Muft Shiksha™ एक 100% Free Education Portal है 🇮🇳, जिसका उद्देश्य Class 9–12 के हर विद्यार्थी तक High-Quality Education को पूरी तरह मुफ्त पहुँचाना है। 🇮🇳 हम मानते हैं कि अच्छी शिक्षा किसी student की आर्थिक स्थिति पर निर्भर नहीं होनी चाहिए। 🇮🇳 हर विद्यार्थी को वही Quality Study Material, MCQs, Quizzes, Exam Preparation, Concept-Based Learning और Bilingual Support मिलना चाहिए, जो आमतौर पर महंगी Coaching या Premium Platforms में मिलता है। Muft Shiksha™ 🇮🇳 इसी सोच के साथ बनाया गया है
Class 11 Geography explores the heat budget of the Earth as the balance between incoming solar radiation and outgoing terrestrial radiation. Students learn how the atmosphere, land, oceans, clouds, and ice reflect, absorb, store, and redistribute heat, and why the Earth’s average temperature remains broadly stable. The topic connects this balance with the greenhouse effect, latitudinal differences in heating, and the movement of heat through the atmosphere and oceans.
Practice questions
01 Increased carbon dioxide in the atmosphere will affect which process more?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Heat balance
Explanation: Answer: A, heat balance. Earth receives short-wave energy from the Sun and sends energy back to space mainly as long-wave infrared radiation. Carbon dioxide absorbs some of this outgoing infrared radiation and re-emits energy in different directions, including toward the surface. When atmospheric carbon dioxide increases, the rate at which heat escapes can change, disturbing Earth’s energy balance and contributing to warming until a new balance is reached. Option B is wrong because rotation is mainly related to Earth’s angular momentum and gravitational interactions. Option C is wrong because ocean depth is controlled by basin shape, tectonics, erosion, and sea-level processes. Option D is wrong because rocks do not change colour immediately merely because carbon dioxide increases. Memory cue: CO₂ traps outgoing heat; it does not control Earth’s spin or instantly recolour rocks.
02 How do the importance of the ozone layer and carbon dioxide differ?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. The ozone layer protects from ultraviolet radiation, while carbon dioxide is linked with Earth’s heat balance
Explanation: The correct answer is A. Stratospheric ozone absorbs much of the Sun’s harmful ultraviolet radiation, helping protect life from excessive UV exposure. Carbon dioxide has a different role: it is a greenhouse gas that absorbs some outgoing infrared radiation and therefore contributes to Earth’s heat balance. Neither is a main respiratory gas or a dust particle.
03 Through which process is the effect of greenhouse gases on heat balance most clearly seen?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: D. They absorb longwave heat emitted by Earth
Explanation: Earth receives mainly shortwave solar radiation and then emits energy back as longwave terrestrial radiation. Greenhouse gases such as carbon dioxide, methane and water vapour absorb part of this outgoing longwave radiation and re-emit energy, including downward energy, thereby influencing the heat balance and warming the lower atmosphere. Thus option D is correct; the other choices confuse reflection, pressure or an impossible lunar energy source.
04 Why is it useful to study water vapour and carbon dioxide together in atmospheric composition?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Both are linked with heat balance and the greenhouse effect
Explanation: Correct answer: A. Earth’s surface receives energy from the Sun and sends energy back mainly as infrared radiation. Water vapour and carbon dioxide absorb some of this outgoing infrared energy and re-emit it, so they are important to the atmospheric heat balance and greenhouse effect. Studying them together helps a learner understand why atmospheric composition influences temperature. They are not identical: water vapour changes rapidly with weather, while carbon dioxide is more persistent and is strongly linked to the carbon cycle. B is therefore wrong because neither is absolutely permanent in the same sense. C is wrong because both occur in the atmosphere, not only the lithosphere. D is wrong because tides are mainly related to gravitational effects of the Moon and Sun.
