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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 Why is fossil fuel combustion important in climate change?
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Answer and explanation
Correct answer: A. It increases greenhouse gas emissions
Explanation: Burning coal, petroleum, and natural gas oxidizes stored carbon and releases large quantities of carbon dioxide into the atmosphere. Fuel combustion also produces other pollutants and, in some activities, methane and nitrous oxide. The added greenhouse gases alter Earth’s energy balance by reducing the efficiency of outgoing heat loss, making fossil-fuel use a major driver of current warming.
Correct answer: A. An area or system that absorbs and stores carbon dioxide from the atmosphere
Explanation: A carbon sink is a reservoir or process that absorbs more carbon from the atmosphere than it releases over a relevant period. Forests, soils, wetlands, and oceans can act as important sinks by storing carbon in biomass, organic matter, dissolved carbon, or sediments. A source has the opposite balance and releases more carbon than it absorbs.
03 What indirect effect can deforestation have on temperature?
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Answer and explanation
Correct answer: A. Temperature may rise because less carbon dioxide is absorbed
Explanation: Plants remove carbon dioxide through photosynthesis and store carbon in vegetation and soils. When forests are cleared, this carbon-sink capacity decreases; burning and decomposition can also release stored carbon. More atmospheric CO₂ strengthens the greenhouse effect and can raise temperature. Deforestation may additionally reduce evapotranspirational cooling, but the option identifies the key indirect greenhouse pathway.
04 Why is the relation between albedo and snow cover important?
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Answer and explanation
Correct answer: A. Snow is highly reflective
Explanation: Fresh snow has a high albedo, meaning it reflects a large proportion of incoming solar radiation and absorbs relatively little energy. This helps keep the surface cool. If snow cover melts, darker ground or water is exposed, albedo falls, absorption rises, and additional warming can cause further melting. This is the positive snow-albedo feedback.
Correct answer: A. A process that amplifies the effect of an initial change
Explanation: Positive feedback occurs when a response reinforces or amplifies the initial disturbance rather than opposing it. For example, warming melts snow and ice, lowering surface albedo; the darker surface absorbs more sunlight and produces further warming. The term positive does not mean beneficial. A process that counteracts the initial change is called negative feedback.
06 What is the main property of negative feedback?
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Answer and explanation
Correct answer: A. It tends to oppose the initial change and stabilize the system
Explanation: Negative feedback produces a response that counteracts an initial change, thereby tending to reduce its magnitude and move the system toward stability. It does not necessarily eliminate the change completely and can operate for different kinds of disturbances. Option B describes positive feedback because amplification makes the original change stronger and may increase instability.
07 What is a common reason for higher night-time temperatures?
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Answer and explanation
Correct answer: A. Heat being trapped in the atmosphere
Explanation: After sunset, Earth’s surface normally loses energy mainly as longwave infrared radiation. Greenhouse gases and suitable atmospheric conditions absorb and re-emit some of this radiation, slowing the rate of nocturnal cooling. Urban materials and clouds can also influence night temperatures, but the scientifically relevant general explanation in this question is atmospheric heat trapping rather than stronger nighttime sunlight.
Correct answer: A. कंक्रीट और डामर की सतहें, कम हरियाली तथा मानवजनित ऊष्मा
Explanation: Concrete, asphalt, and rooftops generally absorb and store solar energy more effectively than many vegetated surfaces and release it slowly after sunset. Urban growth also removes vegetation, reducing shade and evaporative cooling, while vehicles, buildings, industries, and air conditioners release anthropogenic heat. These combined effects make cities warmer than nearby rural areas, especially at night.
09 Which two processes can be linked with sea level rise?
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Answer and explanation
Correct answer: A. Melting of land glaciers and thermal expansion of seawater
Explanation: Melting land glaciers and ice sheets transfers water that was stored on land into the ocean. Warming seawater also expands in volume, a process called thermal expansion. Together these are major contributors to observed sea-level rise. Floating sea ice already displaces water, so its melting has a much smaller direct effect, while thermal contraction would lower rather than raise sea level.
Correct answer: A. It can reflect some solar radiation
Explanation: During daytime, clouds reflect a portion of incoming shortwave solar radiation back toward space. This reduces the amount of direct energy reaching and warming the surface, although the exact effect depends on cloud type, thickness, and altitude. Thus, option A is correct; the other options describe impossible or unsupported effects.
Correct answer: A. They absorb outgoing longwave infrared radiation from Earth and re-emit some toward the surface
Explanation: At night, Earth’s surface loses energy mainly through longwave infrared radiation. Clouds contain water droplets and water vapour that absorb some of this outgoing radiation and re-emit part of it downward. This reduces radiational cooling, so cloudy nights are often warmer than clear nights. Option A correctly explains this greenhouse-like effect.
12 What is the main difference between the natural and human-enhanced greenhouse effects?
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Answer and explanation
Correct answer: A. In the human-enhanced form, increased greenhouse-gas concentrations alter Earth's energy balance
Explanation: The natural greenhouse effect is produced by naturally occurring water vapour, carbon dioxide, methane, and other gases, and it keeps Earth warm enough for life. Human activities such as fossil-fuel combustion and deforestation increase greenhouse-gas concentrations, causing additional heat retention and a changed energy balance. Therefore, A is correct.
