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Test your basic knowledge |
PCAT Biology Evolution
Start Test
Study First
Subjects
:
pcat
,
biology
Instructions:
Answer 50 questions in 15 minutes.
If you are not ready to take this test, you can
study here
.
Match each statement with the correct term.
Don't refresh. All questions and answers are randomly picked and ordered every time you load a test.
This is a study tool. The 3 wrong answers for each question are randomly chosen from answers to other questions. So, you might find at times the answers obvious, but you will see it re-enforces your understanding as you take the test each time.
1. The sum total of all the alleles for any given trait in the population
Gene Pool
Genetic Information
Imprints
Comparative Biochemistry (Physiology)
2. Mates are not randoomly chosen but rather selected according to criteria such as phenotype and proximity - the relative genotype ratios will be affected and will depart from the predictions of the Hardy-Weinberg equilibrium
Natural Selection
Amber
Assortive Mating (Microevolution)
Genetic Drift (Microevolution)
3. Evolutionary history and can be viewed asa branching tree
Convergent Evolution
Evidence of Organic Synthesis
Speciation
Phylogeny
4. More offspring are produced than can survive
Casts
Natural Selection
Competition (struggle for survival)
Overpopulation
5. Change allele frequencies in a population - shifting gene equilibria -can either be favorable or detrimental for the offspring
Natural Selection
Amber
Analogous Structures
Mutation (Microevolution)
6. First forms of life lacked the ability to synthesize their own nutrients; they required performed molecules which made them heterotrophs -energy was present in the form of heat - electricity - solar radiation - including x rays and ultraviolet light
Heterotroph Hypothesis
Genetic Drift (Microevolution)
Overpopulation
Modern Genetics
7. Primitive horse the size of a fox with four toes and short teeth with pointed cusps for feeding on soft leaves
Lamarckian Evolution
Hardy-Weinberg conditions
Eohippus
Molds
8. Genotypes with favorable variations are selected thorugh natural selection - and the frequency of favorable genes increases with the genepool. genotypes with low adaptive values tend to disappear
Saber-Tooth Tigers
Natural Selection (Microevolution)
Analogous Structures
Modern Genetics
9. Change in the genetic makeup of a population with time -explained by the constant propagation of new variations in the genes of a species - some of which impart an adaptive advantage
Gene Flow
Microevolution
Darwin's Theory of Natural Selection
Evolution
10. All members of a particular species inhabiting a given locations
Comparative Embryology
Trilobite
Microevolution
Population
11. P^2+2pq+q^2=1 -p^2=frequency of TT (dominant homozygotes) -2pq=frequency of Tt (heterozygotes) -q^2=frequency of tt (recessive homozygotes)
Coacervate Droplets
Hardy-Weinberg Equation
Geographic Barriers
Isolation
12. Pressures in the environment select for the organism most fit to survive and reproduce -concluded that a member of a particular species that is equipped with beneficial traits - allowing it to cope effectively with the immediate environment - will pr
13. Developing population must compete for the necessities of life. many young must die - and the number of adults in the population generally remains constant from generation to generation
Overpopulation
Competition (struggle for survival)
Variations
Formation of Primitive Cells
14. Missing link between reptiles (has teeth and scales) and birds (also has feathers)
Modern Genetics
Woolly Mammoth
Saber-Tooth Tigers
Archaepteryx
15. Small local population -closely related genetically since mating between members of the same occurs more frequently =influenced by similar environmental factors and thus are subject to the same selection processes
Natural Selection (Microevolution)
Deme
Woolly Mammoth
Vestigial Structures
16. Ancient animals similar to both reptiles and birds and dominant in the Mesozoic era
Trilobite
Dinosaurs
Lamarckian Evolution
Petrification
17. The evolution of new species - which are groups of individuals who can interbreed freely with each other but not with members of other speies
Hardy-Weinberg Principle
Speciation
Gene Frequency
Dinosaurs
18. Organisms in a species have variations that give them an advantage over other members of the species -organisms may have adaptations that are advantageous for survival
Natural Selection
Hardy-Weinberg Equation
Mutation (Microevolution)
Coacervate Droplets
19. Most organisms demonstrate the same basic needs and metabolic processes -require the same nutrients and contain similar cellular organelles and energy storage forms
Hardy-Weinberg conditions
Competition (struggle for survival)
Comparative Biochemistry (Physiology)
Dinosaurs
20. Stages of development of the embryo resemble the stages in an organism's evolutionary history
Overpopulation
Genetic Information
Comparative Embryology
Gene Frequency
21. Species multiplication is generally accompanied by migration to lessen intraspecific competition
Natural Selection
Vestigial Structures
Geographic Barriers
Woolly Mammoth
22. Stanley L. Miller demonstrated the application of UV rays - heat or a combination of these to a mixture of methane - hydrogen - ammonia - and water could result in the formation of complex molecules -after circulation of the gases for one week - he a
Genetic Drift (Microevolution)
