Weathered material may be deposited and then compacted or cemented to form sedimentary rock.
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26Water enters a joint in granite, freezes, and widens the joint repeatedly. Which process is occurring?
weathering - processes and landforms
Medium
A.Hydrolysis
B.Frost wedging
C.Carbonation
D.Salt crystallization
Correct Answer: Frost wedging
Explanation:
Water expands when it freezes, exerting pressure that enlarges cracks in the rock.
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27A limestone region develops caves and sinkholes after prolonged contact with slightly acidic groundwater. Which process is most important?
weathering - processes and landforms
Medium
A.Carbonation
B.Exfoliation
C.Thermal expansion
D.Oxidation
Correct Answer: Carbonation
Explanation:
Carbonic acid in groundwater dissolves calcium carbonate, producing caves, sinkholes, and other karst features.
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28A jointed granite dome develops curved outer slabs that peel away from the surface. Which weathering process most likely formed it?
weathering - processes and landforms
Medium
A.Exfoliation
B.Hydration
C.Solution
D.Biological weathering
Correct Answer: Exfoliation
Explanation:
Exfoliation causes outer layers of massive rock to separate in curved sheets, often after pressure release.
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29Iron-rich minerals in a humid environment form a reddish-brown coating. Which process is primarily responsible?
weathering - processes and landforms
Medium
A.Oxidation
B.Frost action
C.Abrasion
D.Carbonation
Correct Answer: Oxidation
Explanation:
Oxygen reacts with iron-bearing minerals to form iron oxides, which commonly produce reddish or brown colors.
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30Which setting would generally produce the deepest zone of chemical weathering?
weathering - processes and landforms
Medium
A.Warm and humid lowlands
B.Cold and windy coastlines
C.Dry and exposed plateaus
D.Cold and dry highlands
Correct Answer: Warm and humid lowlands
Explanation:
Warm temperatures accelerate chemical reactions, while abundant water promotes processes such as hydrolysis and solution.
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31Tree roots grow into a crack and eventually split a boulder. This is best classified as which type of weathering?
weathering - processes and landforms
Medium
A.Mineral precipitation
B.Mechanical weathering
C.Thermal metamorphism
D.Chemical weathering
Correct Answer: Mechanical weathering
Explanation:
Root growth physically widens the crack without changing the minerals chemically.
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32A desert rock surface becomes rough because softer minerals are removed faster than harder minerals. Which landform or feature results?
weathering - processes and landforms
Medium
A.Ventifact surface
B.Residual tors
C.Honeycomb weathering
D.Karst pavement
Correct Answer: Residual tors
Explanation:
Differential weathering can leave resistant blocks or tors standing above more easily weathered material.
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33After intense rainfall, a saturated soil layer moves downslope slowly, leaving tilted trees and curved fences. Which process is most likely?
mass wasting – processes and landforms
Medium
A.Mudflow
B.Creep
C.Debris avalanche
D.Rockfall
Correct Answer: Creep
Explanation:
Soil creep is a very slow downslope movement that commonly produces tilted objects and bent or displaced structures.
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34A coherent block of hillside slides along a curved surface and rotates backward. Which mass movement is indicated?
mass wasting – processes and landforms
Medium
A.Solifluction
B.Rotational slump
C.Rockfall
D.Translational slide
Correct Answer: Rotational slump
Explanation:
A slump involves movement along a curved failure surface and backward rotation of the displaced material.
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35A dry, steep cliff releases individual boulders that fall and accumulate at its base. What landform develops?
mass wasting – processes and landforms
Medium
A.Alluvial fan
B.Earthflow lobe
C.Solifluction terrace
D.Talus slope
Correct Answer: Talus slope
Explanation:
Fallen rock fragments accumulate at the foot of a cliff to form a talus, or scree, slope.
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36A fast-moving mixture of volcanic ash, water, and rock fragments travels down a valley. Which process is this?
mass wasting – processes and landforms
Medium
A.Lahar
B.Solifluction
C.Block creep
D.Rock glacier
Correct Answer: Lahar
Explanation:
A lahar is a volcanic mudflow composed of water mixed with ash, rock fragments, and other volcanic debris.
