A) Arctic Ocean B) Pacific Ocean C) Atlantic Ocean D) Indian Ocean
A) Black B) Grey C) White D) Blue
A) Barking sounds B) Purring sounds C) Roaring sounds D) Whistles and clicks
A) Oil spills, hunting, and ship strikes B) Pollution, habitat degradation, and noise pollution C) Predation, overfishing, and climate change D) Genetic disorders, infectious diseases, and parasites
A) Visual observation B) Echolocation C) Trapping D) Chasing
A) Seals B) Crustaceans C) Fish D) Plants
A) Four B) Two C) One D) Three
A) Taste B) Sight C) Smell D) Hearing
A) Balaenopteridae B) Phocoenidae C) Monodontidae D) Delphinidae
A) Fins on their flippers B) Absence of a dorsal fin C) Streamlined body D) Large dorsal fin
A) Fin B) Tusk C) Melon D) Blubber
A) 7 m (23 ft) B) 3 m (10 ft) C) 5.5 m (18 ft) D) 10 m (33 ft)
A) 500 m (1,640 ft) B) 700 m (2,300 ft) C) 100 m (330 ft) D) 1,000 m (3,280 ft)
A) Natural predators B) Climate change C) Contamination D) Overfishing
A) Endangered B) Least concern C) Extinct D) Near threatened
A) Arctic Ocean B) Cook Inlet in Alaska C) Bering Sea D) Chukchi Sea
A) Sharks B) Dolphins C) Polar bears D) Seals
A) 10 animals B) 50 animals C) 20 animals D) 2 animals
A) Plankton B) Opportunistic feeders C) Seaweed D) Fish only
A) They are not considered whales B) They are not hunted C) Aboriginal whaling is excluded from the 1986 moratorium D) They are not endangered
A) Western Hudson Bay B) Eastern Hudson Bay C) Southern Hudson Bay D) Northern Hudson Bay
A) Greek B) Latin C) English D) Russian
A) Dolphin B) Sea canary C) Beluga D) White whale
A) Latin B) English C) Greek D) Russian
A) Sea singer B) Whale singer C) Ocean bird D) Sea canary
A) Squeal B) Whistle C) Squeak D) Roar
A) Fin B) Wingless C) Dolphin D) White
A) Dolphin B) White C) Wingless D) Fin
A) Peter Simon Pallas B) Gregor Mendel C) Charles Darwin D) Carl Linnaeus
A) Pinnipedia B) Odontoceti C) Cetacea D) Mysticeti
A) Beluga B) Porpoise C) Dolphin D) Narwhal
A) A skull with intermediate characteristics B) Fossilized bones in Vermont C) Genomic sequence similarity D) Shared common ancestor
A) 90% B) 95% C) 97.87% D) 85%
A) Monodon monoceros B) Bohaskaia monodontoides C) Denebola brachycephala D) Casatia thermophila
A) Late Miocene B) Early Pliocene C) Late Pliocene D) Early Miocene
A) Virginia B) Baja California C) Vermont, United States D) Charlotte, Vermont
A) Dinosaur fossil B) The Charlotte whale C) Ammonite fossil D) Trilobite fossil
A) Up to 50 years. B) Up to 70 or 80 years. C) Up to 100 years. D) Up to 30 years.
A) Females are 25% longer than males. B) Males and females are the same size. C) Males are 25% longer than females. D) Males are 50% longer than females.
A) Up to 5 cm. B) Up to 15 cm. C) Up to 10 cm. D) Up to 20 cm.
A) By contracting their neck muscles B) By changing their body temperature C) By using their teeth D) By blowing air around their sinuses
A) By expanding the melon B) By opening its mouth C) By contracting the muscular covering D) By moving its tail
A) Hard, dense, fibrous connective tissue. B) Bones similar to those in human arms. C) Thin, flexible skin. D) Soft cartilage.
