AP Biology Hardy-Weinberg practice

AP Biology Hardy-Weinberg practice covering crucial concepts, formulas, and applications.

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What does Hardy-Weinberg equilibrium describe?

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It's a state where allele and genotype frequencies remain constant over generations in a population.

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Quiz(10 questions)

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1. Which condition is NOT required for Hardy-Weinberg equilibrium?

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What does Hardy-Weinberg equilibrium describe?

It's a state where allele and genotype frequencies remain constant over generations in a population.

Formula for Hardy-Weinberg principle?

The formula is p2+2pq+q2=1\displaystyle p^2 + 2pq + q^2 = 1, where p\displaystyle p and q\displaystyle q are allele frequencies.

What are the five conditions for Hardy-Weinberg equilibrium?

1. Large population size 2. No mutations 3. No gene flow 4. Random mating 5. No natural selection

True or false: Evolution occurs in Hardy-Weinberg equilibrium.

False, because Hardy-Weinberg equilibrium implies no evolution is taking place.

Difference between p and q?

p is the frequency of the dominant allele, while q is the frequency of the recessive allele.

What does the term 'genetic drift' refer to?

Random changes in allele frequencies in a population, significant in small populations.

Calculate q if p = 0.7.

q = 1 - p = 1 - 0.7 = 0.3.

What does 2pq represent?

2pq represents the frequency of heterozygous genotypes in a population.

True or false: Gene flow can disrupt Hardy-Weinberg equilibrium.

True, because gene flow introduces new alleles, changing allele frequencies.

What is an example of a violation of Hardy-Weinberg conditions?

Natural selection acts on a population, favoring certain alleles over others.

Fill in the blank: In a population with allele frequencies p and q, \displaystyle p + q = ____

1. This reflects that the total frequency of all alleles equals 1.

What is the expected frequency of homozygous recessive individuals?

The frequency is given by q2\displaystyle q^2. If q = 0.3, then q2=0.09\displaystyle q^2 = 0.09.

Difference between natural selection and genetic drift?

Natural selection involves non-random survival, while genetic drift is random.

True or false: Random mating affects allele frequencies.

False, because random mating does not change allele frequencies, only genotype frequencies.

Questions dans ce set(10)

1. Which condition is NOT required for Hardy-Weinberg equilibrium?

A.No mutations
B.Random mating
C.Small population
D.No natural selection

2. If p = 0.6, what is the expected frequency of homozygous dominant individuals?

A.0.36
B.0.24
C.0.6
D.0.16

3. Which of the following scenarios indicates evolutionary change?

A.Random mating
B.Natural selection
C.Large population
D.No mutations

4. What does it mean if a population is in Hardy-Weinberg equilibrium?

A.Evolution is occurring
B.No evolution is occurring
C.Mutation rates are high
D.Population is small

5. What is the expected frequency of heterozygous individuals if p = 0.5 and q = 0.5?

A.0.5
B.0.25
C.0.75
D.0.5

6. Which is NOT a condition of the Hardy-Weinberg principle?

A.Random mating
B.High mutation rate
C.Large population size
D.No selection

7. What impact does gene flow have on a population?

A.Stabilizes allele frequencies
B.Introduces new alleles
C.Decreases genetic diversity
D.Reduces population size

8. If a population has 100 individuals, how many are expected to be homozygous recessive if q = 0.2?

A.4
B.16
C.20
D.25

9. Which of the following could disrupt Hardy-Weinberg equilibrium?

A.Genetic drift
B.Random mating
C.Large population
D.No mutations

10. Fill in the blank: The Hardy-Weinberg principle is essential for understanding _____.

A.evolutionary change
B.genetic drift
C.population structure
D.allele frequencies

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