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37Which change would most directly increase the likelihood of a landslide on a steep slope?
mass wasting – processes and landforms
Medium
A.Saturating the slope with rain
B.Adding vegetation cover
C.Decreasing the slope angle
D.Reducing pore-water pressure
Correct Answer: Saturating the slope with rain
Explanation:
Water saturation raises pore-water pressure and reduces friction between particles, making slope failure more likely.
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38In a cold region, waterlogged soil slowly flows over permanently frozen ground during summer thaw. Which process occurs?
mass wasting – processes and landforms
Medium
A.Rockfall
B.Solifluction
C.Rotational slump
D.Debris slide
Correct Answer: Solifluction
Explanation:
Solifluction is the slow downslope flow of saturated surface soil over frozen or impermeable ground.
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39A landslide moves as a relatively intact mass along a planar surface parallel to a bedding plane. Which type is most appropriate?
mass wasting – processes and landforms
Medium
A.Translational slide
B.Debris flow
C.Rotational slump
D.Earthflow
Correct Answer: Translational slide
Explanation:
A translational slide moves along a relatively flat or planar surface, often following bedding or a fracture.
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40Which engineering measure would best reduce landslide risk on a road cut by lowering groundwater pressure?
mass wasting – processes and landforms
Medium
A.Removing surface vegetation
B.Adding loose soil at the crest
C.Increasing the cut slope angle
D.Installing horizontal drains
Correct Answer: Installing horizontal drains
Explanation:
Drainage lowers groundwater and pore-water pressure, increasing the effective strength of the slope.
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41A rock contains interlocking quartz, potassium feldspar, and biotite crystals, with no foliation. It formed from slowly cooled magma rich in silica. Which classification is most appropriate?
rocks – types and classification
Hard
A.Felsic intrusive igneous rock
B.Foliated metamorphic rock
C.Mafic extrusive igneous rock
D.Clastic sedimentary rock
Correct Answer: Felsic intrusive igneous rock
Explanation:
High silica indicates a felsic composition, large interlocking crystals indicate slow cooling, and the absence of bedding or foliation supports an intrusive igneous origin.
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42Which observation would most strongly distinguish a metamorphic rock from a sedimentary rock when both contain aligned platy minerals?
rocks – types and classification
Hard
A.Rounded pebbles embedded in a fine matrix
B.Fossils concentrated along depositional laminae
C.Pressure-solution seams cutting original grains
D.Cross-bedding preserved between mineral layers
Correct Answer: Pressure-solution seams cutting original grains
Explanation:
Pressure solution and recrystallization indicate deformation and metamorphic alteration, whereas the other features are primarily depositional sedimentary structures.
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43A volcanic rock has abundant phenocrysts of feldspar surrounded by a fine-grained groundmass. Which cooling history best explains this texture?
rocks – types and classification
Hard
A.Rapid cooling throughout at the surface
B.Slow cooling followed by rapid eruption
C.Rapid cooling followed by burial metamorphism
D.Sediment accumulation followed by cementation
Correct Answer: Slow cooling followed by rapid eruption
Explanation:
Phenocrysts formed during an initial period of slow cooling underground, while the fine groundmass formed after rapid cooling during or after eruption.
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44Which sequence represents a complete and geologically plausible transformation from granite to a sedimentary rock?
Granite can be weathered and eroded, deposited as sediment, and transformed into sedimentary rock through compaction and cementation.
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45A sandstone is converted into quartzite without melting. Which change is most likely to occur?
rocks – types and classification
Hard
A.Pore spaces enlarge through dissolution
B.Quartz grains recrystallize into an interlocking mosaic
C.Clay minerals accumulate between bedding planes
D.Quartz grains become loosely packed
Correct Answer: Quartz grains recrystallize into an interlocking mosaic
Explanation:
Metamorphism commonly causes quartz grains to recrystallize and interlock, producing a harder, more coherent quartzite without requiring melting.
