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Mark the correct option.
  • a)
    Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axis
  • b)
     If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous value
  • c)
    For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coil
  • d)
    Both b and c
Correct answer is option 'B'. Can you explain this answer?
Verified Answer
Mark the correct option.a)Behaviour of moving charge along the circle ...
A charge moving along a circle is equivalent to a current carrying coil, but with respect to magnetic field on the axis of circle. It/ is equivalent only for average value of magnetic field and not for instantaneous values. While if two charge particles are moving symmetrically along a circle at diametrically opposite points then the average as well as instantaneous magnetic field on its axis is same as due to a current carrying coil.
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Mark the correct option.a)Behaviour of moving charge along the circle ...
Understanding the Magnetic Field of Moving Charges
When analyzing the magnetic field generated by moving charges, it's essential to draw parallels to current-carrying conductors.
Key Concepts
- Moving Charges vs. Current: A moving charge generates a magnetic field similar to that produced by a current-carrying wire. The direction and magnitude of the magnetic field depend on the path of the charge.
- Circular Motion: When charges move in a circle, their trajectory can be compared to that of a circular loop of current. The magnetic field at the axis of such a loop can be derived using similar principles.
Analysis of Options
- Option A: This statement implies that the behavior of a single moving charge is equivalent to a current-carrying circular coil for both instantaneous and average values of the magnetic field. This is not entirely accurate because a single charge does not create a consistent magnetic field like a continuous current.
- Option B: Here, two identical charges moving symmetrically around a circle create a net effect similar to a current-carrying coil. When averaged over time, their contributions to the magnetic field at the axis resemble that of a steady current loop, making this option correct.
- Option C: This option suggests that the instantaneous magnetic field created by a moving charge is equivalent to that of a current-carrying coil. While moving charges do contribute to the instantaneous magnetic field, it is not equivalent to a steady state of current.
- Option D: It indicates both B and C are correct, but since C is not accurate in the context, only B stands validated.
Conclusion
The correct answer is option B because the symmetrical motion of two identical charges indeed mimics the current circulating in a coil, providing consistent magnetic effects both instantaneously and on average.
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Community Answer
Mark the correct option.a)Behaviour of moving charge along the circle ...
The correct answer is option .B
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Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer?
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Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. 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 Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer? covers all topics & solutions for JEE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer?.
Solutions for Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. 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 Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer? defined & explained in the simplest way possible. Besides giving the explanation of Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer?, a detailed solution for Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer? has been provided alongside types of Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer? theory, EduRev gives you an ample number of questions to practice Mark the correct option.a)Behaviour of moving charge along the circle is equivalent to current carrying circular coil for instantaneous value as well as for average value of magnetic field on its axisb)If two identical charge particles are moving symmetrically along a circle then its behaviour with respect to magnetic field on the axis is equivalent to current carrying coil for both average and instantaneous valuec)For instantaneous value of magnetic field on the axis, the charge moving along a circle is equivalent to current carrying circular coild)Both b and cCorrect answer is option 'B'. Can you explain this answer? tests, examples and also practice JEE tests.
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