7 RBTS PAPER(BIOLOGY - I)
7 RBTS PAPER

164364 The untimate source of genetic variability in a population is

1 Non random mating
2 Mutation
3 Migration
4 Selection
7 RBTS PAPER

164315 Evolutionary Biology is the :

1 Study of universe
2 Study of man
3 Study of history of life forms on earth
4 Study of only plants
7 RBTS PAPER

164316 Age of universe is approx :

1 10 billion years old
2 30 billion years old
3 15 billion years old
4 20 billion years old
7 RBTS PAPER

164276 The discontinuosly synthesised fragments are later joined by the enzyme :

1 DNA ligase
2 RNA polymerase
3 DNA polymerase
4 Helicase
7 RBTS PAPER

164265 Which one of the following is the correct match :

1 Bacteriophage lambda - \(148502 \mathrm{bp}\)
2 \(\phi \times 174-538600 \mathrm{bp}\)
3 Bacteriophage lambda - \(48502 \mathrm{bp}\)
4 E. coli \(-4.6 \times 10^9 \mathrm{bp}\)
7 RBTS PAPER

164364 The untimate source of genetic variability in a population is

1 Non random mating
2 Mutation
3 Migration
4 Selection
7 RBTS PAPER

164315 Evolutionary Biology is the :

1 Study of universe
2 Study of man
3 Study of history of life forms on earth
4 Study of only plants
7 RBTS PAPER

164316 Age of universe is approx :

1 10 billion years old
2 30 billion years old
3 15 billion years old
4 20 billion years old
7 RBTS PAPER

164276 The discontinuosly synthesised fragments are later joined by the enzyme :

1 DNA ligase
2 RNA polymerase
3 DNA polymerase
4 Helicase
7 RBTS PAPER

164265 Which one of the following is the correct match :

1 Bacteriophage lambda - \(148502 \mathrm{bp}\)
2 \(\phi \times 174-538600 \mathrm{bp}\)
3 Bacteriophage lambda - \(48502 \mathrm{bp}\)
4 E. coli \(-4.6 \times 10^9 \mathrm{bp}\)
NEET Test Series from KOTA - 10 Papers In MS WORD WhatsApp Here
7 RBTS PAPER

164364 The untimate source of genetic variability in a population is

1 Non random mating
2 Mutation
3 Migration
4 Selection
7 RBTS PAPER

164315 Evolutionary Biology is the :

1 Study of universe
2 Study of man
3 Study of history of life forms on earth
4 Study of only plants
7 RBTS PAPER

164316 Age of universe is approx :

1 10 billion years old
2 30 billion years old
3 15 billion years old
4 20 billion years old
7 RBTS PAPER

164276 The discontinuosly synthesised fragments are later joined by the enzyme :

1 DNA ligase
2 RNA polymerase
3 DNA polymerase
4 Helicase
7 RBTS PAPER

164265 Which one of the following is the correct match :

1 Bacteriophage lambda - \(148502 \mathrm{bp}\)
2 \(\phi \times 174-538600 \mathrm{bp}\)
3 Bacteriophage lambda - \(48502 \mathrm{bp}\)
4 E. coli \(-4.6 \times 10^9 \mathrm{bp}\)
7 RBTS PAPER

164364 The untimate source of genetic variability in a population is

1 Non random mating
2 Mutation
3 Migration
4 Selection
7 RBTS PAPER

164315 Evolutionary Biology is the :

1 Study of universe
2 Study of man
3 Study of history of life forms on earth
4 Study of only plants
7 RBTS PAPER

164316 Age of universe is approx :

1 10 billion years old
2 30 billion years old
3 15 billion years old
4 20 billion years old
7 RBTS PAPER

164276 The discontinuosly synthesised fragments are later joined by the enzyme :

1 DNA ligase
2 RNA polymerase
3 DNA polymerase
4 Helicase
7 RBTS PAPER

164265 Which one of the following is the correct match :

1 Bacteriophage lambda - \(148502 \mathrm{bp}\)
2 \(\phi \times 174-538600 \mathrm{bp}\)
3 Bacteriophage lambda - \(48502 \mathrm{bp}\)
4 E. coli \(-4.6 \times 10^9 \mathrm{bp}\)
7 RBTS PAPER

164364 The untimate source of genetic variability in a population is

1 Non random mating
2 Mutation
3 Migration
4 Selection
7 RBTS PAPER

164315 Evolutionary Biology is the :

1 Study of universe
2 Study of man
3 Study of history of life forms on earth
4 Study of only plants
7 RBTS PAPER

164316 Age of universe is approx :

1 10 billion years old
2 30 billion years old
3 15 billion years old
4 20 billion years old
7 RBTS PAPER

164276 The discontinuosly synthesised fragments are later joined by the enzyme :

1 DNA ligase
2 RNA polymerase
3 DNA polymerase
4 Helicase
7 RBTS PAPER

164265 Which one of the following is the correct match :

1 Bacteriophage lambda - \(148502 \mathrm{bp}\)
2 \(\phi \times 174-538600 \mathrm{bp}\)
3 Bacteriophage lambda - \(48502 \mathrm{bp}\)
4 E. coli \(-4.6 \times 10^9 \mathrm{bp}\)