Deck 18: Life in the Oceans Depths
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Deck 18: Life in the Oceans Depths
1
All the following are major factors that affect animals living in the deep ocean except:
A) light.
B) temperature.
C) salinity.
D) pressure.
A) light.
B) temperature.
C) salinity.
D) pressure.
C
2
Deep ocean organisms expend little energy to stay afloat because
A) they have air bladders.
B) they have a high oil content.
C) of their small size.
D) they are the same density as the surrounding environment.
E) their metabolism is high.
A) they have air bladders.
B) they have a high oil content.
C) of their small size.
D) they are the same density as the surrounding environment.
E) their metabolism is high.
D
3
Hydrostatic pressure within the oceans increases one atmosphere with every ____ meter increase in depth.
A) 1
B) 5
C) 10
D) 100
E) 200
A) 1
B) 5
C) 10
D) 100
E) 200
C
4
Many deep-sea fishes have tubular eyes with
A) a single large retina.
B) two retinas.
C) multiple retinas.
D) no retina.
E) compound eyes.
A) a single large retina.
B) two retinas.
C) multiple retinas.
D) no retina.
E) compound eyes.
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5
The density of cold water at great depths is
A) lower than surface waters.
B) similar to the surface waters.
C) higher than the surface waters.
D) always the same throughout the water column.
E) variable, depending on latitude.
A) lower than surface waters.
B) similar to the surface waters.
C) higher than the surface waters.
D) always the same throughout the water column.
E) variable, depending on latitude.
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6
All of the following are major components of the deep sea food web except:
A) detritus.
B) nocturnal vertical migration to feed near the surface.
C) larger predators feeding on the small deep sea organisms.
D) photosynthesis.
E) scavenging.
A) detritus.
B) nocturnal vertical migration to feed near the surface.
C) larger predators feeding on the small deep sea organisms.
D) photosynthesis.
E) scavenging.
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7
Organisms that use bioluminescence to attract prey are the:
A) hatchetfish.
B) anglerfish.
C) stomiatoid fish
D) a and b
E) b and c
A) hatchetfish.
B) anglerfish.
C) stomiatoid fish
D) a and b
E) b and c
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8
At the deepest depths many animals find prey by relying on
A) tactile senses.
B) chemical stimuli.
C) large eyes.
D) both a and b
E) both b and c
A) tactile senses.
B) chemical stimuli.
C) large eyes.
D) both a and b
E) both b and c
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9
The hydrostatic pressure within deep sea organisms is:
A) more than the surrounding pressure.
B) equal but opposite force.
C) equal and same force.
D) less than the surrounding pressure.
A) more than the surrounding pressure.
B) equal but opposite force.
C) equal and same force.
D) less than the surrounding pressure.
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10
All of the following apply to the deep sea except:
A) temperatures vary greatly in deep waters.
B) pressures are very high.
C) light is dim or nonexistent.
D) the water is extremely cold.
A) temperatures vary greatly in deep waters.
B) pressures are very high.
C) light is dim or nonexistent.
D) the water is extremely cold.
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11
All of the following are involved in light production of bioluminescent bacteria except:
A) luciferin.
B) luciferase.
C) cellulose.
D) oxygen.
A) luciferin.
B) luciferase.
C) cellulose.
D) oxygen.
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12
The main source of light in the deep sea is:
A) the sun.
B) bioluminescence.
C) underwater volcanoes.
D) dinoflagellates.
E) anglerfish.
A) the sun.
B) bioluminescence.
C) underwater volcanoes.
D) dinoflagellates.
E) anglerfish.
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13
In the twilight zone (150-450 meters) bioluminescence is primarily used for
A) mate selection.
B) detecting prey.
C) locating prey.
D) countershading.
E) species recognition.
A) mate selection.
B) detecting prey.
C) locating prey.
D) countershading.
E) species recognition.
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14
The abiotic factor that has had the greatest evolutionary effects on deep-sea animals is:
A) low temperatures.
B) high pressure.
C) low nutrients.
D) lack of light.
