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Question
question #13
sickle cell anemia is an autosomal recessive disorder. if each parent carries one sickle cell allele, what
are the chances that their child will have sickle cell anemia?
a no chance
b one in four
c two in four
d three in four
question #14
the diagram below shows a change that occurred in a pair of chromosomes during meiosis.
after fertilization, the alteration that occurred will most likely
Question #11 Solution (Step-by-Step Format)
Step 1: Identify Parental Genotypes
Both parents are carriers of the sickle cell allele, so their genotypes are \( Aa \) (heterozygous, with \( A \) = normal allele, \( a \) = sickle cell allele).
Step 2: Set Up the Punnett Square
For a cross \( Aa \times Aa \), the possible gametes from each parent are \( A \) and \( a \). The Punnett square is:
| \( A \) | \( a \) | |
|---|---|---|
| \( a \) | \( Aa \) | \( aa \) |
Step 3: Calculate Probability of \( aa \)
Sickle cell anemia requires the homozygous recessive genotype \( aa \). From the Punnett square, only 1 of the 4 possible genotypes is \( aa \). Thus, the probability is \( \frac{1}{4} \) (one in four).
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B. one in four
Question #15 (Incomplete, but if we assume the diagram shows a chromosomal alteration like crossing over or translocation):
(Note: The question is cut off, but if it involves chromosomal changes during meiosis (e.g., crossing over, translocation, or nondisjunction), the alteration (e.g., a mutation or rearrangement) would most likely be passed to the offspring after fertilization, as meiosis produces gametes, and fertilization combines gametes. However, without the full question, a precise answer cannot be provided. If you share the complete question, I can assist further.)