TLS Online TPP Program

#Question id: 11376


Robert MacArthur and E. O. Wilson developed a general model of island biogeography, In this figure, terms A, B, C and D in order are

 


#Unit 10. Ecological Principles
  1. Extinction rate at large island , Immigration rate at small island , Extinction rate at small Island, Immigration rate at largel island

  2. Immigration rate at far island , extinction rate at closed island , Extinction  rate at small Island, Immigration rate at small island
  3. Immigration rate at closed island, Immigration rate at far island, Extinction rate at small Island, Extinction rate at large island
  4. Immigration rate at small island, Immigration rate at large island, Extinction rate at closed Island, Extinction rate at far island
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TLS Online TPP Program

#Question id: 3336

#Unit 11. Evolution and Behavior

There are 4 alleles at a given locus in a diploid population and all alleles are equal abundant. What is the proportion of all homozygotes in the population?

TLS Online TPP Program

#Question id: 3337

#Unit 11. Evolution and Behavior

Small populations are threatened by a least loss of genetic variability is due to

TLS Online TPP Program

#Question id: 3338

#Unit 11. Evolution and Behavior

If the expected frequency of heterozygotes in a population (based on the Hardy–Weinberg law) is 0.4, but the observed frequency is 0.2, what is the inbreeding coefficient?

TLS Online TPP Program

#Question id: 3339

#Unit 11. Evolution and Behavior

In a plant species, flower color locus either homozygous or heterozygous with genotype RR-red, Rr- pink and rr- white. The Proportional of pink flower in generation 0 is .50.  What is the level of remaining pink flower in a third generation of repeated selfing? 

TLS Online TPP Program

#Question id: 3340

#Unit 11. Evolution and Behavior

Which of the following statements is NOT correct regarding effect of genetic drift?

TLS Online TPP Program

#Question id: 3341

#Unit 11. Evolution and Behavior

In a given population of 400 individuals, 64 percent of population is caused  cancer due to completely dominat allele B. Assuming the population is in Hardy- Weinberg equilibrium, which of the following is the expected proportion of individuals who are not expected to develop the cancer?