Isolation
Amber
Evidence of Organic Synthesis
23. Colloidal protein molecules tend to clump together to form coacervate Droplets
Competition (struggle for survival)
Formation of Primitive Cells
Natural Selection
Gene Pool
24. Form in hollow spaces of rocks - as the organisms within decay
Molds
Amber
Mutation (Microevolution)
Variations
25. Primitive heterotrophs slowly evolved complex biochemical pathways which enabled them to use a wider variety of nutrients -evolved anaerobic respiratory process to convert nutrients into energy -photosynthesis and autotrophic nutrition was developed
Darwin's Theory of Natural Selection
Vestigial Structures
Development of Autotrophs
Natural Selection
26. Fossil resin of trees
Amber
Lamarckian Evolution
Actual Remains
Gene Pool
27. Primitive crustacean (relative to the lobster) - which was dominant form of the early Paleozoic era
Development of New Species
Evolutionary History
Molds
Trilobite
28. Populations will become sufficiently different from each other to be able to reproduce
Reproductively Isolated
Natural Selection (Microevolution)
Natural Selection
Lamarckian Evolution
29. Same basic anatomical features and evolutionary origins -demonstrate similar evolutionary patterns with late divergence of form due to differences in exposure to evolutioinary forces
Modern Genetics
Lamarckian Evolution
Geographic Barriers
Homologous Structures
30. The closer the organisms in the evolutionary scheme - the greater the similarity of their chemical constituents
Genetic Information
Development of New Species
Hardy-Weinberg conditions
Fossils
31. Preserved in asphalt tar pits
Evolutionary History
Saber-Tooth Tigers
Petrification
Amber
32. Real populations have unstable gene pools and migrating populations -agents of this change are natural selection - mutation - assortive mating -genetic drift - and gene flow
Genetic Drift (Microevolution)
Hardy-Weinberg Principle
Comparative Embryology
Microevolution
33. The process in which minerals replace the cells of an organism
Comparative Biochemistry (Physiology)
Variations
Petrification
Vestigial Structures
34. Appear to be useless but apparently had some ancestral functions
Imprints
Assortive Mating (Microevolution)
Vestigial Structures
Darwin's Theory of Natural Selection
35. Only changes in the DNA of the sex cells can be inherited -changes acquired during an individual's life are changes in the characteristics and organization of somatic cells
Gene Flow
Genetic Drift (Microevolution)
Gene Pool
Modern Genetics
36. Impressions left by an organism ex: footprints
Microevolution
Imprints
Homologous Structures
Casts
37. Migration of individuals between populations that will result in a loss or gain of genes - thus changing the composition of a population's gene pool
Gene Flow
Archaepteryx
Natural Selection
Vestigial Structures
38. A cluster of colloidal molecules surrounded by a shell of water -tend to absorb and incorporate substances from the surrounding environment
Evolutionary History
Overpopulation
Coacervate Droplets
Casts
39. The emergence of a number of lineages from a single ancestral species -may diverge into a number of distinct species; the differences between them are those adaptive to a distinct lifestyle - or niche
Adaptive Radiation
Hardy-Weinberg Principle
Development of New Species
Trilobite
40. Results from the geographic isolation of a population
Fossils
Evolution of New Species
Isolation
Phylogeny
41. Population is very large -no mutations affect the gene pool -mating between individuals in the population is random -there is no net migration of individuals into or out of the populations -genes in the population are all equally successful at reprod
Darwin's Theory of Natural Selection
Hardy-Weinberg conditions
Overpopulation
Eohippus
42. Individuals that survive (those with favorable variations) live to adulthood - reproduce their own kind - and thus transmit these favorable variations or adaptations to their offspring
Petrification
Inheritance of the Variations
Archaepteryx
Genetic Drift (Microevolution)
43. Similar functions but may have different evolutionary origins and entirely different patterns of development
Analogous Structures
Phylogeny
Competition (struggle for survival)
Saber-Tooth Tigers
44. Hairy elephant found in the Siberian ice
Formation of Primitive Cells
Evidence of Organic Synthesis
Woolly Mammoth
Heterotroph Hypothesis
45. Incude teeth - bones - etc. rock - tar pits - ice - and amber
Coacervate Droplets
Fossils
Actual Remains
Gene Pool
46. The decimal fraction representing the presence of an allele for all members of a population that have this particular gene locus
Woolly Mammoth
Dinosaurs
Overpopulation
Gene Frequency
47. Common ancestor is found at the trunk and the modern species at the tips of the branches
Coacervate Droplets
Fossils
Branching Evolutionary Tree
Analogous Structures
48. When the gene frequencies of a population are not changing - the gene pool is stable - and population is not evolving
Branching Evolutionary Tree
Hardy-Weinberg Principle
Homologous Structures
Fossils
49. Dissimilar species ahve been found to have evolved from a common ancestor
Genetic Information
Evolutionary History
Branching Evolutionary Tree
Population
50. When groups within the branches develop in similar ways when exposed to similar environments -ex: fish and dolphins
Convergent Evolution
Comparative Biochemistry (Physiology)
Genetic Drift (Microevolution)
Analogous Structures