E) varying salinity.
A) low temperatures.
B) high pressure.
C) low nutrients.
D) lack of light.
E) varying salinity.
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15
A male fish that uses bright lights at the top of its tail fins to identify itself to females when breeding is a type of:
A) an anglerfish.
B) a lanternfish.
C) an opossum shrimp.
D) a viperfish.
E) a gulper eel.
A) an anglerfish.
B) a lanternfish.
C) an opossum shrimp.
D) a viperfish.
E) a gulper eel.
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16
Male anglerfish often attach to the female so they can
A) utilize the female's increased ability to find prey.
B) utilize the female's increased predator avoidance.
C) provide sperm to fertilize eggs.
D) avoid being eaten by the female.
E) obtain growth hormones from her bloodstream.
A) utilize the female's increased ability to find prey.
B) utilize the female's increased predator avoidance.
C) provide sperm to fertilize eggs.
D) avoid being eaten by the female.
E) obtain growth hormones from her bloodstream.
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17
Deep-sea fish with large mouths use this adaptation to:
A) take chucks of meat off of larger predators probing the deep ocean in search of food.
B) threaten other competitors.
C) swallow almost anything that comes their way.
D) store their large teeth.
E) filter-feed on plankton.
A) take chucks of meat off of larger predators probing the deep ocean in search of food.
B) threaten other competitors.
C) swallow almost anything that comes their way.
D) store their large teeth.
E) filter-feed on plankton.
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18
Bioluminescence of deep-sea animals may be used for all of the following except:
A) attraction of prey.
B) detection and identification of mates.
C) countershading.
D) photosynthesis.
E) startling a predator.
A) attraction of prey.
B) detection and identification of mates.
C) countershading.
D) photosynthesis.
E) startling a predator.
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19
The density of the organisms living at great depths is about:
A) the same as the surrounding density.
B) greater than the surrounding density.
C) less than the surrounding density.
A) the same as the surrounding density.
B) greater than the surrounding density.
C) less than the surrounding density.
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20
Bioluminescence occurs as a result of
A) luminescent organs.
B) symbiotic bacteria.
C) conversion of protein luciferin into light energy
D) both a and b
E) both b and c
A) luminescent organs.
B) symbiotic bacteria.
C) conversion of protein luciferin into light energy
D) both a and b
E) both b and c
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21
Primary consumers of the vent communities include all except
A) clams.
B) fish.
C) mussels.
D) worms.
E) shrimp.
A) clams.
B) fish.
C) mussels.
D) worms.
E) shrimp.
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22
The base of the food web in the deep sea is:
A) phytoplankton.
B) algae.
C) seagrasses.
D) sinking dead matter.
E) viruses.
A) phytoplankton.
B) algae.
C) seagrasses.
D) sinking dead matter.
E) viruses.
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23
The deep-sea soft-bottom food chain is: ____.
A) infauna → meiofauna → bacteria
B) bacteria → meiofauna → infauna
C) meiofauna → bacteria → infauna
D) meiofauna → infauna → bacteria
A) infauna → meiofauna → bacteria
B) bacteria → meiofauna → infauna
C) meiofauna → bacteria → infauna
D) meiofauna → infauna → bacteria
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24
A possible reason for deep-sea gigantism is:
A) the long life of these animals, compared with shallow-water relatives.
B) the healthy diet of these animals.
C) the high pressure of these waters.
D) the lack of predators, which means longer life and larger size.
E) the high metabolism of deep sea animals.
A) the long life of these animals, compared with shallow-water relatives.
B) the healthy diet of these animals.
C) the high pressure of these waters.
D) the lack of predators, which means longer life and larger size.
E) the high metabolism of deep sea animals.
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25
The vampire squid was placed in the order Vampyromorpha on account of:
A) it has ten arms, but looks like an octopus.
B) it appears to drift rather than actively swim.
C) it has tentacles that can be coiled up.
D) all the above
A) it has ten arms, but looks like an octopus.
B) it appears to drift rather than actively swim.
