00. Laws of Inheritance by Mendel
Principle of Inheritance and Variation

184283 When a tall pea plant crossed with dwarf pea plant the \(F_{2}\) generation produced 390 tall and 130 dwarf plants, then how many plants will show Heterozygous condition.

1 130
2 260
3 390
4 520
Principle of Inheritance and Variation

184285 Heterozygous tall plants were crossed with dwarf plants, then the percentage of dwarf plants produced in the next progeny

1 25
2 75
3 50
4 65
Principle of Inheritance and Variation

184288 The ratio of homozygous tall and dwarf plant in \(F_{2}\) generation in monohybrid cross is

1 \(2: 1\)
2 \(1: 2: 1\)
3 \(3: 1\)
4 \(1: 1\)
Principle of Inheritance and Variation

184289 The experimental material in Mendels experiment was

1 Pisum sativum
2 Oryza sativa
3 Mirabilis jalapa
4 None of these
Principle of Inheritance and Variation

184297 In a population \(\mathrm{N}_{\mathrm{AA}}\) and \(\mathrm{N}_{\mathrm{aa}}\) are the numbers of homozygous individuals of allele ' \(A\) ' and ' \(a\) ' respectively, and \(\mathbf{N}_{\mathrm{Aa}}\) is the number of heterozygous individuals. Which one of the following options is the allele frequency of ' \(A\) ' and ' \(a\) ' in population with \(\mathrm{N}_{\mathrm{AA}}=90, \mathrm{~N}_{\mathrm{Aa}}=40\) and \(\mathbf{N}_{\mathrm{aa}}=\mathbf{7 0}\) ?

1 \(\mathrm{A}=0.55\) and \(\mathrm{a}=0.45\)
2 \(\mathrm{A}=0.40\) and \(\mathrm{a}=0.60\)
3 \(\mathrm{A}=0.35\) and \(\mathrm{a}=0.65\)
4 \(\mathrm{A}=0.25\) and \(\mathrm{a}=0.75\)
Principle of Inheritance and Variation

184283 When a tall pea plant crossed with dwarf pea plant the \(F_{2}\) generation produced 390 tall and 130 dwarf plants, then how many plants will show Heterozygous condition.

1 130
2 260
3 390
4 520
Principle of Inheritance and Variation

184285 Heterozygous tall plants were crossed with dwarf plants, then the percentage of dwarf plants produced in the next progeny

1 25
2 75
3 50
4 65
Principle of Inheritance and Variation

184288 The ratio of homozygous tall and dwarf plant in \(F_{2}\) generation in monohybrid cross is

1 \(2: 1\)
2 \(1: 2: 1\)
3 \(3: 1\)
4 \(1: 1\)
Principle of Inheritance and Variation

184289 The experimental material in Mendels experiment was

1 Pisum sativum
2 Oryza sativa
3 Mirabilis jalapa
4 None of these
Principle of Inheritance and Variation

184297 In a population \(\mathrm{N}_{\mathrm{AA}}\) and \(\mathrm{N}_{\mathrm{aa}}\) are the numbers of homozygous individuals of allele ' \(A\) ' and ' \(a\) ' respectively, and \(\mathbf{N}_{\mathrm{Aa}}\) is the number of heterozygous individuals. Which one of the following options is the allele frequency of ' \(A\) ' and ' \(a\) ' in population with \(\mathrm{N}_{\mathrm{AA}}=90, \mathrm{~N}_{\mathrm{Aa}}=40\) and \(\mathbf{N}_{\mathrm{aa}}=\mathbf{7 0}\) ?

1 \(\mathrm{A}=0.55\) and \(\mathrm{a}=0.45\)
2 \(\mathrm{A}=0.40\) and \(\mathrm{a}=0.60\)
3 \(\mathrm{A}=0.35\) and \(\mathrm{a}=0.65\)
4 \(\mathrm{A}=0.25\) and \(\mathrm{a}=0.75\)
Principle of Inheritance and Variation

184283 When a tall pea plant crossed with dwarf pea plant the \(F_{2}\) generation produced 390 tall and 130 dwarf plants, then how many plants will show Heterozygous condition.

1 130
2 260
3 390
4 520
Principle of Inheritance and Variation

184285 Heterozygous tall plants were crossed with dwarf plants, then the percentage of dwarf plants produced in the next progeny

1 25
2 75
3 50
4 65
Principle of Inheritance and Variation

184288 The ratio of homozygous tall and dwarf plant in \(F_{2}\) generation in monohybrid cross is

1 \(2: 1\)
2 \(1: 2: 1\)
3 \(3: 1\)
4 \(1: 1\)
Principle of Inheritance and Variation

184289 The experimental material in Mendels experiment was

1 Pisum sativum
2 Oryza sativa
3 Mirabilis jalapa
4 None of these
Principle of Inheritance and Variation

184297 In a population \(\mathrm{N}_{\mathrm{AA}}\) and \(\mathrm{N}_{\mathrm{aa}}\) are the numbers of homozygous individuals of allele ' \(A\) ' and ' \(a\) ' respectively, and \(\mathbf{N}_{\mathrm{Aa}}\) is the number of heterozygous individuals. Which one of the following options is the allele frequency of ' \(A\) ' and ' \(a\) ' in population with \(\mathrm{N}_{\mathrm{AA}}=90, \mathrm{~N}_{\mathrm{Aa}}=40\) and \(\mathbf{N}_{\mathrm{aa}}=\mathbf{7 0}\) ?

