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From Amperes circuital law for a long straight wire of circular cross-section carrying a steady current, the variation of magnetic field in the inside and outside region of the wire is:a)a linearly increasing function of distance upto the boundary of the wire and then linearly decreasing for the outside region. b)a linearly increasing function of distance r upto the boundary of the wire and then decreasing one with 1/r dependence for the outside region. c)a linearly decreasing function of distance upto the boundary of the wire and then a linearly increasing one for the outside region. d)uniform and remains constant for both the regions.Correct answer is option 'B'. Can you explain this answer? for NEET 2024 is part of NEET preparation. The Question and answers have been prepared
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Here you can find the meaning of From Amperes circuital law for a long straight wire of circular cross-section carrying a steady current, the variation of magnetic field in the inside and outside region of the wire is:a)a linearly increasing function of distance upto the boundary of the wire and then linearly decreasing for the outside region. b)a linearly increasing function of distance r upto the boundary of the wire and then decreasing one with 1/r dependence for the outside region. c)a linearly decreasing function of distance upto the boundary of the wire and then a linearly increasing one for the outside region. d)uniform and remains constant for both the regions.Correct answer is option 'B'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of
From Amperes circuital law for a long straight wire of circular cross-section carrying a steady current, the variation of magnetic field in the inside and outside region of the wire is:a)a linearly increasing function of distance upto the boundary of the wire and then linearly decreasing for the outside region. b)a linearly increasing function of distance r upto the boundary of the wire and then decreasing one with 1/r dependence for the outside region. c)a linearly decreasing function of distance upto the boundary of the wire and then a linearly increasing one for the outside region. d)uniform and remains constant for both the regions.Correct answer is option 'B'. Can you explain this answer?, a detailed solution for From Amperes circuital law for a long straight wire of circular cross-section carrying a steady current, the variation of magnetic field in the inside and outside region of the wire is:a)a linearly increasing function of distance upto the boundary of the wire and then linearly decreasing for the outside region. b)a linearly increasing function of distance r upto the boundary of the wire and then decreasing one with 1/r dependence for the outside region. c)a linearly decreasing function of distance upto the boundary of the wire and then a linearly increasing one for the outside region. d)uniform and remains constant for both the regions.Correct answer is option 'B'. Can you explain this answer? has been provided alongside types of From Amperes circuital law for a long straight wire of circular cross-section carrying a steady current, the variation of magnetic field in the inside and outside region of the wire is:a)a linearly increasing function of distance upto the boundary of the wire and then linearly decreasing for the outside region. b)a linearly increasing function of distance r upto the boundary of the wire and then decreasing one with 1/r dependence for the outside region. c)a linearly decreasing function of distance upto the boundary of the wire and then a linearly increasing one for the outside region. d)uniform and remains constant for both the regions.Correct answer is option 'B'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice From Amperes circuital law for a long straight wire of circular cross-section carrying a steady current, the variation of magnetic field in the inside and outside region of the wire is:a)a linearly increasing function of distance upto the boundary of the wire and then linearly decreasing for the outside region. b)a linearly increasing function of distance r upto the boundary of the wire and then decreasing one with 1/r dependence for the outside region. c)a linearly decreasing function of distance upto the boundary of the wire and then a linearly increasing one for the outside region. d)uniform and remains constant for both the regions.Correct answer is option 'B'. Can you explain this answer? tests, examples and also practice NEET tests.