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Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.

Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.
  • a)
    Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.
  • b)
    Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.
  • c)
    Statement I is True, Statement II is False.
  • d)
    Statement I is False, Statement II is True.
Correct answer is option 'A'. Can you explain this answer?
Most Upvoted Answer
Statement I: In free space a uniform spherical planet of mass M has a ...
Till the particle reaches the centre of the planet, force on both the bodies are in direction of their respective velocities, hence kinetic energies of both keep on increasing. After the particle crosses the centre of the planet, forces on both are retarding in nature. Hence, as the particle passes on both are retarding in nature. Hence, as the particle passes through the centre of the planet. Sum of kinetic energies of both the bodies is maximum. Therefore Statement I is true, Statement II is true; Statement II is a correct explanation for Statement I.
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Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer?
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Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared according to the JEE exam syllabus. Information about Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer?.
Solutions for Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer? in English & in Hindi are available as part of our courses for JEE. Download more important topics, notes, lectures and mock test series for JEE Exam by signing up for free.
Here you can find the meaning of Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer?, a detailed solution for Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer? has been provided alongside types of Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice Statement I: In free space a uniform spherical planet of mass M has a smooth narrow tunnel along its diameter. This planet and another superdense small particle of mass M start approaching toward each other from rest under action of their gravitational forces. When the particle passes through the centre of the planet, sum of kinetic energies of both the bodies is maximum.Statement II: when the resultant of all forces acting on a particle or a particle like object (initially at rest) is constant in direction, the kinetic energy of the particle keeps on increasing.a)Statement I is True, Statement II is True; Statement II is a correct explanation for Statement I.b)Statement I is True, Statement II is True; Statement II is NOT a correct explanation for Statement I.c)Statement I is True, Statement II is False.d)Statement I is False, Statement II is True.Correct answer is option 'A'. Can you explain this answer? tests, examples and also practice JEE tests.
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