1 \(\mathrm{A}=0.55\) and \(\mathrm{a}=0.45\)
2 \(\mathrm{A}=0.40\) and \(\mathrm{a}=0.60\)
3 \(\mathrm{A}=0.35\) and \(\mathrm{a}=0.65\)
4 \(\mathrm{A}=0.25\) and \(\mathrm{a}=0.75\)
Principle of Inheritance and Variation

184283 When a tall pea plant crossed with dwarf pea plant the \(F_{2}\) generation produced 390 tall and 130 dwarf plants, then how many plants will show Heterozygous condition.

1 130
2 260
3 390
4 520
Principle of Inheritance and Variation

184285 Heterozygous tall plants were crossed with dwarf plants, then the percentage of dwarf plants produced in the next progeny

1 25
2 75
3 50
4 65
Principle of Inheritance and Variation

184288 The ratio of homozygous tall and dwarf plant in \(F_{2}\) generation in monohybrid cross is

1 \(2: 1\)
2 \(1: 2: 1\)
3 \(3: 1\)
4 \(1: 1\)
Principle of Inheritance and Variation

184289 The experimental material in Mendels experiment was

1 Pisum sativum
2 Oryza sativa
3 Mirabilis jalapa
4 None of these
Principle of Inheritance and Variation

184297 In a population \(\mathrm{N}_{\mathrm{AA}}\) and \(\mathrm{N}_{\mathrm{aa}}\) are the numbers of homozygous individuals of allele ' \(A\) ' and ' \(a\) ' respectively, and \(\mathbf{N}_{\mathrm{Aa}}\) is the number of heterozygous individuals. Which one of the following options is the allele frequency of ' \(A\) ' and ' \(a\) ' in population with \(\mathrm{N}_{\mathrm{AA}}=90, \mathrm{~N}_{\mathrm{Aa}}=40\) and \(\mathbf{N}_{\mathrm{aa}}=\mathbf{7 0}\) ?

1 \(\mathrm{A}=0.55\) and \(\mathrm{a}=0.45\)
2 \(\mathrm{A}=0.40\) and \(\mathrm{a}=0.60\)
3 \(\mathrm{A}=0.35\) and \(\mathrm{a}=0.65\)
4 \(\mathrm{A}=0.25\) and \(\mathrm{a}=0.75\)
Principle of Inheritance and Variation

184283 When a tall pea plant crossed with dwarf pea plant the \(F_{2}\) generation produced 390 tall and 130 dwarf plants, then how many plants will show Heterozygous condition.

1 130
2 260
3 390
4 520
Principle of Inheritance and Variation

184285 Heterozygous tall plants were crossed with dwarf plants, then the percentage of dwarf plants produced in the next progeny

1 25
2 75
3 50
4 65
Principle of Inheritance and Variation

184288 The ratio of homozygous tall and dwarf plant in \(F_{2}\) generation in monohybrid cross is

1 \(2: 1\)
2 \(1: 2: 1\)
3 \(3: 1\)
4 \(1: 1\)
Principle of Inheritance and Variation

184289 The experimental material in Mendels experiment was

1 Pisum sativum
2 Oryza sativa
3 Mirabilis jalapa
4 None of these
Principle of Inheritance and Variation

184297 In a population \(\mathrm{N}_{\mathrm{AA}}\) and \(\mathrm{N}_{\mathrm{aa}}\) are the numbers of homozygous individuals of allele ' \(A\) ' and ' \(a\) ' respectively, and \(\mathbf{N}_{\mathrm{Aa}}\) is the number of heterozygous individuals. Which one of the following options is the allele frequency of ' \(A\) ' and ' \(a\) ' in population with \(\mathrm{N}_{\mathrm{AA}}=90, \mathrm{~N}_{\mathrm{Aa}}=40\) and \(\mathbf{N}_{\mathrm{aa}}=\mathbf{7 0}\) ?

1 \(\mathrm{A}=0.55\) and \(\mathrm{a}=0.45\)
2 \(\mathrm{A}=0.40\) and \(\mathrm{a}=0.60\)
3 \(\mathrm{A}=0.35\) and \(\mathrm{a}=0.65\)
4 \(\mathrm{A}=0.25\) and \(\mathrm{a}=0.75\)