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A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared
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the JEE exam syllabus. Information about A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam.
Find important definitions, questions, meanings, examples, exercises and tests below for A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer?.
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Here you can find the meaning of A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer?, a detailed solution for A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer? has been provided alongside types of A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice A particle of mass m moves along a curve y = x2. When particle has x-coordinate as 1/2 and x−component of velocity as 4 m s−1 then :a)The position coordinate of particle are (1/2 , 1/4)b)The velocity of particle will be along the line 4x − 4y − 1 = 0c)The magnitude of velocity at that instant is 4√2 m s−1d)The magnitude of angular momentum of particle about origin at that position is 0.Correct answer is option 'A,B,C'. Can you explain this answer? tests, examples and also practice JEE tests.