01 Why is all available energy not used for temperature rise during evaporation?0 reads0 helpful★ – (0)
A Part of energy goes into water vapour as latent heat B Energy goes to the Moon C Energy becomes solar constant D Energy always returns as reflection
Answer and explanation Correct answer: A . Part of energy goes into water vapour as latent heat
Explanation: Evaporation takes energy from the surface and converts it into latent heat. Exam tip: understand evaporation as cooling plus energy storage.
02 How does release of latent heat during condensation affect the atmosphere?0 reads0 helpful★ – (0)
A It gives energy to the atmosphere and can enhance convection B It blocks solar energy and makes it zero C It always reduces surface albedo D It removes ocean salinity
Answer and explanation Correct answer: A . It gives energy to the atmosphere and can enhance convection
Explanation: Stored heat is released into the atmosphere during condensation. Exam tip: connect latent heat release with clouds and rainfall.
03 Why is it incomplete to call convection only air movement in the heat budget?0 reads0 helpful★ – (0)
A Because it also transfers heat vertically B Because it creates solar energy C Because it makes albedo permanent D Because it makes Earth solid
Answer and explanation Correct answer: A . Because it also transfers heat vertically
Explanation: Convection carries warm air upward and distributes heat in the atmosphere. Exam tip: treat convection as vertical heat flux.
04 Why is horizontal heat transfer necessary in Earth's heat budget?0 reads0 helpful★ – (0)
A Because surplus heat of low latitudes reaches high latitudes B Because poles produce solar energy C Because there is no longwave radiation at the equator D Because oceans are fixed rocks
Answer and explanation Correct answer: A . Because surplus heat of low latitudes reaches high latitudes
Explanation: Winds and ocean currents reduce heat inequality. Exam tip: connect heat redistribution with circulation.
05 If ocean currents weaken what regional effect is possible in the heat budget?0 reads0 helpful★ – (0)
A Heat transfer from warm regions to cold regions will decrease B Solar radiation will stop C Clouds will completely disappear D Earth's albedo will always be zero
Answer and explanation Correct answer: A . Heat transfer from warm regions to cold regions will decrease
Explanation: Ocean currents are part of global heat redistribution. Exam tip: connect currents with heat transport.
06 Which larger system is driven by equatorial surplus and polar deficit in the heat budget?0 reads0 helpful★ – (0)
A Global atmospheric and oceanic circulation B Only river deposition C Only mountain building D Only soil formation
Answer and explanation Correct answer: A . Global atmospheric and oceanic circulation
Explanation: Latitudinal energy difference creates pressure and density differences and drives circulation. Exam tip: understand heat budget as the engine of circulation.
07 In which condition may energy surplus be used more in evaporation instead of raising local temperature?0 reads0 helpful★ – (0)
A On a moist surface with enough water availability B On a completely dry rocky surface C In a snowy high albedo area D On a sunless night
Answer and explanation Correct answer: A . On a moist surface with enough water availability
Explanation: On a wet surface a large part of energy can go into latent heat flux. Exam tip: connect wet surface with latent heat flux.
08 Why can temperature of a region not be determined by albedo alone?0 reads0 helpful★ – (0)
A Moisture heat capacity atmosphere and energy transfer also affect it B Albedo has no relation with temperature C Solar energy does not reach Earth D Longwave radiation never occurs
Answer and explanation Correct answer: A . Moisture heat capacity atmosphere and energy transfer also affect it
Explanation: Local temperature is formed by the combined effect of many energy processes. Exam tip: avoid a single factor approach.
09 Where is the importance of conduction more directly seen in the heat budget?0 reads0 helpful★ – (0)
A Between the surface and nearby air in contact with it B Between the Sun and Moon C Between ocean floor and space D Between Earth's core and stars
Answer and explanation Correct answer: A . Between the surface and nearby air in contact with it
Explanation: Conduction is the process of heat transfer by contact. Exam tip: connect conduction with contact heat transfer.
10 If aerosols increase in an area why is the heat budget response not considered fixed?0 reads0 helpful★ – (0)
A Some aerosols reflect and some can also absorb B Aerosols always create the Sun C Aerosols stop Earth's rotation D Aerosols turn longwave energy into soil
Answer and explanation Correct answer: A . Some aerosols reflect and some can also absorb
Explanation: The effect of aerosols depends on their type size and height. Exam tip: understand aerosol effect as a mixed effect.
11 Absorption of ultraviolet radiation by ozone affects which level in the heat budget?0 reads0 helpful★ – (0)
A Stratospheric energy balance B Salinity of ocean floor C River deposition rate D Earthquake intensity
Answer and explanation Correct answer: A . Stratospheric energy balance
Explanation: Ozone absorbs incoming ultraviolet energy in the stratosphere. Exam tip: connect ozone with upper atmosphere absorption.
12 If there were no atmosphere which side of Earth's heat budget would change most?0 reads0 helpful★ – (0)
A Longwave absorption and counter radiation would greatly decrease B Incoming solar energy would completely stop C Earth's revolution would stop D Oceans would start producing solar energy
Answer and explanation Correct answer: A . Longwave absorption and counter radiation would greatly decrease
Explanation: The atmosphere absorbs and re-radiates longwave radiation. Exam tip: understand atmosphere as a thermal blanket.
