Deck 7: Earthquakes and the Earths Structure
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Deck 7: Earthquakes and the Earths Structure
1
__________ is the study of earthquakes and the nature of Earth's interior based on elastic waves traveling through rock, produced by an earthquake.
A) Seismology
B) Cosmology
C) Seismicity
D) Ecology
A) Seismology
B) Cosmology
C) Seismicity
D) Ecology
A
2
A/an __________ is a sea wave generated by an underwater earthquake.
tsunami
3
The initial rupture point of an earthquake is the __________.
focus
4
When rock retains its new shape (without fracturing) after stress has been removed, it has undergone __________ __________.
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5
A type of continuous, snail-like rock movement that occurs along parts of the San Andreas Fault is called __________ __________.
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6
A rock that has deformed __________ under stress keeps its new shape when the stress is released.
A) elastically
B) non-permanently
C) plastically
D) flexibly
A) elastically
B) non-permanently
C) plastically
D) flexibly
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7
__________ are small earthquakes that precede a large quake by an interval ranging from a few seconds to a few weeks.
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8
Earthquakes are detected and measured with a device called a/an _____________.
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9
The initial rupture point of an earthquake (below Earth's surface) is the __________.
A) focus
B) disaster zone
C) releaser
D) epicenter
A) focus
B) disaster zone
C) releaser
D) epicenter
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10
The boundary between the crust and the mantle is called the __________ __________.
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11
__________ __________ are body waves that move much more slowly than P waves.
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12
The total amount of energy released during an earthquake, calculated from the amount of movement and the surface area of a fault, is measured by the _________? __________ scale.
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13
Earthquakes occur along the upper portion of a sinking plate in the __________ zone.
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14
__________ __________ are body waves that can travel through air, liquid, and solid material.
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15
The metallic core is composed of __________ and __________.
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16
When a wave passes from one medium into another, it refracts and sometimes __________.
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17
Surface waves radiate from the __________ along the Earth's surface.
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18
A/an __________ is a sudden motion or trembling of the Earth.
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19
The __________ is located on Earth's surface directly above the initial rupture point of an earthquake.
A) fault
B) upper center
C) focus
D) epicenter
A) fault
B) upper center
C) focus
D) epicenter
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20
__________ waves are elastic waves traveling through rock, produced by an earthquake.
A) Tidal
B) Seismic
C) Electromagnetic
D) Ocean
A) Tidal
B) Seismic
C) Electromagnetic
D) Ocean
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21
The Mercalli scale measures:
A) numbers of earthquake waves generated.
B) the intensity of an earthquake based on its destructive power.
C) the amount of energy released during an earthquake based on the largest recorded body wave.
D) the amount of energy released during an earthquake based on the amount of movement and fault area.
A) numbers of earthquake waves generated.
B) the intensity of an earthquake based on its destructive power.
C) the amount of energy released during an earthquake based on the largest recorded body wave.
D) the amount of energy released during an earthquake based on the amount of movement and fault area.
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22
The San Andreas Fault zone is an example of a/an:
A) earthquake zone at a transform plate boundary.
B) Benioff zone.
C) earthquake zone at a subduction plate boundary.
D) earthquake at a divergent plate boundary.
A) earthquake zone at a transform plate boundary.
B) Benioff zone.
C) earthquake zone at a subduction plate boundary.
D) earthquake at a divergent plate boundary.
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23
__________ waves are the fastest body waves generated by an earthquake.
A) P
B) Q
C) R
D) S
A) P
B) Q
C) R
D) S
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24
Earthquakes occur primarily along plate boundaries because:
A) igneous activity produces all earthquakes.
B) the crust is plastic and flows easily.
C) rock fractures at moving plate boundaries releasing energy.
D) tidal forces are concentrated here.
A) igneous activity produces all earthquakes.
B) the crust is plastic and flows easily.
C) rock fractures at moving plate boundaries releasing energy.
D) tidal forces are concentrated here.
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25
When energy from stress is used to deform rock and give it a permanent new shape, such as a fold, this process is called:
A) elastic deformation.
B) fracture.
C) plastic deformation.
D) slippage.
A) elastic deformation.
B) fracture.
