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UCSB EEMB 2 Final Exam 2025 COMPREHENSIVE EXAM QUESTIONS WITH DETAILED VERIFIED AND 100% CORRECT ANSWERS BRAND NEW EXAM ALREADY GRADED A+!!

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UCSB EEMB 2 Final Exam 2025 COMPREHENSIVE EXAM QUESTIONS WITH DETAILED VERIFIED AND 100% CORRECT ANSWERS BRAND NEW EXAM ALREADY GRADED A+!!

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UCSB EEMB

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5/5/25, 2:10 PM UCSB EEMB 2 Final Exam 2025 COMPREHENSIVE EXAM QUESTIONS WITH DETAILED VERIFIED AND 100% CORRECT …




UCSB EEMB 2 Final Exam 2025
COMPREHENSIVE EXAM QUESTIONS WITH
DETAILED VERIFIED AND 100% CORRECT
ANSWERS BRAND NEW EXAM ALREADY
GRADED A+!!

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Terms in this set (78)


the process by which different kinds of living
organisms are thought to have developed and
Evolution
diversified from earlier forms during the history of
the earth

-invertebrate zoology
-first comprehensive theory of evolution -
Lamarck use/disuse model (giraffes)
-inheritance of acquired characteristics
-importance of environments

"Principles of Geology"
-countless small changes occurring over vast
Lyell
periods of time, all according to known natural laws
-earth is ancient and develops slowly

Malthus -pop growth will always overtake the food supply

Cuvier comparative anatomy and extinction

-Allele and genotype frequencies in a population
Hardy-Weinberg
will remain constant from gen to gen in the absence
principle
of other evolutionary influences




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, 5/5/25, 2:10 PM UCSB EEMB 2 Final Exam 2025 COMPREHENSIVE EXAM QUESTIONS WITH DETAILED VERIFIED AND 100% CORRECT …


1. large breeding pop
2. random mating
To remain at H-W
3. no change in allele freq due to mutation
equilibrium
4. no immigration or emigration
5. no natural selection

general equation to freqB = p = (2N[BB] + N[Bb])/2N
calculate individual allele
frequencies in a two- *Bb will never be greater than 50%
allele system (H-W)

Effective population size size of population that can mate

mutual reinforcement occurs among biotic + abiotic
Extinction vortex
processes that drives a population to extinction

transfer of genetic variation from one pop to
Gene flow
another

accumulation of harmful mutations in a small pop -->
mutational metdown loss of fitness + decline in pop size
-caused by genetic drift

negative/positive neg: avoid mating with similar individuals
assortative mating pos: opposite ^

multiple alleles are maintained in the gene pool of a
population at frequencies higher than expected
from genetic drift alone
-could be due to heterozygote advantage,
balancing selection coevolutionary dynamics (other species exhibits a
common trait in first species), negative assort
mating, spatially (temporally fluctuating selection)
-leads to negative frequency - dependent selection:
allele more common decreases fitness

variation in phenotypic traits that can't be grouped
Continuous variation
into discrete categories (ex. weight, height, etc)

mode of natural selection, extreme phenotype
favored over others: causes allele frequency to shift
directional selection
over time
ex. dark moths when smog increases



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