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Which of the following is correctly matched?
  1. Collision of particle - Conservation of moment of momentum
  2. Motion of satellite - Euler's equation of motion
  3. Stability - minimum kinetic energy
  • a)
    1 ,2
  • b)
    1 ,3
  • c)
    1,2,3
  • d)
    2,3
Correct answer is option 'A'. Can you explain this answer?
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Which of the following is correctly matched? Collision of particle - C...
Collision of particle - Conservation of moment of momentum
Motion of satellite - Euler's equation of motion
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Which of the following is correctly matched? Collision of particle - C...
Collision of particle - Conservation of moment of momentum:
The conservation of moment of momentum, also known as angular momentum, states that in the absence of external torques, the total angular momentum of a system remains constant. This principle applies to rotational motion and not to the collision of particles. Therefore, this match is incorrect.

Motion of satellite - Eulers equation of motion:
The motion of a satellite in space is governed by the laws of celestial mechanics, which include the principles of Newtonian mechanics. Eulers equation of motion is used to describe the rotational motion of a rigid body. Since a satellite typically undergoes translational motion, not rotational motion, this match is incorrect.

Stability - minimum kinetic energy:
The stability of a system refers to its ability to return to its original equilibrium position after being disturbed. In the context of mechanical systems, stability is often related to potential energy and not kinetic energy. Therefore, this match is incorrect.

Conclusion:
Based on the explanations above, it can be concluded that none of the given matches are correct. The correct answer is option 'D' as it states that both the second and third matches are incorrect.
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Which of the following is correctly matched? Collision of particle - Conservation of moment of momentum Motion of satellite - Eulers equation of motion Stability - minimum kinetic energya)1 ,2b)1 ,3c)1,2,3d)2,3Correct answer is option 'A'. Can you explain this answer?
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