C) it has tentacles that can be coiled up.
D) all the above
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26
The limpet-like Neopilina was thought to be extinct for over
A) 100 million years.
B) 175 million years.
C) 250 million years.
D) 350 million years.
E) 1 billion years.
A) 100 million years.
B) 175 million years.
C) 250 million years.
D) 350 million years.
E) 1 billion years.
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27
The base of the food web of deep-sea vent communities are:
A) chemosynthetic bacteria.
B) cyanobacteria.
C) dinoflagellates.
D) deep-sea algae.
E) benthic diatoms.
A) chemosynthetic bacteria.
B) cyanobacteria.
C) dinoflagellates.
D) deep-sea algae.
E) benthic diatoms.
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28
The limpet-like Neopilina's ancestors may have led to the following modern groups except:
A) gastropods.
B) chitons.
C) bivalves.
D) cephalopods.
A) gastropods.
B) chitons.
C) bivalves.
D) cephalopods.
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29
Deep-sea bivalves differ from their surface relatives by using their siphons to:
A) detect the presence of nearby prey items.
B) detect the presence of nearby predators.
C) vacuum up food.
D) both a and b
A) detect the presence of nearby prey items.
B) detect the presence of nearby predators.
C) vacuum up food.
D) both a and b
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30
Of the belemnites thought to be extinct, the Challenger Expedition discovered the living fossil genus:
A) Spirula.
B) Latimeria.
C) Neopilina.
D) Calyptegena.
A) Spirula.
B) Latimeria.
C) Neopilina.
D) Calyptegena.
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31
Chemosynthetic bacteria can oxidize
A) magnesium sulfide.
B) copper sulfide.
C) hydrogen sulfide.
D) oxygen sulfide.
E) zinc sulfide.
A) magnesium sulfide.
B) copper sulfide.
C) hydrogen sulfide.
D) oxygen sulfide.
E) zinc sulfide.
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32
White smokers produce a fluid rich in:
A) copper sulfide.
B) iron sulfide.
C) zinc sulfide.
D) magnesium sulfide.
E) sodium chloride.
A) copper sulfide.
B) iron sulfide.
C) zinc sulfide.
D) magnesium sulfide.
E) sodium chloride.
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33
The limiting factor for deep-sea benthic organisms is:
A) high pressure.
B) low temperature.
C) available food.
D) darkness.
E) strong current flow.
A) high pressure.
B) low temperature.
C) available food.
D) darkness.
E) strong current flow.
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34
The giant squids of the deep sea remain a mystery because we lack knowledge of:
A) what they feed on.
B) their exact size.
C) their distribution.
D) their anatomy.
E) the identity of their predators.
A) what they feed on.
B) their exact size.
C) their distribution.
D) their anatomy.
E) the identity of their predators.
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35
An ancient fish that has provided insight into the evolution of tetrapods is the
A) laternfish.
B) tripod fish.
C) coelacanth.
D) redmouth whale fish.
E) gulper eel.
A) laternfish.
B) tripod fish.
C) coelacanth.
D) redmouth whale fish.
E) gulper eel.
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36
Diversity is considered high in the deep sea due to:
A) low dispersal of juveniles leading to speciation.
B) stability and old age of benthic environments.
C) high infaunal abundance.
D) combined low dispersal and long-term stability of the benthic environment.
A) low dispersal of juveniles leading to speciation.
B) stability and old age of benthic environments.
C) high infaunal abundance.
D) combined low dispersal and long-term stability of the benthic environment.
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37
Black smokers produce a fluid rich in:
A) copper sulfides.
B) iron sulfides.
C) zinc sulfides.
D) magnesium sulfides.
E) sodium chloride.
A) copper sulfides.
B) iron sulfides.
C) zinc sulfides.
D) magnesium sulfides.
E) sodium chloride.
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38
Diversity refers to:
A) the abundance of species.
B) the biomass of organisms.
C) the abundance and biomass of organisms.
D) the number of species.
E) the number of individuals of a species.
A) the abundance of species.
B) the biomass of organisms.
