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Gregor Mendel's experiments involved breeding pea plants with different traits (such as tall or short height, yellow or green seeds) and observing how these traits were inherited across generations. He formulated principles of inheritance, which later became known as Mendel's laws of inheritance. Mendel's experiments laid the foundation for the modern field of genetics.

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Why did mendel use pea plants in his experiment?

Mendel used pea plants in his experiment because they have distinct traits that are easy to observe and manipulate. Pea plants also have a relatively short life cycle which allowed Mendel to conduct multiple generations of controlled breeding experiments. This made it an ideal model organism for studying inheritance patterns.


Typical ratio of traits in mendel first experiment?

In Mendel's first experiment with pea plants, he observed a typical ratio of 3:1 for dominant to recessive traits. This ratio occurs when a heterozygous individual (Aa) is crossed with another heterozygous individual (Aa), resulting in a 25% chance of the offspring inheriting the recessive trait.


What was the radio of dominant to recessive phenotype in the F2 generation of Mendel's experiment?

The ratio of dominant to recessive phenotype in the F2 generation of Mendel's experiment was 3:1. This means that for every 3 individuals expressing the dominant trait, there was 1 individual expressing the recessive trait.


What was the original generation of pea plants in mendels experiment?

P1 or parental


Describ Mendel's first set of experiments?

In his first set of experiments, Mendel crossed purebred pea plants with different traits, such as tall and short plants. He observed the inheritance patterns in the offspring of these crosses over several generations. Mendel showed that traits are inherited independently and proposed the laws of segregation and independent assortment.