05 How can imbalance of atmospheric gases become an environmental problem?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: C. It can affect heat balance, health and ecosystems
Explanation: Direct answer: C is correct. Atmospheric gases help control Earth’s temperature, radiation balance and chemical environment. If greenhouse gases increase substantially, more outgoing infrared energy can be retained, disturbing the heat balance and contributing to climate change. Other gases and pollutants can harm human and animal health, reduce visibility, damage plants and alter ecological relationships. The effects are connected but not identical: greenhouse gases mainly influence climate, while pollutants may directly affect air quality and living organisms. A is wrong because gas imbalance does not make oceans invisible. B is wrong because it cannot instantly change the length of a day. D is physically impossible in this context. Memory cue: atmospheric imbalance can disturb heat, health and habitats.
06 What is the shared role of water vapour and carbon dioxide in the greenhouse effect?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Both contribute to absorption of longwave radiation
Explanation: Direct answer: A is correct. Sunlight mainly arrives as shorter-wave radiation and warms Earth’s surface. The warmed surface then emits infrared, or longwave, radiation upward. Water vapour and carbon dioxide absorb some wavelengths of this outgoing radiation and re-emit energy in different directions. Part of the re-emitted energy travels back downward, slowing the loss of heat to space and influencing surface and lower-atmosphere temperature. This is the basic greenhouse effect; it does not mean that all radiation is trapped permanently. B is wrong because these gases do not merely form dust. C is wrong because tides are mainly associated with gravitational effects of the Moon and Sun. D is wrong because these gases do not change Earth’s internal structure. Memory cue: “The surface sends heat upward; greenhouse gases absorb and re-emit part of it.”
07 Why is it necessary to link water vapour with temperature regulation along with rainfall?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Because water vapour is linked with both greenhouse effect and latent heat
Explanation: Answer: A. Water vapour is not only the raw material for clouds and rainfall; it is also an important part of Earth’s energy system. Water vapour absorbs some outgoing infrared radiation, so it contributes to the natural greenhouse effect and influences temperature. During evaporation, energy is taken from the surface and stored as latent heat in the water vapour. When vapour condenses to form clouds or rain, this latent heat is released into the surrounding air. These linked processes transport energy and help regulate atmospheric temperature while also producing precipitation. A is correct because it includes both the greenhouse role and latent-heat role. B is incorrect because water vapour does not only form stones. C is incorrect because evaporation and condensation involve energy transfer. D is incorrect because atmospheric water vapour mainly comes from evaporation and transpiration, not from a star. Memory cue: evaporation stores heat; condensation releases it.
08 How does understanding atmospheric gases and particles help explain evidence of climate change?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. It links changes in gases and particles with temperature, rainfall and radiation
Explanation: A is correct. Greenhouse gases such as carbon dioxide and methane affect how much outgoing infrared energy the atmosphere absorbs and re-emits. Aerosols can also affect radiation and clouds, with effects that depend on their type and location. Comparing changes in atmospheric composition with measured trends in temperature, rainfall and radiation helps scientists assess climate change; no single measurement alone establishes the full evidence.
09 Why is carbon dioxide considered climatically important despite being a minor atmospheric component?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Because it absorbs outgoing longwave radiation (क्योंकि यह बाहर जाने वाले दीर्घतरंग विकिरण को अवशोषित करती है)
Explanation: The correct answer is A. Earth’s warmed surface emits energy as longwave (infrared) radiation. Carbon dioxide absorbs some of this outgoing radiation and re-emits energy, contributing to the greenhouse effect and influencing Earth’s heat balance. Its climatic importance therefore depends on its radiative properties, not just its abundance.
10 Which atmospheric component is most directly involved in Earth radiative balance?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Carbon dioxide
Explanation: Correct answer: A. Earth’s radiative balance compares incoming solar energy with outgoing energy, especially the longwave infrared radiation emitted by Earth’s surface and atmosphere. Carbon dioxide is a greenhouse gas that absorbs some outgoing infrared wavelengths and re-emits energy in various directions. This directly affects how readily terrestrial heat escapes to space. Argon and neon are noble gases with little direct absorption of the relevant infrared radiation under ordinary atmospheric conditions. Sea-salt particles can scatter or absorb some radiation and may influence clouds, but they are particles rather than the best gas answer in this question. A does not mean CO₂ is the only substance involved; water vapour, clouds, and other gases also matter. It is the most direct and suitable choice among the options. Memory cue: radiative balance and greenhouse gases are linked through infrared radiation.