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46Two igneous rocks have similar mineral compositions, but one has large crystals and the other has a glassy texture. What is the strongest inference?
rocks – types and classification
Hard
A.They experienced different cooling rates
B.They underwent different degrees of weathering
C.They necessarily formed at different depths
D.They contain different proportions of silica
Correct Answer: They experienced different cooling rates
Explanation:
Large crystals indicate slow cooling that allowed crystal growth, whereas glass forms when cooling is too rapid for significant crystallization.
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47A limestone landscape develops sinkholes, disappearing streams, and underground channels in a humid region. Which process is dominant?
weathering - processes and landforms
Hard
A.Carbonation and solution of calcium carbonate
B.Hydrolysis of silicate minerals
C.Salt wedging within joint networks
D.Exfoliation caused by pressure release
Correct Answer: Carbonation and solution of calcium carbonate
Explanation:
Carbonic acid in groundwater dissolves limestone, producing karst features such as sinkholes, caves, and underground drainage.
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48A granite dome contains curved, sheet-like fractures parallel to its surface. Which explanation best accounts for this landform?
weathering - processes and landforms
Hard
A.Dissolution of limestone along bedding planes
B.Chemical reduction of iron in basalt
C.Frost wedging in a permanently frozen slope
D.Expansion after removal of overlying pressure
Correct Answer: Expansion after removal of overlying pressure
Explanation:
Unloading reduces confining pressure, allowing granite to expand and fracture in layers parallel to the exposed surface, producing exfoliation domes.
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49Which setting would most favor frost wedging rather than chemical weathering?
weathering - processes and landforms
Hard
A.Hot, arid, and lacking jointed bedrock
B.Warm, saline, and protected from evaporation
C.Cold, wet, and repeatedly near the freezing point
D.Warm, humid, and deeply vegetated
Correct Answer: Cold, wet, and repeatedly near the freezing point
Explanation:
Frost wedging requires water-filled cracks and repeated freezing and thawing, conditions most common in cold environments with frequent temperature oscillations.
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50A tropical soil profile is intensely red and deeply weathered, with much of its silica removed. Which process and minerals are most consistent with this profile?
weathering - processes and landforms
Hard
A.Hydrolysis producing abundant halite and gypsum
B.Abrasion producing fresh quartz and feldspar
C.Carbonation producing calcite and dolomite
D.Oxidation producing hematite and goethite
Correct Answer: Oxidation producing hematite and goethite
Explanation:
Warm, humid conditions promote intense chemical weathering and iron oxidation, while leaching removes soluble silica and leaves iron oxides and hydroxides.
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51Why can a rock fragment weather more rapidly after being broken into smaller pieces, even if its composition remains unchanged?
weathering - processes and landforms
Hard
A.Its density decreases without pore formation
B.Its exposure to groundwater necessarily stops
C.Its mineral lattice becomes more stable
D.Its surface-area-to-volume ratio increases
Correct Answer: Its surface-area-to-volume ratio increases
Explanation:
Smaller fragments expose more surface area relative to their volume, increasing contact with water, oxygen, acids, and organisms.
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52A jointed sandstone cliff develops cavernous hollows beneath resistant ledges in a dry climate. Which interpretation is most defensible?
weathering - processes and landforms
Hard
A.Glacial plucking of ice-cemented sandstone
B.Regional metamorphism producing new foliation
C.Uniform dissolution of an unfractured limestone mass
D.Differential weathering along joints and porous beds
Correct Answer: Differential weathering along joints and porous beds
Explanation:
Water movement, salt growth, and granular disintegration can attack porous or fractured sandstone more rapidly, leaving resistant ledges and hollows.
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53A saturated slope suddenly moves as a relatively coherent mass along a curved, concave-upward surface, leaving a head scarp and a bulging toe. Which process occurred?
mass wasting – processes and landforms
Hard
A.Rotational slump
B.Rockfall
C.Debris flow
D.Translational slide
Correct Answer: Rotational slump
Explanation:
A curved failure surface, backward-tilted blocks, head scarp, and bulging toe are characteristic of rotational sliding, commonly called slumping.
