct answer: A. At higher temperatures, saturation vapour pressure increases, so air can contain more water vapour
Explanation: The saturation vapour pressure of water rises strongly with temperature. Therefore, warmer air can contain a greater maximum amount of water vapour before reaching saturation. Warm ocean surfaces also enhance evaporation, supplying additional vapour to the air. This relationship does not depend on seawater becoming fresh, on warm air always having higher pressure, or on condensation stopping completely.
Correct answer: A. They can alter both radiation and cloud formation
Explanation: Aerosols are tiny solid or liquid particles suspended in the atmosphere. They can directly scatter or absorb incoming and outgoing radiation, changing the energy reaching the surface. They can also act as cloud-condensation nuclei, modifying cloud brightness, lifetime, and precipitation. Their climate effect may therefore be cooling or warming depending on composition, altitude, location, and cloud interactions.
20 What effect can rising carbon dioxide have on plants?
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Answer and explanation
Correct answer: A. Some growth benefit along with water stress
Explanation: Higher atmospheric carbon dioxide can stimulate photosynthesis and water-use efficiency in some plants, especially when nutrients, temperature, and water are adequate. However, this fertilisation benefit is limited and may be offset by heat waves, drought, nutrient shortages, pests, and shifting seasons. Therefore, rising CO₂ can produce a possible growth benefit while climate-related water stress increases.
21 What is the most accurate meaning of carbon budget?
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Answer and explanation
Correct answer: A. The maximum total cumulative CO₂ emissions allowed to remain within a temperature target
Explanation: A carbon budget is a finite cumulative quantity of carbon dioxide emissions associated with a specified probability of keeping global warming below a chosen limit, such as 1.5°C or 2°C. It concerns total emissions over time, not merely one country’s emissions in one year, annual natural uptake, or money collected through a carbon tax.
22 What is the use of proxy data in studying long-term warming?
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Answer and explanation
Correct answer: A. To obtain evidence of past climate from tree rings, ice cores and sediments
Explanation: Proxy data are indirect records that help scientists reconstruct climate conditions before widespread instrumental measurements existed. Tree rings, ice cores, pollen, corals, and lake or ocean sediments can preserve clues about past temperature, rainfall, atmospheric composition, and environmental change. They do not control winds or remove greenhouse gases, so option A is correct.
Correct answer: A. Levels of ancient atmospheric gases
Explanation: Ice cores contain layers of compacted snow and tiny bubbles of ancient air trapped during snowfall. Laboratory analysis of these bubbles reveals past concentrations of gases such as carbon dioxide and methane. Isotopes and impurities can also indicate temperature, dust, and volcanic events. River width, mountain age, and air smell cannot be obtained in this way, so A is correct.
Correct answer: A. They provide past clues about temperature and moisture
Explanation: Many trees produce an annual growth ring whose width, density, and chemical composition reflect the conditions of that growing season. Favourable moisture and temperature may produce wider rings, while drought or severe stress may produce narrow rings. By comparing dated rings, scientists reconstruct past climate variability. Thus tree rings are proxy records, making A correct.
25 What dual effect can extra carbon dioxide have on crop growth?
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Answer and explanation
Correct answer: A. Some growth benefit along with water stress
Explanation: Elevated carbon dioxide can enhance photosynthesis and water-use efficiency in some crops, especially under suitable conditions. However, warming, drought, heat waves, pests, nutrient limits, and altered rainfall can reduce or reverse that benefit. Crop responses also differ by species and management. Therefore the scientifically balanced answer is A: a possible growth benefit together with water or climate stress.
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