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A highly rigid cubical block A of small mass M and side L is fixed rigidly onto another cubical block B of the same dimensions and of low modulus of rigidity η such that the lower face of A completely covers the upper face of B. The surface lower face of B is rigidity held on a horizontal surface A small force F is applied perpendicular to one of the side faces of A. After the force is withdrawn block A executes small oscillations. The time period of which is given by
  • a)
    2π√Mη/L
  • b)
    2π√L/Mη
  • c)
    2π√ML/η
  • d)
    2π√M/ηL
Correct answer is option 'D'. Can you explain this answer?
Most Upvoted Answer
A highly rigid cubical block A of small mass M and side L is fixed rig...
The low modulus of rigidity of block B means that it has a low resistance to deformation when a force is applied to it.

Since block A is highly rigid, it will not deform significantly when a force is applied to it. It will transfer the force to block B without deforming.

Therefore, when a force is applied to block A, it will cause block B to deform more than block A. This is because block B has a low modulus of rigidity and is more susceptible to deformation.

In other words, block A will remain rigid and maintain its shape, while block B will deform under the applied force.
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Community Answer
A highly rigid cubical block A of small mass M and side L is fixed rig...
D
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A highly rigid cubical block A of small mass M and side L is fixed rigidly onto another cubical block B of the same dimensions and of low modulus of rigidity η such that the lower face of A completely covers the upper face of B. The surface lower face of B is rigidity held on a horizontal surface A small force F is applied perpendicular to one of the side faces of A. After the force is withdrawn block A executes small oscillations. The time period of which is given bya)2π√Mη/Lb)2π√L/Mηc)2π√ML/ηd)2π√M/ηLCorrect answer is option 'D'. Can you explain this answer?
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A highly rigid cubical block A of small mass M and side L is fixed rigidly onto another cubical block B of the same dimensions and of low modulus of rigidity η such that the lower face of A completely covers the upper face of B. The surface lower face of B is rigidity held on a horizontal surface A small force F is applied perpendicular to one of the side faces of A. After the force is withdrawn block A executes small oscillations. The time period of which is given bya)2π√Mη/Lb)2π√L/Mηc)2π√ML/ηd)2π√M/ηLCorrect answer is option 'D'. Can you explain this answer? for NEET 2024 is part of NEET preparation. The Question and answers have been prepared according to the NEET exam syllabus. Information about A highly rigid cubical block A of small mass M and side L is fixed rigidly onto another cubical block B of the same dimensions and of low modulus of rigidity η such that the lower face of A completely covers the upper face of B. The surface lower face of B is rigidity held on a horizontal surface A small force F is applied perpendicular to one of the side faces of A. After the force is withdrawn block A executes small oscillations. The time period of which is given bya)2π√Mη/Lb)2π√L/Mηc)2π√ML/ηd)2π√M/ηLCorrect answer is option 'D'. Can you explain this answer? covers all topics & solutions for NEET 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for A highly rigid cubical block A of small mass M and side L is fixed rigidly onto another cubical block B of the same dimensions and of low modulus of rigidity η such that the lower face of A completely covers the upper face of B. The surface lower face of B is rigidity held on a horizontal surface A small force F is applied perpendicular to one of the side faces of A. After the force is withdrawn block A executes small oscillations. The time period of which is given bya)2π√Mη/Lb)2π√L/Mηc)2π√ML/ηd)2π√M/ηLCorrect answer is option 'D'. Can you explain this answer?.
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