C) the abundance and biomass of organisms.
D) the number of species.
E) the number of individuals of a species.
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39
Evolutionary biologists find the deep sea interesting because
A) of the unusual environmental conditions.
B) of the abundance of organisms.
C) the environment has remained stable for 100 million years.
D) the environment is constantly changing due to continental drift.
A) of the unusual environmental conditions.
B) of the abundance of organisms.
C) the environment has remained stable for 100 million years.
D) the environment is constantly changing due to continental drift.
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40
The major predators of giant squid are:
A) gulper eels.
B) sperm whales.
C) giant octopus.
D) vampire squid.
E) viper fish.
A) gulper eels.
B) sperm whales.
C) giant octopus.
D) vampire squid.
E) viper fish.
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41
Match the location with the most closely associated project/vessel that made the discovery of deep-sea life.a.Philippine Trench
b.Challenger Deep
c.depths below the photic zone
Transatlantic cable
b.Challenger Deep
c.depths below the photic zone
Transatlantic cable
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42
Match the location with the most closely associated project/vessel that made the discovery of deep-sea life.a.Philippine Trench
b.Challenger Deep
c.depths below the photic zone
Galathea
b.Challenger Deep
c.depths below the photic zone
Galathea
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43
Photophores of deep-sea fishes may harbor symbiotic bioluminescent bacteria.
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44
Deep-sea vent communities are associated with volcanic ridges on the seafloor and cold-water seeps.
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45
The eyes of many deep-sea fishes are tubular.
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46
MATCHING
Match the use of bioluminescence with its most closely associated species.
a.attract prey
b.confuse predator
c.mate selection
Opossum shrimp
Match the use of bioluminescence with its most closely associated species.
a.attract prey
b.confuse predator
c.mate selection
Opossum shrimp
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47
Vampire squid are actually octopuses.
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48
The deep sea is characterized by being a very unstable environment.
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49
MATCHING
Match the use of bioluminescence with its most closely associated species.
a.attract prey
b.confuse predator
c.mate selection
Anglerfish
Match the use of bioluminescence with its most closely associated species.
a.attract prey
b.confuse predator
c.mate selection
Anglerfish
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50
Larvae of hydrothermal vent animals may aid in the dispersal of these animals.
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51
Vestimentiferan worms filter feed on nearby suspended chemosynthetic bacteria.
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52
Vestimentiferan worms lack digestive tissues.
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53
The bivalves and worms have red flesh due to presence of:
A) pigments absorbed from their prey items.
B) hemoglobin.
C) chromatophores.
D) pigments similar to other deep-sea organisms due to a lack of light.
E) structural colors for camouflage.
A) pigments absorbed from their prey items.
B) hemoglobin.
C) chromatophores.
D) pigments similar to other deep-sea organisms due to a lack of light.
E) structural colors for camouflage.
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54
Match the eye characteristic with the most closely associated depth.
a.tiny, only slightly functional
b.small and less functional
c.large - tubular
Twilight zone
a.tiny, only slightly functional
b.small and less functional
c.large - tubular
Twilight zone
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55
The disphotic zone is the deepest part of the world's oceans.
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56
Below the disphotic zone countershading takes on added importance.
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57
Match the eye characteristic with the most closely associated depth.
a.tiny, only slightly functional
b.small and less functional
c.large - tubular
Deep-sea
a.tiny, only slightly functional
b.small and less functional
c.large - tubular
Deep-sea
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58
Symbiotic chemosynthetic bacteria obtain oxygen from their hosts through:
A) hemoglobin.
B) myoglobin.
C) sulfide-binding proteins.
D) luciferin.
E) breaking down cellulose.
A) hemoglobin.
B) myoglobin.
C) sulfide-binding proteins.
D) luciferin.
E) breaking down cellulose.
