01 What type of energy process is the role of ocean currents in the heat budget?0 reads0 helpful★ – (0)
A Horizontal transfer of heat B Creation of solar energy C Complete destruction of terrestrial radiation D Permanent zeroing of albedo
Answer and explanation Correct answer: A . Horizontal transfer of heat
Explanation: Currents carry warm water to cooler regions and cold water to other regions. Link currents with heat distribution in exams.
02 Heat transfer by winds helps reduce which imbalance?0 reads0 helpful★ – (0)
A Difference between energy surplus and deficit of low and high latitudes B Only difference between river and lake C Only height difference between mountain and plain D Only difference between day and week
Answer and explanation Correct answer: A . Difference between energy surplus and deficit of low and high latitudes
Explanation: Winds move warm and cold air masses and distribute energy. Consider winds helpful in heat balance for exams.
03 Without long term global heat balance what tendency may occur in Earths average temperature?0 reads0 helpful★ – (0)
A Tendency to keep rising or falling B Always complete stability C Destruction of the Sun D Stopping of rainfall
Answer and explanation Correct answer: A . Tendency to keep rising or falling
Explanation: If energy input and output are not balanced average temperature may change. Link balance with temperature stability in exams.
04 Under which condition is a daytime local energy surplus more likely?0 reads0 helpful★ – (0)
A Clear sky low albedo and strong solar radiation B Thick cloud high albedo and weak Sun C Long polar night and snow surface D Strong reflection and low absorption
Answer and explanation Correct answer: A . Clear sky low albedo and strong solar radiation
Explanation: Clear sky and low albedo allow more energy to reach and be absorbed by the surface. For surplus check input and absorption.
05 Under which condition is a local energy deficit more likely?0 reads0 helpful★ – (0)
A Clear cold night and strong terrestrial radiation B Strong noon sunshine and low reflection C Dark surface and high absorption D Arrival of warm air
Answer and explanation Correct answer: A . Clear cold night and strong terrestrial radiation
Explanation: At night there is no incoming solar energy and longwave energy keeps leaving. Link nighttime deficit with radiational cooling.
06 If clouds and water vapour increase what effect may appear in the night heat budget?0 reads0 helpful★ – (0)
A Greater counter radiation of longwave energy B Greater direct incoming solar energy C Earths albedo becoming zero D Heating of sound energy
Answer and explanation Correct answer: A . Greater counter radiation of longwave energy
Explanation: Clouds and water vapour can absorb and send back terrestrial radiation. Treat them as night heat trapping factors in exams.
07 What is the simple meaning of atmospheric window in the heat budget?0 reads0 helpful★ – (0)
A Direct escape of some longwave energy to space B All solar energy stopping at surface C Clouds changing into Earth D Energy becoming a river
Answer and explanation Correct answer: A . Direct escape of some longwave energy to space
Explanation: Through the atmospheric window some terrestrial energy can escape without much absorption. Link it with direct outgoing energy.
08 Which is the correct example of the dual role of clouds in heat budget?0 reads0 helpful★ – (0)
A Reflection by day and counter radiation by night B Ocean formation by day and mountain formation by night C Gravity by day and sound by night D Dust formation by day and river formation by night
Answer and explanation Correct answer: A . Reflection by day and counter radiation by night
Explanation: Clouds affect both incoming shortwave and outgoing longwave energy. Treat clouds as a dual role component in exams.
09 If urbanization lowers surface albedo in an area what effect may occur on the local heat budget?0 reads0 helpful★ – (0)
A Absorbed energy may increase B Absorbed energy will always decrease C Longwave emission will be impossible D Solar energy will stop
Answer and explanation Correct answer: A . Absorbed energy may increase
Explanation: Urban surfaces with lower albedo can take in more solar energy. Understand the relation between urban surface and energy absorption.
10 When is there said to be a net gain of energy in the heat budget?0 reads0 helpful★ – (0)
A When incoming energy is greater than outgoing energy B When outgoing energy is greater than incoming energy C When there is no energy exchange D When there is only reflection and no absorption
Answer and explanation Correct answer: A . When incoming energy is greater than outgoing energy
Explanation: Net gain shows energy surplus and can increase temperature. Understand net gain as energy surplus in exams.
11 When will there be a net loss of energy in the heat budget?0 reads0 helpful★ – (0)
A When outgoing energy is greater than incoming energy B When incoming energy is greater than outgoing energy C When all energy is absorbed D When the Sun shines more
Answer and explanation Correct answer: A . When outgoing energy is greater than incoming energy
Explanation: Net loss shows energy deficit and can cause cooling. Understand net loss as energy deficit in exams.
12 Why is it important to understand energy leaving the Earth system in heat budget?0 reads0 helpful★ – (0)
A Because it is the other side of average temperature balance B Because only outgoing energy makes rainfall C Because incoming energy has no importance D Because outgoing energy is always zero
Answer and explanation Correct answer: A . Because it is the other side of average temperature balance
Explanation: Balance becomes clear only by comparing outgoing energy with incoming energy. Study both together in exams.
13 Why is Earths heat budget considered a foundation of climate study?0 reads0 helpful★ – (0)
A Because it explains energy distribution and temperature B Because it only tells political boundaries C Because it measures river length D Because it only tells soil texture
Answer and explanation Correct answer: A . Because it explains energy distribution and temperature
Explanation: The thermal structure of climate is linked with energy input output and distribution. Treat heat budget as a basic climate concept.