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54A landslide moves along a relatively planar bedding surface that dips in the same direction as the slope. Which factor most directly increases the likelihood of failure?
mass wasting – processes and landforms
Hard
A.Horizontal bedding beneath a vertical cliff
B.Bedding dip parallel to and less steep than the slope
C.Bedding dip opposing the slope direction
D.Bedding dip parallel to and steeper than the slope
Correct Answer: Bedding dip parallel to and steeper than the slope
Explanation:
When permeable beds or discontinuities dip out of the slope at a steep angle, they provide a planar surface along which sliding can occur.
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55Which combination most strongly favors a debris flow rather than a dry rockfall?
mass wasting – processes and landforms
Hard
A.Steep slope, intense rainfall, and abundant loose sediment
B.Gentle slope, frozen ground, and no available sediment
C.Flat valley floor, low discharge, and resistant bedrock
D.Vertical cliff, clear skies, and massive unjointed granite
Correct Answer: Steep slope, intense rainfall, and abundant loose sediment
Explanation:
Debris flows require abundant unconsolidated material and enough water to mobilize it; steep terrain supplies the gravitational energy for rapid movement.
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56A talus cone accumulates at the base of a mountain cliff. Which process most directly supplies its angular fragments?
mass wasting – processes and landforms
Hard
A.Slow soil creep and bioturbation
B.Lateral moraine deposition by flowing ice
C.Chemical dissolution and karst collapse
D.Freeze-thaw fragmentation and rockfall
Correct Answer: Freeze-thaw fragmentation and rockfall
Explanation:
Freeze-thaw weathering widens fractures, and gravity causes angular blocks to fall from the cliff and accumulate as talus.
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57Which field evidence best indicates long-term soil creep rather than a single rapid landslide?
mass wasting – processes and landforms
Hard
A.Fresh scarps and displaced intact blocks
B.Tilted trees, bent fence posts, and terracettes
C.Angular blocks scattered directly below a cliff
D.Mud-rich lobes with levees and channel deposits
Correct Answer: Tilted trees, bent fence posts, and terracettes
Explanation:
Progressive, very slow downslope movement produces leaning vegetation, warped structures, and small step-like terracettes.
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58A slope remains stable for years, then fails shortly after prolonged rainfall. Which mechanism most plausibly explains the timing?
mass wasting – processes and landforms
Hard
A.Rainfall increased bedrock cohesion through saturation
B.Pore-water pressure reduced effective normal stress
C.Infiltration eliminated the potential failure plane
D.Pore-water pressure increased effective normal stress
Correct Answer: Pore-water pressure reduced effective normal stress
Explanation:
Rising pore-water pressure counteracts the normal stress holding grains together, lowering effective stress and reducing shear resistance.
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59A steep road cut is made in weak, clay-rich material. Which engineering measure most directly reduces the risk of rainfall-triggered failure?
mass wasting – processes and landforms
Hard
A.Concentrate runoff at the slope toe
B.Add impermeable soil over the entire slope
C.Install drainage and reduce the slope angle
D.Increase slope angle and remove vegetation
Correct Answer: Install drainage and reduce the slope angle
Explanation:
Drainage lowers pore-water pressure, while reducing the slope angle decreases the downslope shear stress driving failure.
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60A rock avalanche travels unusually far across a valley floor despite originating on a steep mountain wall. Which explanation is most plausible?
mass wasting – processes and landforms
Hard
A.Upward movement caused by reduced gravity
B.Low mobility caused by intact block movement
C.Complete transformation into a slow soil creep
D.High mobility from fragmentation and air cushioning
Correct Answer: High mobility from fragmentation and air cushioning
Explanation:
Rock avalanches can become highly fragmented, and trapped air or basal lubrication may reduce friction, allowing unusually long runout distances.
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