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59
Match the location with the most closely associated project/vessel that made the discovery of deep-sea life.a.Philippine Trench
b.Challenger Deep
c.depths below the photic zone
Trieste
b.Challenger Deep
c.depths below the photic zone
Trieste
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60
MATCHING
Match the use of bioluminescence with its most closely associated species.
a.attract prey
b.confuse predator
c.mate selection
Laternfish
Match the use of bioluminescence with its most closely associated species.
a.attract prey
b.confuse predator
c.mate selection
Laternfish
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61
How do animals living in the deep sea tolerate the high pressure and low temperature of these depths?
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62
Match the tropic level with the most closely associated vent community species.
a.primary consumers
b.primary producers
c.secondary consumers
Crabs
a.primary consumers
b.primary producers
c.secondary consumers
Crabs
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63
Match the tropic level with the most closely associated vent community species.
a.primary consumers
b.primary producers
c.secondary consumers
Bacteria
a.primary consumers
b.primary producers
c.secondary consumers
Bacteria
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64
Match the tropic level with the most closely associated vent community species.
a.primary consumers
b.primary producers
c.secondary consumers
Vestimentiferan worms
a.primary consumers
b.primary producers
c.secondary consumers
Vestimentiferan worms
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65
What physical features characterize the deep sea? Describe three factors.
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66
Match the eye characteristic with the most closely associated depth.
a.tiny, only slightly functional
b.small and less functional
c.large - tubular
Deepest regions
a.tiny, only slightly functional
b.small and less functional
c.large - tubular
Deepest regions
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67
Match the characteristic with the most closely associated diversity component.
a.number of individuals
b.number of species
c.how long a community persists
Abundance
a.number of individuals
b.number of species
c.how long a community persists
Abundance
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68
Match the food capture mechanism with the most closely associated species.
a.curved, fanglike teeth; chin barbel
b.dorsal spine lure, vacuum ingestion
c.hinged jaws, expandable stomach
Gulper eels
a.curved, fanglike teeth; chin barbel
b.dorsal spine lure, vacuum ingestion
c.hinged jaws, expandable stomach
Gulper eels
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69
Match the term with the most closely associated manned deep diving device.a.bathyscaphe
b.ROV
c.manned submersible
Trieste
b.ROV
c.manned submersible
Trieste
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70
Match the term with the most closely associated manned deep diving device.a.bathyscaphe
b.ROV
c.manned submersible
JASON II
b.ROV
c.manned submersible
JASON II
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71
Match the food capture mechanism with the most closely associated species.
a.curved, fanglike teeth; chin barbel
b.dorsal spine lure, vacuum ingestion
c.hinged jaws, expandable stomach
Anglerfish
a.curved, fanglike teeth; chin barbel
b.dorsal spine lure, vacuum ingestion
c.hinged jaws, expandable stomach
Anglerfish
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72
Why is it necessary for males of some species of anglerfish to parasitize the females?
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73
Why did the British naturalist Edward Forbes conclude that animal life could not exist in the sea below a depth of 55 meters?
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74
Match the characteristic with the most closely associated diversity component.
a.number of individuals
b.number of species
c.how long a community persists
Stability
a.number of individuals
b.number of species
c.how long a community persists
Stability
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75
Match the food capture mechanism with the most closely associated species.
a.curved, fanglike teeth; chin barbel
b.dorsal spine lure, vacuum ingestion
c.hinged jaws, expandable stomach
Stomiatoids
a.curved, fanglike teeth; chin barbel
b.dorsal spine lure, vacuum ingestion
c.hinged jaws, expandable stomach
Stomiatoids
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76
Describe at least 3 functions of bioluminescence in deep-sea fishes.
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77
Match the characteristic with the most closely associated diversity component.
a.number of individuals
b.number of species
c.how long a community persists
Diversity
a.number of individuals
b.number of species
c.how long a community persists
Diversity
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78
Match the term with the most closely associated manned deep diving device.a.bathyscaphe
b.ROV
c.manned submersible
Alvin
b.ROV
c.manned submersible
Alvin
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79
Why do disphotic zone fishes exhibit countershading but not fishes that live in deeper waters?
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80
Describe at least 3 adaptations of deep-sea fishes for improving feeding efficiency.
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