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Population Genetic (Week 10)

Total questions: 10

Worksheet time: 5mins

Name
Class
Date
1.

What does the Hardy-Weinberg equilibrium measure?

a)

changes in allele frequencies

b)

numbers of mutations

c)

goodness of fit

d)

genetic diversity

2.

The total collection of genes in a population at any one time.

a)

population genetics

b)

gene pool

c)

gene flow

d)

allele frequency

3.

The theory of population genetics and how evolution occurs includes all but which of the following

a)

Mating must be random

b)

The size of the population is small

c)

There is no influx of genes from other population

d)

No genotype has selective advantage over another

4.

The population is in genetic equilibrium if

a)

No random mating

b)

Natural selection occurs

c)

The population size is small

d)

No migration

5.

p+q = 1

p is

a)

Frequency of dominant phenotype

b)

Frequency of dominant genotype

c)

Frequency of dominant allele

d)

Frequency of recessive allele

6.

p+q = 1

p is

a)

Frequency of dominant phenotype

b)

Frequency of dominant genotype

c)

Frequency of dominant allele

d)

Frequency of recessive allele

7.

Which of the following represent heterozygous frequency

a)

2pq

b)

p2

c)

q2

d)

pq

8.

Frequency of dominant phenotype in a population in genetic equilibrium represented by

a)

p2 + 2pq

b)

p + p2

c)

2pq + q2

d)

2pq

9.

Frequency of recessive phenotype in a population in genetic equilibrium represented by

a)

2pq

b)

p2

c)

q2

d)

q

10.

Frequency of recessive allele in a population in genetic equilibrium represented by

a)

2pq

b)

p2

c)

q2

d)

q