13 Why is long term average useful despite daily and seasonal changes in radiation balance?0 reads0 helpful★ – (0)
A It removes temporary fluctuations and shows normal energy condition B It ends day and night C It turns solar energy into a fixed object D It removes albedo
Answer and explanation Correct answer: A . It removes temporary fluctuations and shows normal energy condition
Explanation: Heat budget is generally understood on the basis of average energy input and output. Exam tip: remember long term balance.
14 In which condition does frost become more likely according to heat budget?0 reads0 helpful★ – (0)
A Strong radiative cooling on a clear dry calm night B On a warm night with thick clouds C With high water vapour and strong counter radiation D During strong cloud reflection by day
Answer and explanation Correct answer: A . Strong radiative cooling on a clear dry calm night
Explanation: On a clear dry calm night the surface can lose heat rapidly. Exam tip: connect frost with surface radiative cooling.
15 If surface temperature rises what generally happens to terrestrial radiation?0 reads0 helpful★ – (0)
A Terrestrial radiation tends to increase B Terrestrial radiation completely stops C Terrestrial radiation becomes solar shortwave D Terrestrial radiation has no relation with temperature
Answer and explanation Correct answer: A . Terrestrial radiation tends to increase
Explanation: A warmer surface emits more longwave energy. Exam tip: remember the temperature emission relation.
16 How does counter radiation change energy loss from the surface in the heat budget?0 reads0 helpful★ – (0)
A It returns heat to the surface and reduces net loss B It pulls all heat from the surface C It blocks and destroys solar radiation D It changes Earth's axis
Answer and explanation Correct answer: A . It returns heat to the surface and reduces net loss
Explanation: Downward radiation by the atmosphere slows surface cooling. Exam tip: connect counter radiation with the greenhouse process.
17 Why can a snow covered area remain relatively cold even when the Sun shines?0 reads0 helpful★ – (0)
A High albedo returns a large part of solar energy B Snow creates solar energy C Snow emits no longwave radiation D Snow makes the atmosphere disappear
Answer and explanation Correct answer: A . High albedo returns a large part of solar energy
Explanation: Snow is bright so it reflects more energy and absorbs less. Exam tip: connect snow with high albedo.
18 Why can a dark ocean absorb more energy than a snow surface?0 reads0 helpful★ – (0)
A Due to dark colour and low albedo B Due to one hundred percent reflection C Due to absence of solar energy D Due to non formation of longwave energy
Answer and explanation Correct answer: A . Due to dark colour and low albedo
Explanation: Dark water surface reflects less and absorbs more. Exam tip: remember ocean versus snow contrast.
19 Which example best explains energy transformation in the heat budget?0 reads0 helpful★ – (0)
A Absorption of solar shortwave at surface and emission as longwave B Earth producing solar energy C Moon sending terrestrial radiation D Ocean creating gravity
Answer and explanation Correct answer: A . Absorption of solar shortwave at surface and emission as longwave
Explanation: The surface absorbs incoming shortwave and gives outgoing longwave energy. Exam tip: connect energy transformation with wavelength change.
20 If solar angle is low why does the surface receive less energy per unit area in the heat budget?0 reads0 helpful★ – (0)
A Rays spread over a larger area B Rays do not reach Earth C The Sun becomes longwave D Atmosphere disappears completely
Answer and explanation Correct answer: A . Rays spread over a larger area
Explanation: Oblique rays distribute energy over a larger area. Exam tip: connect low solar angle with low intensity.
21 How does a longer atmospheric path at high latitudes affect the heat budget?0 reads0 helpful★ – (0)
A Due to scattering and absorption less energy may reach the surface B All energy increases and reaches the surface C Solar energy changes into sea D Longwave radiation stops forming
Answer and explanation Correct answer: A . Due to scattering and absorption less energy may reach the surface
Explanation: Oblique rays travel a longer distance through the atmosphere. Exam tip: connect path length with insolation loss.
22 Why can local temperature not be understood only by looking at global heat balance?0 reads0 helpful★ – (0)
A Local albedo moisture clouds and surface properties differ B Global balance has no relation with temperature C All places receive equal energy D There is no local weather on Earth
Answer and explanation Correct answer: A . Local albedo moisture clouds and surface properties differ
Explanation: Global balance is an average while local heat budget may differ. Exam tip: keep global and local scale separate.
23 Why does the total effect of clouds in the heat budget change with place and time?0 reads0 helpful★ – (0)
A Cloud type height thickness and day night condition change B Clouds always give the same heat C Clouds form only over oceans D Clouds decide the solar constant
Answer and explanation Correct answer: A . Cloud type height thickness and day night condition change
Explanation: The radiative effect of clouds depends on their physical features and time. Exam tip: understand cloud effect as variable.
24 If a positive energy imbalance persists in the Earth system for a long time what result is likely?0 reads0 helpful★ – (0)
A Increase in average temperature B End of Earth's gravity C Sun becoming Earth D Ocean salinity becoming zero
Answer and explanation Correct answer: A . Increase in average temperature
Explanation: Persistent energy surplus works toward warming the Earth system. Exam tip: connect persistent positive imbalance with warming.
25 If outgoing energy remains greater than incoming energy for a long time what tendency is likely?0 reads0 helpful★ – (0)
A Average cooling B Complete end of albedo C Increase in Sun's temperature D Formation of solar radiation
Answer and explanation Correct answer: A . Average cooling
Explanation: When energy loss is greater the Earth system can move toward cooling. Exam tip: connect energy deficit with cooling tendency.