01 Why is it necessary to distinguish radiative balance and heat transport in the heat budget?0 reads0 helpful★ – (0)
A Radiative balance shows energy input output while heat transport reduces regional inequality B Both are the same process C Heat transport occurs only on the Moon D Radiative balance has no relation with Earth
Answer and explanation Correct answer: A . Radiative balance shows energy input output while heat transport reduces regional inequality
Explanation: Radiative balance is the global energy account and transport redistributes energy among regions. In exams treat both as complementary concepts.
02 If clouds reflect more shortwave solar energy and also trap more longwave terrestrial energy what will their final effect depend on?0 reads0 helpful★ – (0)
A On the relative strength of both effects B Only on Earths shape C Only on ocean salinity D Only on names of winds
Answer and explanation Correct answer: A . On the relative strength of both effects
Explanation: Clouds can produce both cooling and warming effects. In exams do not treat their net role as one sided.
03 Under which condition can heat retention near the surface increase even after planetary albedo rises?0 reads0 helpful★ – (0)
A When increase in longwave counter radiation is stronger than shortwave reduction B When the Sun stops giving energy C When all energy becomes sound D When the atmosphere disappears completely
Answer and explanation Correct answer: A . When increase in longwave counter radiation is stronger than shortwave reduction
Explanation: The net heat budget effect depends on the strength of different energy flows. In exams examine both shortwave and longwave effects.
04 If surface absorbed energy increases but emission through atmospheric window decreases what tendency forms in the energy budget?0 reads0 helpful★ – (0)
A Energy surplus and warming tendency B Energy deficit and strong cooling C Complete balance is certain D Absence of solar radiation
Answer and explanation Correct answer: A . Energy surplus and warming tendency
Explanation: Higher absorption and lower direct escape can store energy in the Earth system. In exams check both input and output directions.
05 How does the concept of atmospheric window help explain the greenhouse effect?0 reads0 helpful★ – (0)
A It shows that some wavelengths escape directly and some are absorbed by gases B It proves that no radiation escapes C It shows solar energy is only sound D It stops ocean currents
Answer and explanation Correct answer: A . It shows that some wavelengths escape directly and some are absorbed by gases
Explanation: The atmospheric window shows selective escape of longwave energy. In exams link it with wavelength based absorption.
06 What type of response is increased terrestrial radiation when surface temperature rises?0 reads0 helpful★ – (0)
A Negative balancing feedback B Only positive albedo feedback C Gravitational feedback D Only biological feedback
Answer and explanation Correct answer: A . Negative balancing feedback
Explanation: A warmer surface emits more energy and works to reduce energy surplus. In exams understand it as balancing emission.
07 How can ice albedo feedback affect the heat budget?0 reads0 helpful★ – (0)
A When ice decreases absorption increases and can strengthen further warming B When ice decreases reflection always increases C When ice increases absorption always increases D Ice has no relation with energy budget
Answer and explanation Correct answer: A . When ice decreases absorption increases and can strengthen further warming
Explanation: When ice is removed darker surface is exposed and absorbs more solar energy. In exams treat it as positive albedo feedback.
08 Why does energy surplus in low latitudes drive global circulation in the heat budget?0 reads0 helpful★ – (0)
A Because excess heat is transferred toward high latitudes B Because low latitudes receive no energy C Because poles have no energy deficit D Because winds have no relation with heat
Answer and explanation Correct answer: A . Because excess heat is transferred toward high latitudes
Explanation: Energy inequality drives atmospheric and oceanic motion. In exams link circulation with energy gradients.
09 If imported heat decreases in high latitudes how will regional energy deficit change?0 reads0 helpful★ – (0)
A The deficit may increase B The deficit will end C Surplus is certain D Solar angle will become direct
Answer and explanation Correct answer: A . The deficit may increase
Explanation: High latitudes get partial balance from imported heat transport. In exams include imported heat in polar budgets.
10 Why is the net radiative effect of clouds considered complex in the heat budget?0 reads0 helpful★ – (0)
A They produce both shortwave reflection and longwave trapping B They only reflect C They only make sound D They are completely unrelated to energy
Answer and explanation Correct answer: A . They produce both shortwave reflection and longwave trapping
Explanation: Clouds can both reduce incoming energy and trap outgoing energy. In exams write both sides of cloud influence.
11 If high clouds reflect little solar radiation but trap much longwave energy during the day what can be the net effect?0 reads0 helpful★ – (0)
A Warming effect is possible B Complete cooling is certain C There will be no energy effect D Solar energy will become zero
Answer and explanation Correct answer: A . Warming effect is possible
Explanation: Low shortwave reflection and high longwave trapping can favor warming. In exams understand the effect of cloud type.
12 If low thick clouds return more solar energy what will be their main daytime effect?0 reads0 helpful★ – (0)
A Cooling effect B Certain surface warming C Complete absence of longwave emission D Boiling of oceans
Answer and explanation Correct answer: A . Cooling effect
Explanation: Thick low clouds reduce energy reaching the surface due to high albedo. In exams link low clouds with daytime cooling.
13 Under which condition can a decrease in total planetary albedo create imbalance in the energy budget?0 reads0 helpful★ – (0)
A When reduced reflection increases absorption and outgoing energy does not rise immediately B When reduced reflection also reduces absorption C When solar energy is absent D When atmosphere takes no energy
Answer and explanation Correct answer: A . When reduced reflection increases absorption and outgoing energy does not rise immediately
Explanation: Lower albedo can keep more energy in the Earth system. In exams note time lag in restoring balance.
