it's the third one that stumping me as I'm not sure how I would apply nine genotypes to the p^2 +2pq+q^2 equations to ge
Posted: Wed May 18, 2022 3:11 pm
it's the third one that stumping me as I'm not sure how I would apply nine genotypes to the p^2 +2pq+q^2 equations to get the frequency of each genotype under hardy wineburg conditions.
3) consider a locus with four alleles (A, B, C, D). How many genotypes are possible (show them) How would you set up the calculation for each allele frequency? How would you find the frequency for each genotype under HW expectations? What would be the appropriate degrees of freedom for this situation and what is the corresponding critical value? .
5 consider a Locus with four alleles (A, B, C, D). • How many genotypes a gorotefpes A B. CD A AA AB AC AD DD B BA OD SED BD CAC BCC A9 D ADS BD CD DD - As BC AC . AD . How would you set up the calculation for each allent frequen AB AC AD BB BC BD Cc CD De Cube AA to get byn frequencies Do f= 9-1-3=5 Ch?# = 11.070
3) consider a locus with four alleles (A, B, C, D). How many genotypes are possible (show them) How would you set up the calculation for each allele frequency? How would you find the frequency for each genotype under HW expectations? What would be the appropriate degrees of freedom for this situation and what is the corresponding critical value? .
5 consider a Locus with four alleles (A, B, C, D). • How many genotypes a gorotefpes A B. CD A AA AB AC AD DD B BA OD SED BD CAC BCC A9 D ADS BD CD DD - As BC AC . AD . How would you set up the calculation for each allent frequen AB AC AD BB BC BD Cc CD De Cube AA to get byn frequencies Do f= 9-1-3=5 Ch?# = 11.070