11 Why can a high concentration of aerosols produce short-term climate effects?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Aerosols can scatter or reflect solar radiation
Explanation: The correct answer is A. Aerosols are tiny particles or droplets suspended in air. They can scatter or reflect some incoming sunlight, changing how much solar energy reaches the surface and thus affecting temperatures over short periods. Some aerosols can also absorb radiation, but the other options describe effects aerosols do not cause.
12 Which two features of the stratosphere are associated with the presence of ozone?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Ultraviolet protection and temperature increase with altitude
Explanation: A is correct. Ozone in the stratosphere absorbs much of the Sun’s harmful ultraviolet radiation, reducing the amount that reaches Earth’s surface. The absorbed energy warms the surrounding air, so temperature generally increases with altitude through much of the stratosphere. Most ordinary storms and heavy rainfall occur in the troposphere, not the stratosphere.
13 Why is temperature in the troposphere more directly related to Earth’s surface?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. The surface absorbs solar energy and heats air through longwave radiation
Explanation: Option A is correct. The atmosphere is relatively transparent to much incoming shortwave solar radiation, while Earth’s surface absorbs that energy and emits longwave infrared radiation. The lower troposphere is therefore heated mainly from below, and convection and conduction transfer heat upward. Ozone production, direct ion escape, and zero surface pressure do not explain the tropospheric temperature pattern.
14 Which statement best explains the fall of temperature in the mesosphere?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. The amount of heat-absorbing gases becomes low
Explanation: Correct answer: A. In the mesosphere, temperature generally decreases as altitude increases. One important reason is that the concentration of ozone and other gases able to absorb radiation is relatively small compared with the stratosphere. Less absorption means less radiative heating at greater heights, so the temperature tends to fall upward. Option A expresses this idea accurately, although the atmosphere’s complete energy balance is more detailed than one single factor. Option B is wrong because terrestrial radiation is strongest nearer Earth’s surface and is not maximum in the mesosphere. Option C is wrong because ordinary rain clouds occur mainly in the troposphere, not the mesosphere. Option D is wrong because the greatest ozone concentration is associated with the stratosphere. The key comparison is: stratosphere warms upward because ozone absorption is important; mesosphere cools upward because that absorption becomes much weaker. Memory cue: less absorbing gas aloft generally means less heating aloft.
16 What is formed when fourteen units directly absorbed by the atmosphere and thirty four units received from the surface combine?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Forty eight units of energy going from atmosphere to space
Explanation: The atmosphere adds fourteen and thirty four units and sends forty eight units back to space. Remember forty eight units as atmospheric output.
17 How is the fifty one units of energy absorbed by the surface later considered to be divided?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Seventeen units directly to space and thirty four units to atmosphere
Explanation: Some longwave energy from the surface goes directly to space and more is absorbed by the atmosphere. Remember the seventeen and thirty four relation.
18 How are total hundred units returned to space in Earths heat budget?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. By thirty five reflected seventeen direct terrestrial and forty eight atmospheric radiation
Explanation: Thirty five reflection seventeen direct terrestrial and forty eight atmospheric output make hundred. In exams check the total outgoing sum.
24 If energy going directly from Earths surface to space decreases what could be a possible reason?
0 reads0 helpful★ – (0)
Answer and explanation
Correct answer: A. Increase in atmospheric absorption or cloudiness
Explanation: More clouds or absorbing gases can reduce direct escape of longwave energy. In exams link direct outgoing energy with atmospheric transparency.
Google Analytics helps us understand site usage. Google may send limited cookie-free signals before your choice. The Live Visitors widget operates independently of this analytics choice; see the privacy policy for its provider and fallback details. Essential site features work without analytics cookies. You can change your choice later in Privacy choices. Privacy policy