I. GravelII. ClayIII. SiltIV. Sand(a) I, IV, III, II(b) IV, II, III, I(c) II, III, I, IV(d) III, I, IV, II
I. Gravel
II. Clay
III. Silt
IV. Sand
(a) I, IV, III, II
(b) IV, II, III, I
(c) II, III, I, IV
(d) III, I, IV, II
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I. GravelII. ClayIII. SiltIV. Sand(a) I, IV, III, II(b) IV, II, III, I(c) II, III, I, IV(d) III, I, IV, II
I. Gravel
II. Clay
III. Silt
IV. Sand
(a) I, IV, III, II
(b) IV, II, III, I
(c) II, III, I, IV
(d) III, I, IV, II
(a) Block disintegration(b) Erosion(c) Granular disintegration(d) Exfoliation
(a) Block disintegration
(b) Erosion
(c) Granular disintegration
(d) Exfoliation
(a) Granite(b) Gravel(c) Metamorphic(d) Sedimentary
(a) Granite
(b) Gravel
(c) Metamorphic
(d) Sedimentary
(a) Fog(b) Hail(c) Exfoliation(d) Rainfall
(a) Fog
(b) Hail
(c) Exfoliation
(d) Rainfall
(a) Stratus, Cumulonimbus, Cirrostratus, Cirrus(b) Stratus, Cirrostratus, Cumulonimbus, Cirrus(c) Cumulonimbus, Stratus, Cirrus, Cirrostratus(d) Cumulonimbus, Stratus, Cirrostratus, Cirrus
(a) Stratus, Cumulonimbus, Cirrostratus, Cirrus
(b) Stratus, Cirrostratus, Cumulonimbus, Cirrus
(c) Cumulonimbus, Stratus, Cirrus, Cirrostratus
(d) Cumulonimbus, Stratus, Cirrostratus, Cirrus
(a) When water vapor condenses below the zero degree Celsius and and precipitation occurs in the form of flakes(b) When liquid raindrops freeze into snowflakes during their descent through cold air.(c) When fog forms due ...Read more
(a) When water vapor condenses below the zero degree Celsius and and precipitation occurs in the form of flakes
(b) When liquid raindrops freeze into snowflakes during their descent through cold air.
(c) When fog forms due to condensation, leading to precipitation in the form of snowflakes.
(d) When atmospheric conditions result in the transformation of rain into snow as it descends.
(a) The prevailing air movement is generally towards the equator(b) Cold polar air masses hinder surface heating of the land(c) Cold surfaces exhibit lower absorption of solar energy compared to warm surfaces(d) The polar regions ...Read more
(a) The prevailing air movement is generally towards the equator
(b) Cold polar air masses hinder surface heating of the land
(c) Cold surfaces exhibit lower absorption of solar energy compared to warm surfaces
(d) The polar regions receive progressively lesser solar energy per unit area as we move towards the polar region
(a) Rotation of the earth(b) Revolution of the earth(c) Inflaming movement of air along the earth’s surface towards the equator(d) None of these
(a) Rotation of the earth
(b) Revolution of the earth
(c) Inflaming movement of air along the earth’s surface towards the equator
(d) None of these
(a) Due to Gravitational force(b) Earth’s axial rotation(c) Earth’s orbital revolution(d) Varied distribution of solar heating on the Earth’s surface
(a) Due to Gravitational force
(b) Earth’s axial rotation
(c) Earth’s orbital revolution
(d) Varied distribution of solar heating on the Earth’s surface
(a) High latitudes with heavy snow(b) Equatorial zone with low pressure(c) High-pressure areas on mountains(d) Sub-polar zone with high pressure
(a) High latitudes with heavy snow
(b) Equatorial zone with low pressure
(c) High-pressure areas on mountains
(d) Sub-polar zone with high pressure
(a) In regions of low pressure(b) From a region of high pressure to a low pressure(c) From a region of low pressure to of high pressure(d) In regions of high pressure
(a) In regions of low pressure
(b) From a region of high pressure to a low pressure
(c) From a region of low pressure to of high pressure
(d) In regions of high pressure
(a) Gravitational pull of the earth(b) Standard Time of the country(c) Greenwich Mean Time(d) Time of sunrise and sunset
(a) Gravitational pull of the earth
(b) Standard Time of the country
(c) Greenwich Mean Time
(d) Time of sunrise and sunset