A) Tongue B) Ears C) Lower jaw D) Nose
A) Fibers B) Cones C) Rods D) Cilia
A) Display typical alarm behaviour B) Swim away quickly C) Approach the source of the blood D) Ignore it
A) They regulate body temperature B) They enhance hearing C) They improve vision D) They detect different tastes
A) No range B) Infinite range C) Long range D) Short range
A) Herd diving B) Swarming C) Pod jumping D) Milling
A) Feeding behavior B) Substitute behavior C) Sleeping behavior D) Aggressive behavior
A) Kindergartens B) Pods C) Families D) Pleas
A) 600 meters B) Over 900 meters C) 700 meters D) 500 meters
A) Shrimp B) Amphipods C) Echiurid worms D) Octopus
A) Humpback whales B) Bowhead whales C) Blue whales D) Killer whales
A) During the spring months B) During the mating season C) During the summer months D) During the winter months
A) 25% B) 30% C) 35% D) 28%
A) For the first three months B) For the first year C) For the first six months D) For the first two years
A) Nocturnal migration B) Alloparenting C) Solitary hunting D) Diurnal feeding
A) Webbed feet B) Unusual dentition C) Striped skin D) Long tusks
A) Midwater hunting B) Hunting on the seabed C) Filter feeding D) Surface feeding
A) An American researcher B) A Russian researcher C) A Japanese researcher D) A Canadian researcher
A) Jaw-clapping B) Blowhole-blowing C) Tail-beating D) Fin-slapping
A) 6,000 kilometers B) 9,000 kilometers C) 3,000 kilometers D) 12,000 kilometers
A) Open ocean B) Deep sea trenches C) Polar ice caps D) River estuaries
A) 14,500 individuals B) 1,151 individuals C) 3,400–3,800 individuals D) 55,000 individuals
A) Southwest Greenland B) Eastern Canadian Arctic C) Ulbansky D) Eastern Bering Sea
A) 39 individuals B) 17 individuals C) 152 individuals D) 62 individuals
A) Eastern Chukchi Sea B) Bristol Bay C) Cook Inlet D) Northern Canadian sites
A) Carrying Capacity equation B) Population Density equation C) Potential Biological Removal equation D) Maximum Sustainable Yield equation
A) The meat B) The teeth C) The vertebrae D) The skin
A) The teeth B) The skin (muktuk) C) The meat D) The vertebrae
A) 55,000 individuals B) 14,500 individuals C) 889 individuals D) 21,400 individuals
A) 152 individuals B) 17 individuals C) 39 individuals D) 62 individuals
A) 1,500 individuals B) 2,500 individuals C) 549 individuals D) 4,000 individuals
A) Coal tar B) Vegetable oil C) Mineral oil D) Petroleum jelly
A) 1950 B) 1925 C) 1940 D) 1938
A) The 1960s B) The 1940s C) The 1970s D) The 1950s
A) La Chasse au Beluga B) Les Océans de l'Est C) Le Monde des Cétacés D) Pour la suite du monde
A) 1200 kg. B) 935 kg. C) 500 kg. D) 800 kg.
A) 27%. B) 5%. C) 10%. D) 50%.
A) 50 km. B) 200 km. C) 10 km. D) 100 km.
A) Papillomaviruses B) Erysipelothrix rhusiopathiae C) Anisakis simplex D) Sarcocystis
A) United States B) Norway C) China D) Russia
A) Lumbar vertebrae B) Thoracic vertebrae C) Unfused cervical vertebrae D) Fused cervical vertebrae
A) Ruby B) Naluark C) Little White D) Little Grey
A) 2006 B) 2016 C) 2018 D) 1992
A) Whale and Dolphin Conservation B) Merlin Entertainments C) Blackstone Group D) SeaWorld
A) Erysipelothrix rhusiopathiae B) Contracaecum C) Anisakis simplex D) Sarcocystis
A) Naluark B) Ruby C) Little Grey D) Little White
A) Soviet Navy B) United States Navy C) Canadian Navy D) Russian Navy
A) Erysipelothrix rhusiopathiae B) Ciliate protozoa C) Papillomaviruses D) Herpesviruses
A) Pharurus pallasii B) Anisakis simplex C) Hadwenius seymouri D) Leucasiella arctica
A) Not specified B) Little White C) Naluark D) Ruby
A) Pharurus pallasii B) Hadwenius seymouri C) Anisakis simplex D) Leucasiella arctica
A) Pharurus pallasii B) Leucasiella arctica C) Anisakis simplex D) Hadwenius seymouri
A) Chasing the belugas B) Feeding the belugas C) Touching the belugas D) Keeping boats at a distance
A) Thames Estuary B) Charlottetown Harbour C) Saint Lawrence River D) Hudson Bay
A) Swim faster than wild belugas B) Mimic human speech C) Change color D) Fly short distances
A) Vulnerable B) Least concern C) Endangered D) Critically endangered
A) Increased human access disrupting habitats B) Reduced boat traffic C) Decreased predation by killer whales D) More stable ice conditions |