MCQ
Choose the CORRECT sequence of human evolution.
  • Ramapithecus → Homo habilis → Homo erectus → Homo sapiens
  • B
    Australopithecus → Ramapithecus → Homo sapiens → Homo habilis
  • C
    Homo erectus → Homo habilis → Homo sapiens
  • D
    Australopithecus → Ramapithecus → Homo erectus → Homo habilis → Homo sapiens

Answer

Correct option: A.
Ramapithecus → Homo habilis → Homo erectus → Homo sapiens
A

Need a full question paper?

Generate a complete, print-ready paper with questions like this in minutes — across 16+ boards, with answer keys.

Start Generating Free

Similar questions

Solution of `sinx dy/dx + y cosx = 1` is ______
The solution of the differential equation `dy/dx = ((1 + x)y)/((y - 1)x)` is ______
Which of the following statement/s are CORRECT with respect to ETS?
i. In this process, energy is released in a controlled and stepwise manner to prevent any damage to the cell.
ii. ETS produces water molecules.
iii. Oxidized coenzymes such as NAD and FAD are regenerated from their reduced forms ( $NADH + H ^{+}$and FADH ${ }^2$ ) for recycling.
iv. Major amount of energy is generated through ETS or terminal oxidation in the form of ATP molecules.
v. Per glucose molecule 38 ATP molecules are formed, out of which 34 ATP molecules are produced through ETS.
Identify the correct term used to represent the DNA molecule formed by joining a gene coding for insulin to a plasmid pBR322 by using DNA ligase.
The probability that three cards drawn from a pack of 52 cards, all are red is ______.
The range of the voltmeter is 'V' when 50 n resistance is connected in series. Its range gets doubled when 500 Ω resistance is connected in series. The resistance of voltmeter is ______.
Conventionally, the nanometer scale is defined as ____________.
What is the value of $C-O-H$ bond angle in $CH_3OH$ ?
A compound has fcc structure. If density of unit cell is $3.4 g \ cm^{−3},$ what is the edge length of unit cell?
$($ Molar mass $= 98.99)$
Electric field on the axis of a small electric dipole at a distance $r$ is $E_1$ and at a distance of $2r$ on its perpendicular bisector, the electric field is $E_2.$ Then the ratio $E_2: E_1$ is$ .......$