14 How can long term balance and short term imbalance coexist in the heat budget?0 reads0 helpful★ – (0)
A Input and output may differ momentarily but long term average remains balanced B Energy is equal everywhere every moment C Long term balance means no weather D Short term imbalance is impossible
Answer and explanation Correct answer: A . Input and output may differ momentarily but long term average remains balanced
Explanation: Heat budget describes long term global average and does not remove local or daily differences. In exams keep time scale clear.
15 If a surface has low albedo and high heat capacity what feature may appear in the heat budget?0 reads0 helpful★ – (0)
A High energy absorption and slow temperature change B Low absorption and rapid temperature change C Complete reflection and zero emission D Absence of energy
Answer and explanation Correct answer: A . High energy absorption and slow temperature change
Explanation: Low albedo raises absorption and high heat capacity slows temperature change. In exams study surface properties separately.
16 The main difference between energy budgets of sea surface and urban surface can be understood through what?0 reads0 helpful★ – (0)
A Heat capacity albedo and heat storage B Only latitude name C Only language D Only distance of the Moon
Answer and explanation Correct answer: A . Heat capacity albedo and heat storage
Explanation: Sea and city absorb store and emit energy differently. In exams link surface type with local budget.
17 Why is the atmosphere called an active component in the heat budget?0 reads0 helpful★ – (0)
A It modifies both solar and terrestrial energy flows B It is only empty space C It absorbs no energy D It is only below Earth
Answer and explanation Correct answer: A . It modifies both solar and terrestrial energy flows
Explanation: The atmosphere reflects scatters absorbs and re radiates. In exams remember its multiple roles.
18 How can energy conservation be checked in Earths heat budget?0 reads0 helpful★ – (0)
A By checking equality of total incoming and total returned energy B By seeing only cloud height C By seeing only wind direction D By seeing only river length
Answer and explanation Correct answer: A . By checking equality of total incoming and total returned energy
Explanation: The sums in heat budget must follow energy conservation. In exams use total sums to identify wrong options.
19 If reflection becomes forty units out of hundred how much absorption remains?0 reads0 helpful★ – (0)
A Sixty units B Forty units C Hundred units D Twenty units
Answer and explanation Correct answer: A . Sixty units
Explanation: If forty out of hundred is reflected then sixty units can remain absorbed in the Earth system. In exams solve by subtraction.
20 If absorbed energy is sixty units but longwave outgoing is sixty five units what is the immediate energy condition?0 reads0 helpful★ – (0)
A Five unit energy deficit B Five unit energy surplus C Complete balance D Sixty five unit surplus
Answer and explanation Correct answer: A . Five unit energy deficit
Explanation: Outgoing energy is five units more than absorption so deficit occurs. In exams calculate the difference between absorption and emission.
21 If absorbed energy is seventy units and outgoing energy is sixty five units toward what will the energy budget lean?0 reads0 helpful★ – (0)
A Energy surplus B Energy deficit C Absolute zero D Total reflection
Answer and explanation Correct answer: A . Energy surplus
Explanation: Absorbed energy is five units greater than outgoing energy. In exams link higher absorption with warming tendency.
22 Why is the ability of longwave outgoing radiation to increase important in Earths heat budget?0 reads0 helpful★ – (0)
A It helps restore balance by sending excess heat out B It creates solar energy C It always stops reflection D It freezes oceans
Answer and explanation Correct answer: A . It helps restore balance by sending excess heat out
Explanation: A warmer surface can emit more longwave energy. In exams treat outgoing radiation as a balancing mechanism.
23 Why can there be a time lag between net radiation and surface temperature in the heat budget?0 reads0 helpful★ – (0)
A Because the surface can store energy and release it slowly B Because energy is immediately destroyed C Because the Sun switches off every minute D Because there is no atmosphere
Answer and explanation Correct answer: A . Because the surface can store energy and release it slowly
Explanation: Heat capacity and energy storage can delay temperature response. In exams link thermal lag with energy storage.
24 What is the most correct meaning of counter radiation in Earths heat budget?0 reads0 helpful★ – (0)
A Re radiation of absorbed longwave energy by atmosphere toward the surface B Solar energy moving toward sea C Reflection changing into sound D Surface creating solar energy
Answer and explanation Correct answer: A . Re radiation of absorbed longwave energy by atmosphere toward the surface
Explanation: The direct answer is A: re-radiation toward the surface of longwave energy absorbed by the atmosphere. Earth’s surface receives shortwave solar energy, warms, and emits terrestrial longwave radiation. Greenhouse gases and clouds absorb some of this longwave energy and then emit radiation in different directions, including downward toward the surface. This downward part is called counter radiation or back radiation. Option A is correct because it describes both the absorbed longwave energy and its downward re-emission. Option B is wrong because solar energy moving toward the sea is not the definition of counter radiation; sunlight is mainly shortwave incoming radiation. Option C is wrong because radiation is energy transfer, not reflection changing into sound. Option D is wrong because the surface does not create solar energy; it receives sunlight and emits terrestrial heat. Counter radiation does not mean that all heat remains at the surface, but it reduces the rate of surface cooling and is an important part of the greenhouse effect. Memory cue: surface sends longwave up; atmosphere sends some longwave back down.
25 If counter radiation increases what effect is possible on night minimum temperature?0 reads0 helpful★ – (0)
A Minimum temperature may remain relatively higher B Minimum temperature will always be zero C Solar radiation will stop D Reflection will be hundred percent
Answer and explanation Correct answer: A . Minimum temperature may remain relatively higher
Explanation: More counter radiation reduces heat loss from the surface. Link clouds and water vapour with night heat protection in exams.