C) plastic deformation.
D) slippage.
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26
The moment magnitude scale:
A) is based on the highest peak recorded on a specific type of seismograph.
B) can be used to locate the earthquake epicenter.
C) is an accurate indicator of the energy released during an earthquake.
D) is measured by recording the amount of structural damage in an area.
A) is based on the highest peak recorded on a specific type of seismograph.
B) can be used to locate the earthquake epicenter.
C) is an accurate indicator of the energy released during an earthquake.
D) is measured by recording the amount of structural damage in an area.
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27
The __________ scale measures the total amount of energy released during an earthquake, based on the amount of movement and the fault surface area.
A) Mercalli
B) Roncalli
C) Richter
D) moment magnitude
A) Mercalli
B) Roncalli
C) Richter
D) moment magnitude
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28
A Benioff zone is an earthquake zone at a __________ plate boundary
A) transform
B) subduction (convergent)
C) divergent
D) rifting
A) transform
B) subduction (convergent)
C) divergent
D) rifting
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29
During the process of __________, soil loses its shear strength and becomes a fluid.
A) liquefaction
B) liquidation
C) subduction
D) fault creeping
A) liquefaction
B) liquidation
C) subduction
D) fault creeping
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30
The Mohorovicic discontinuity is the boundary between __________ and __________.
A) crust, mantle
B) mantle, outer core
C) outer core, inner core
D) continental crust, oceanic crust
A) crust, mantle
B) mantle, outer core
C) outer core, inner core
D) continental crust, oceanic crust
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31
A seismograph measures __________.
A) Earth's temperature
B) magnetic anomalies
C) ground vibrations
D) isostasy
A) Earth's temperature
B) magnetic anomalies
C) ground vibrations
D) isostasy
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32
When solid rock deforms and returns to its original shape, it has undergone:
A) elastic deformation.
B) plastic deformation.
C) liquefaction.
D) brittle fracture.
A) elastic deformation.
B) plastic deformation.
C) liquefaction.
D) brittle fracture.
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33
A strike-slip fault is a __________ fault on which rocks on opposite sides move __________.
A) vertical, horizontally
B) vertical, vertically
C) horizontal, vertically
D) horizontal, horizontally
A) vertical, horizontally
B) vertical, vertically
C) horizontal, vertically
D) horizontal, horizontally
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34
To measure the distance from a recording station to an earthquake epicenter, geologists evaluate the __________ with a time-travel curve.
A) magnitude of an earthquake
B) refraction of P and S waves
C) amplitude of the largest earthquake waves
D) interval between the arrival of P and S waves
A) magnitude of an earthquake
B) refraction of P and S waves
C) amplitude of the largest earthquake waves
D) interval between the arrival of P and S waves
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35
__________ is a continuous, slow movement of solid rock along a fault, usually not causing large earthquakes.
A) Fracturing
B) Fault slipping
C) Fault creep
D) Strike-slip
A) Fracturing
B) Fault slipping
C) Fault creep
D) Strike-slip
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36
S, or shear, waves:
A) are faster than P waves.
B) move through solids, liquids, and gases.
C) move along the Earth's surface only.
D) are characterized by particle movement perpendicular to direction of wave propagation.
A) are faster than P waves.
B) move through solids, liquids, and gases.
C) move along the Earth's surface only.
D) are characterized by particle movement perpendicular to direction of wave propagation.
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37
Earthquakes occur repeatedly along established faults because:
A) they are over a spreading center.
B) when tectonic stress builds, the rock is more likely to move along the fault than to crack again and create a new fault.
C) they are occurring slowly and continuously at a subduction zone.
D) they occur at plate interiors.
A) they are over a spreading center.
B) when tectonic stress builds, the rock is more likely to move along the fault than to crack again and create a new fault.
C) they are occurring slowly and continuously at a subduction zone.
D) they occur at plate interiors.
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38
P, or primary, waves:
A) are characterized by alternate compression and expansion of rock.
B) are the slowest waves generated by an earthquake.
C) pass through liquids only.
D) move along the Earth's surface only.
A) are characterized by alternate compression and expansion of rock.
B) are the slowest waves generated by an earthquake.