13 Why is renewable energy suitable for climate mitigation?
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Answer and explanation
Correct answer: A. It provides low-carbon energy in place of fossil fuels
Explanation: Solar, wind, hydropower, and other renewable sources generally produce electricity with far lower lifecycle greenhouse-gas emissions than coal, oil, or natural gas. Replacing fossil-fuel use therefore reduces the main sources of warming emissions. Mitigation means addressing the causes of climate change, so option A is the only correct answer.
14 Why is sea-level rise a sign of climate change?
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Answer and explanation
Correct answer: A. It can reflect ice melt and thermal expansion of seawater
Explanation: Long-term sea-level rise is an important indicator of a warming climate. Higher temperatures expand seawater, while melting glaciers and ice sheets add water to the oceans. Tides and storms can cause short-term fluctuations, but they do not explain the sustained global rise. Thus option A identifies the relevant climate processes and is correct.
15 Why are tree rings and ice cores called proxy data?
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Answer and explanation
Correct answer: A. They indirectly reveal past climate signals
Explanation: Proxy data are natural records that indirectly preserve information about past climate. Tree-ring width and density can reflect temperature or moisture, while ice cores preserve bubbles, dust, and isotopes related to past atmosphere and climate. Because they are not direct instrumental observations, they are called proxies. Option A is correct.
16 What is the main difference between a climate trend and weather?
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Answer and explanation
Correct answer: A. A climate trend is a long-term change in average climate patterns over years or decades
Explanation: Weather refers to short-term atmospheric conditions such as today’s temperature, rainfall, wind, or pressure. A climate trend describes a persistent change in statistical averages or patterns over many years or decades. Therefore, option A correctly distinguishes timescale and meaning; options B, C, and D confuse weather with climate.
17 What is the relation between heat trapping and humid nights?
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Answer and explanation
Correct answer: A. Water vapour and other greenhouse gases can trap heat
Explanation: Water vapour is a powerful greenhouse gas. On humid nights, it absorbs part of the longwave infrared radiation emitted by the warm surface and re-emits some energy downward. This can reduce nighttime cooling, although clouds, wind, and surface conditions also matter. Thus, option A gives the correct physical relationship.
18 After reaching Earth, solar radiation is mainly converted into what form?
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Answer and explanation
Correct answer: A. Longwave terrestrial radiation
Explanation: Earth’s surface absorbs much of the incoming shortwave solar radiation and becomes warm. It then emits energy upward mainly as longwave terrestrial infrared radiation. Greenhouse gases absorb and re-emit part of this outgoing radiation, influencing the energy balance. Therefore, option A is the scientifically precise answer.
19 What is the best meaning of long-term atmospheric temperature increase?
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Answer and explanation
Correct answer: A. A persistent or long-term change in the climate system
Explanation: A persistent increase in average atmospheric temperature is a component of global warming and broader climate change. It refers to a long-term statistical trend, not a single hot day, local sunshine, or an unrelated physical change. Short-term weather anomalies can occur without changing the long-term climate trend, which is why option A is correct.
20 Why is heat exchange between the ocean and atmosphere important?
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Answer and explanation
Correct answer: A. It regulates climate balance and the distribution of temperature
Explanation: Oceans absorb and store large quantities of solar heat and exchange it with the atmosphere through radiation, conduction, evaporation, and condensation. This moderates temperatures and helps drive winds, rainfall, and atmospheric circulation. Since oceans are a major heat reservoir, option A correctly states the broad climatic importance of ocean–atmosphere heat exchange.
21 What is one long-term sign of rising carbon dioxide?
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Answer and explanation
Correct answer: A. An increase in average global temperature
Explanation: Carbon dioxide is a long-lived greenhouse gas that absorbs outgoing infrared radiation and contributes to a positive radiative forcing. When its concentration rises, the climate system tends to warm over time, although natural variability affects individual years. Thus, a sustained increase in average global temperature is a relevant long-term sign, making A correct.
22 Why can air over warm oceans carry more moisture?
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Answer and explanation
Correct answer: A. Warm air has a greater water-vapour-holding capacity
Explanation: A warmer atmosphere can contain more water vapour before reaching saturation, according to the temperature dependence of saturation vapour pressure. Warm ocean surfaces also increase evaporation, supplying moisture to the air. This added water vapour can strengthen humidity and greenhouse feedbacks, although actual humidity also depends on winds and circulation. Option A is correct.
23 If greenhouse gases greatly decreased in the atmosphere, what would happen on Earth?
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Answer and explanation
Correct answer: A. Earth could become much colder
Explanation: The natural greenhouse effect keeps Earth substantially warmer than it would be without greenhouse gases by absorbing and re-emitting outgoing infrared radiation. A major decrease would allow more heat to escape to space and could produce strong cooling, potentially threatening ecosystems and liquid-water conditions. Therefore, option A is correct; the other choices do not follow from greenhouse-gas reduction.
24 Why is long-term average temperature important in the study of global warming?
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Answer and explanation
Correct answer: A. It removes weather noise and shows the trend
Explanation: Weather changes from day to day, season to season, and place to place. A long-term average smooths out much of this short-term variability and reveals the underlying climate trend. Global warming is therefore assessed through sustained changes in average temperature over decades, not through one unusually hot or cold day.
25 What can be one direct effect of increased heat absorption?
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Answer and explanation
Correct answer: A. Rise in surface temperature
Explanation: When the land, ocean or atmosphere absorbs more energy than before, the climate system gains heat. A direct response is usually an increase in surface or near-surface temperature, although the amount and timing depend on circulation, evaporation and storage in the ocean. Warming generally promotes glacier retreat and sea-level rise over time, not immediate sea-level fall or widespread glacier expansion.
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