MCQ on Population Genetics and Hardy-Weinberg Equation (Genetics MCQ-3)


MCQ on Hardy-Weinberg Equilibrium

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Genetics Quiz on Population Genetics and Hardy-Weinberg Equilibrium 

This question set on Genetics MCQ-03: Population Genetics and hardy-Weinberg Equilibrium consists of 10 questions in MCQ format. Please select the correct answer and at the end of the test, you have to click on 'SUBMIT' button to see your Score and the Correct Answers. 

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1. Consider that two populations are growing exponentially with the initial difference in growth rate of 10%. After 10 generations the difference between population size would be:
2. In a population of 10 million individuals birth rate is 19 per 1000 and the death rate is 14 per 1000. The annual rise in the population would be:
3. Which of the following statement is correct about a population showing evolution?
4. If the frequency of recessive allele causing disease in the homozygous recessive condition in a population of 10000 is 0.04, then the number of people affected by the disease will be:
5. During the process of ecological succession, the arrival of late successional stage depends on environment modified by an earlier successional stage. The process is referred to as:
6. In a population, the frequency of A1 is 0.75 and A2 is 0.25. After one generation the phenotype frequency will be:
7. A population of 200 is in Hardy‐Weinberg equilibrium with the allele frequency of ‘A’ = 0.7 and ‘a’ = 0.3. The number of carriers in population will be:
8. In a population with two alleles ‘b’ and ‘B’ having allele frequency 0.7 and 0.3 in Hardy‐Weinberg equilibrium, how many individuals in a sample of 250 can be expected to be heterozygous (bB)?
9. If all organisms in a population are triploid, then Hardy-Weinberg theorem applicable will be:
10. The frequency of blood group O in a population is 25%. Remaining individuals of the population have an equal number of blood group A and B. What would be the ratio of allelic frequency between blood group O, A and B

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