BIO 322 FINAL EXAM 2025
(PATHOPHYSIOLOGY) | ALL
QUESTIONS AND CORRECT
ANSWERS | GRADED A+ | VERIFIED
ANSWERS | LATEST VERSION
Save
Terms in this set (99)
,Given the A
following
frequencies for
alleles at a single
locus in a
population of
321 individuals
p=0.69, q=0.15,
r=0.07, s=0.05,
t=0.04. Rank the
alleles in order
to the
probabilities that
they will be fixed
in the
population.
A. p,q,r,s,t
B. p,s,r,q,t
C. t,q,r,s,p
D. It is random
so each is
equally likely to
become fixed
,Given the
equations below
coupling natural
selection and
migration for
estimating the
frequency of the
q allele in the
recipient
population: If the
frequencies of q
in the source and
sink populations
are similar, what
do you infer
about the rate of
change of q as m
approaches 0?
*Find equations*
A. Rate of
change in q per
generation is
driven mostly by
natural selection
, B. Rate of
change in q
depends on
population size
C. Rate of
change in q per
generation is
driven in
approximately
equal
proportions by
selection and
migration
D. Rate of
change in q per
generation is
driven mostly by
migration
E. q will no
longer change -
it has reached
equilibrium
*FIND
ANSWERS*
(PATHOPHYSIOLOGY) | ALL
QUESTIONS AND CORRECT
ANSWERS | GRADED A+ | VERIFIED
ANSWERS | LATEST VERSION
Save
Terms in this set (99)
,Given the A
following
frequencies for
alleles at a single
locus in a
population of
321 individuals
p=0.69, q=0.15,
r=0.07, s=0.05,
t=0.04. Rank the
alleles in order
to the
probabilities that
they will be fixed
in the
population.
A. p,q,r,s,t
B. p,s,r,q,t
C. t,q,r,s,p
D. It is random
so each is
equally likely to
become fixed
,Given the
equations below
coupling natural
selection and
migration for
estimating the
frequency of the
q allele in the
recipient
population: If the
frequencies of q
in the source and
sink populations
are similar, what
do you infer
about the rate of
change of q as m
approaches 0?
*Find equations*
A. Rate of
change in q per
generation is
driven mostly by
natural selection
, B. Rate of
change in q
depends on
population size
C. Rate of
change in q per
generation is
driven in
approximately
equal
proportions by
selection and
migration
D. Rate of
change in q per
generation is
driven mostly by
migration
E. q will no
longer change -
it has reached
equilibrium
*FIND
ANSWERS*