Answer:
Frequency of homozygous TT individual

Frequency of homozygous tt individual

Frequency of homozygous Tt individual

Step-by-step explanation:
Given
Tall (T) is dominant to short (t)
Allele frequency (p) of dominant allele "T"
Allele frequency (q) of recessive allele "t"

Frequency of homozygous TT individual

Frequency of homozygous tt individual

As per Hardy Weinberg's second equilibrium equation -

Substituting the value of
and
we get -

Frequency of homozygous TT individual

Frequency of homozygous tt individual

Frequency of homozygous Tt individual