C) pass through liquids only.
D) move along the Earth's surface only.
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39
P waves and S waves:
A) move along the Earth's surface only.
B) travel through Earth's interior.
C) do not reflect and refract at boundaries.
D) have very high amplitudes compared to surface waves.
A) move along the Earth's surface only.
B) travel through Earth's interior.
C) do not reflect and refract at boundaries.
D) have very high amplitudes compared to surface waves.
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40
Geologists learned that the outer core is liquid because __________ do not travel through the outer core.
A) surface waves
B) tsunamis
C) P waves
D) S waves
Multiple Choice
A) surface waves
B) tsunamis
C) P waves
D) S waves
Multiple Choice
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41
Where two tectonic plates move past one another, rock near the plate boundary can stretch or compress elastically for decades, and then fracture suddenly and create an earthquake.
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42
Earthquakes occur along the Mid-Oceanic Ridge because:
A) blocks of oceanic crust drop downward as the rift valley opens.
B) two plates slip horizontally past one another.
C) the subducting plate scrapes along the lower crust.
D) large submarine landslides occur on the landward edge of the subduction zone.
A) blocks of oceanic crust drop downward as the rift valley opens.
B) two plates slip horizontally past one another.
C) the subducting plate scrapes along the lower crust.
D) large submarine landslides occur on the landward edge of the subduction zone.
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43
P waves in the Earth travel more than ten times slower than the speed of sound in air.
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44
Moment magnitude most closely reflects the total amount of energy released during an earthquake.
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45
The San Andreas Fault zone is located at a transform plate boundary.
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46
A seismogram records Earth vibrations.
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47
The Mercalli scale expresses the amount of energy released by an earthquake.
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48
The likely source of the Earth's magnetism is:
A) the flow of liquid metals in the outer core.
B) a permanent magnet within the Earth's core.
C) the Sun.
D) convection currents in the mantle.
True/False
A) the flow of liquid metals in the outer core.
B) a permanent magnet within the Earth's core.
C) the Sun.
D) convection currents in the mantle.
True/False
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49
Only deep earthquakes occur along the Mid-Oceanic Ridge.
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50
It is sometimes possible to predict a large earthquake a few seconds before a building begins to shake and topple.
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51
The Mohorovicic discontinuity is the boundary between the outer and inner core.
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52
Earthquakes never occur in plate interiors.
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53
The earthquakes caused when a subducting plate sinks into the mantle:
A) concentrate along the upper portion of the sinking plate.
B) concentrate in the asthenosphere adjacent to the sinking plate.
C) are very shallow earthquakes.
D) occur only at the same time as volcanic eruptions.
A) concentrate along the upper portion of the sinking plate.
B) concentrate in the asthenosphere adjacent to the sinking plate.
C) are very shallow earthquakes.
D) occur only at the same time as volcanic eruptions.
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54
No S waves pass through the center of the Earth because:
A) the crust absorbs all waves.
B) the outer core is liquid.
C) S waves travel only through liquids.
D) S waves are compressional waves.
A) the crust absorbs all waves.
B) the outer core is liquid.
C) S waves travel only through liquids.
D) S waves are compressional waves.
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55
P and S waves travel more rapidly in the crust than they do in the mantle below the asthenosphere.
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56
In liquefaction, the soil loses its shear strength and becomes a solid.
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57
During fault creep:
A) rapid and sudden movement along a fault occurs, usually causing large earthquakes.
B) rapid and sudden movement along a fault occurs, usually not causing large earthquakes.
C) a continuous, slow movement along a fault occurs, usually causing large earthquakes.
D) a continuous, slow movement along a fault occurs, usually not causing large earthquakes.
A) rapid and sudden movement along a fault occurs, usually causing large earthquakes.
B) rapid and sudden movement along a fault occurs, usually not causing large earthquakes.
C) a continuous, slow movement along a fault occurs, usually causing large earthquakes.
D) a continuous, slow movement along a fault occurs, usually not causing large earthquakes.
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58
Primary waves travel more slowly than either type of body wave.
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59
P and S waves travel through all types of material.
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60
A tsunami, produced by an undersea earthquake, may travel at 750 kilometers per hour.
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