14 Which is the most balanced description of the heat budget?0 reads0 helpful★ – (0)
A Solar energy arrives some is reflected some is absorbed and Earth sends out longwave energy B Solar energy arrives and never leaves C All energy stays only in clouds D Earth receives energy only from the Moon
Answer and explanation Correct answer: A . Solar energy arrives some is reflected some is absorbed and Earth sends out longwave energy
Explanation: Heat budget shows the full relation of incoming reflected absorbed and outgoing energy. Remember the whole sequence in exams.
15 Why is the balance between incoming and outgoing energy important in Earth's heat budget?0 reads0 helpful★ – (0)
A It helps keep climate stable in the long term B It stops Earth's rotation C It removes ocean salinity D It makes mountain heights equal
Answer and explanation Correct answer: A . It helps keep climate stable in the long term
Explanation: Balance in the heat budget controls Earth's average temperature. Exam tip: treat it as the basic idea of thermal balance.
16 Why is incoming solar radiation shortwave and outgoing terrestrial radiation longwave?0 reads0 helpful★ – (0)
A The Sun has a much higher temperature than Earth B Earth is hotter than the Sun C The Moon changes the radiation D Oceans block all waves
Answer and explanation Correct answer: A . The Sun has a much higher temperature than Earth
Explanation: Hotter bodies emit energy of shorter wavelength. Exam tip: remember the relation between temperature and wavelength.
17 What happens to available heat at Earth's surface when albedo increases?0 reads0 helpful★ – (0)
A Available heat decreases B Available heat always doubles C Solar radiation stops forming D Terrestrial radiation ends
Answer and explanation Correct answer: A . Available heat decreases
Explanation: Higher albedo means more reflection and less absorption. Exam tip: connect albedo with surface brightness.
18 Why can more clouds cool the surface by day but keep it relatively warm at night?0 reads0 helpful★ – (0)
A They reflect solar energy by day and trap longwave heat at night B They create the Sun in both day and night C They change Earth's revolution D They instantly freeze oceans
Answer and explanation Correct answer: A . They reflect solar energy by day and trap longwave heat at night
Explanation: Clouds act both as reflectors and barriers in the heat budget. Exam tip: remember the dual role of clouds.
19 Solar energy absorbed by Earth's surface is later emitted mainly in which form?0 reads0 helpful★ – (0)
A Longwave terrestrial radiation B Shortwave solar radiation C Sound wave D Tidal energy
Answer and explanation Correct answer: A . Longwave terrestrial radiation
Explanation: The heated ground emits energy as longwave radiation. Exam tip: connect surface emission with terrestrial radiation.
20 If an area's surface is dark coloured what change is more likely in its heat budget?0 reads0 helpful★ – (0)
A Absorption of solar energy will increase B Reflection will greatly increase C Heat budget will end D The Sun will stop sending radiation
Answer and explanation Correct answer: A . Absorption of solar energy will increase
Explanation: The direct answer is A: absorption of solar energy will increase. Dark surfaces generally have low albedo. They reflect a smaller fraction of sunlight and absorb a larger fraction, so their surface is more likely to warm. Reasoning: sunlight arrives; a dark surface reflects less; more energy remains in the surface; absorbed solar energy raises surface temperature and can increase heat available to the lower atmosphere. Option A is correct. Option B is wrong because strong reflection is associated more with bright, high-albedo surfaces. Option C is wrong because a colour change cannot make the entire heat budget disappear. Option D is wrong because the Sun continues to emit radiation independently of the surface colour. This is a general comparison; exact heating also depends on moisture, texture, clouds and angle of sunlight. Memory cue: dark means low albedo, less reflection and more absorption.
21 What is the main reason for heat deficit in higher latitudes?0 reads0 helpful★ – (0)
A Sun rays are oblique and energy spreads out B Earth does not rotate there C There is no atmosphere there D The Sun is always closer there
Answer and explanation Correct answer: A . Sun rays are oblique and energy spreads out
Explanation: Oblique rays give less energy per unit area. Exam tip: remember the relation between latitude and insolation.
22 Why is heat surplus found in low latitudes?0 reads0 helpful★ – (0)
A Sun rays fall more directly B Clouds never form there C Earth gives energy to the Sun there D Longwave radiation does not occur there
Answer and explanation Correct answer: A . Sun rays fall more directly
Explanation: Direct rays concentrate more energy over a smaller area. Exam tip: connect low latitude with high insolation.
23 Why can the atmosphere be called an energy filter in the heat budget?0 reads0 helpful★ – (0)
A It absorbs reflects and scatters radiation B It stops the Sun from giving energy C It makes Earth flat D It separates oceans from energy
Answer and explanation Correct answer: A . It absorbs reflects and scatters radiation
Explanation: The atmosphere affects both solar and terrestrial radiation. Exam tip: understand it as a radiation filter.
24 What happens when some terrestrial radiation is absorbed by the atmosphere?0 reads0 helpful★ – (0)
A It helps maintain the temperature of the lower atmosphere B Earth's gravity ends C The Sun's temperature decreases D Oceans dry instantly
Answer and explanation Correct answer: A . It helps maintain the temperature of the lower atmosphere
Explanation: Greenhouse gases absorb longwave radiation and maintain temperature. Exam tip: connect it with the natural greenhouse effect.
25 Earth's heat budget is considered nearly balanced in the long run because what happens?0 reads0 helpful★ – (0)
A Total received energy and total emitted energy remain nearly equal B Earth never emits energy C All energy goes only into oceans D Atmosphere destroys energy
Answer and explanation Correct answer: A . Total received energy and total emitted energy remain nearly equal
Explanation: In long-term average Earth's energy input and output stay balanced. Exam tip: connect global balance with annual average.