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The fo locus. and genotyped for transferrin a voles were trapped in old nelih in

ID: 84820 • Letter: T

Question

The fo locus. and genotyped for transferrin a voles were trapped in old nelih in induana were southern the T allele? 17 frequency of the correct way to calculate the reflects 171) 407 170 17ml completely 407 170 170W alleles (one 27 100. ar4 distinct loci contribute equally and incrementally to a trait and locus 2 distinct C9 D) on allelic single each has for this trait? of reproduction dominant and one recessive), how many different exist the effect 101 Which of the following is Noran assumption of the Hardy law random fashion. selection berg a in population? population must small. migration, or natural B) The is not affected of D) All of the above are correct assumptions relationship between two different phenotypictraits x and y. 102. A direct of inverse Cl weak and D) weak and inverse R2 and Al strong and B) strong and Colorado has two alleles, 103. The locus encoding the enzyme peroxidase in pine trees growing at Glacier Lake, Hardy-Weinberg frequency allele o.3 and the frequency of the R' allele is and the two alleles are in equilibrium, what is the expected of heterozygous R2R pine trees: frequency 0.64 B) 0.24 c)0.48 Use the following Mother's height Daughters height 65 104. What the of the daughters' heights? A)60 B) 62 C) 65 D) 67 is mean 105. What is the standard deviation of the daughters' heights? A) 3 B) v3 18 D) v18 approximately percent of the individuals in this population fall within 3 106. If a trait exhibits anormal distribution, C) 75.6% a standard deviation units of the mean. Al 333% B) 68.3% 5.4% E) 99.7% D) 107. Members of a population with the following genotypes have the indicated numbers of offspring: AAra and AA2 4 and AaA 10 The genotype exhibits the lowest fitness and has a selection coefficient of B) A 0.4 D) A1A1; 0.2 E) A1A1;0.8

Explanation / Answer

99. A. [(2 x407)+ 170/ 2 x (407+170+17)]

Explanation:  To deter mine the allelic frequencies, the number of the said alleles are counted and then divided by the total number of alleles.