show work that explains how the nawer was reached
show work that explains how the nawer was reached That is the frequency of the A1...
A gene has four alleles, A1, A2, A3, and A4. The alleles occur in a population at the following frequencies: A1=0.2, A2=0.1, A3=0.4, A4=0.3. Compute the following: a) Probability that a single allele chosen at random is either A1 or A4 b) Probability than an individual as two A1 alleles c) Probability that an individual has one A1 and one A3 allele d) Probability that an individual is NOT A1A1 e) Probability that if we drew two individuals at random,...
p is the frequency of a new mutation: -i.e. In a population containing only allele A2, an allele mutates into allele A1 Question: A single mutant allele A2 would start at p=0.1 in a population with ____ (how many) individuals? A.) 10 B.) 5 C.) 20
A population that we know to be in HWE has the following allele frequencies: Allele Frequency A1 0.1 A2 0.3 A3 0.6 1. If you sample one individual at random from this population, what is the probability that it will be a heterozygote? (Show your work;
An allele, A1, in a diploid population of size N, starts at an allele frequency of 0.7. What is the expected allele frequency in the next generation? In the 100thgeneration? What is the probability that the allele frequency will increase in the next generation? If you follow 100 populations that start with the same conditions for millions of generations, how many would you expect to be fixed for A1?
how to generating the binary code by arithmetic coding
1. Assume there are four letters from an information source with probabilities as A1 0.5 A2 0.3 АЗ 0.1 0.1 A4 Generate the tag and find the corresponding gaps and binary values for each stage and the sequence of the symbols which are coded are ala3a2a4al (25 Marks)
1. Assume there are four letters from an information source with probabilities as A1 0.5 A2 0.3 АЗ 0.1 0.1 A4 Generate the...
BIOL400 Hardy-Weinberg Questions If the frequency of the dominant purple allele is 0.7 and the frequency of the recessive white allele is 0.3 what percent of the population will be purple? Assuming Hardy-Weinberg Equilibrium: if the frequency of white flowers is 4%, what are the allele frequencies for the purple and white alleles. If the frequency of the round allele is 0.5 and wrinkled allele is 0.5. What percent will be wrinkled? If the frequency of the sickle cell allele...
Find an optimal parenthesizing to multiply the following matrices. Apply dynamic programming and show your work: A1 x A2 x A3 x A4 x A5 x A6 Size of A1 : 30 x 80 Size of A2 : 80 x 100 Size of A3 : 100 x 5 Size of A4 : 5 x 200 Size of A5 :200 x 7 Size of A6: 7 x 7
In a large random-mating population of lab mice, the A1 allele is dominate and individuals that express this phenotype have a higher fitness than the A2A2 wild-type mice. The fitnesses are 1 and .75 respectively. Initially the allele frequencies are A1=0.4 and A2=0.6 Assume each generation has 100 zygotes form In the first generation, how many individuals will fail to reproduce? What will the new frequencies of the A1 allele be?
5 Suppose that you have a large population (>100,000 individuals). At a neutral locus in this population, the allele frequencies are freq(A1) = 0.25, freq(A2) = 0.75. You sample that population to form 100 sub-populations of 20 individuals each. Over the next 40 generations, all these sub-populations go to fixation at that locus. Approximately how many go to fixation for allele A1 vs. allele A2? 75 at A1, 25 at A2 50 at A1, 50 at A2 25 at A1,...
22. Imagine that a new population of humans is established on a new planet from ten randomly selected people in your genetics class (five males and five females). Over thousands of years, the descendants of those ten people reproduce and prosper, but do not reflect well the diversity of humans on Earth. This change in the diversity of people on the new planet is an example of inbreeding b) assortative mating c) the founder effect d) the bottleneck effect 23....