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A non-conducting solid sphere of radius R is uniformly charged. The magnitude of the electric field due to the sphere at a distance r from its centre
  • a)
    increases as r increases, for r < R.
  • b)
    decreases as r increases, for 0 < r < ∞.
  • c)
    decreases as r increases, for R < r < ∞.
  • d)
    is discontinuous at r = R.
Correct answer is option 'A,C'. Can you explain this answer?
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A non-conducting solid sphere of radius R is uniformly charged. The ma...
KEY CONCEPT :  The expressions of the electric field inside the sphere   outside the sphere
Hence, E increases for r < R and decreases for R < r < ∞.
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A non-conducting solid sphere of radius R is uniformly charged. The magnitude of the electric field due to the sphere at a distance r from its centrea)increases as r increases, for r < R.b)decreases as r increases, for 0 < r < ∞.c)decreases as r increases, for R < r < ∞.d)is discontinuous at r = R.Correct answer is option 'A,C'. Can you explain this answer?
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A non-conducting solid sphere of radius R is uniformly charged. The magnitude of the electric field due to the sphere at a distance r from its centrea)increases as r increases, for r < R.b)decreases as r increases, for 0 < r < ∞.c)decreases as r increases, for R < r < ∞.d)is discontinuous at r = R.Correct answer is option 'A,C'. 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 A non-conducting solid sphere of radius R is uniformly charged. The magnitude of the electric field due to the sphere at a distance r from its centrea)increases as r increases, for r < R.b)decreases as r increases, for 0 < r < ∞.c)decreases as r increases, for R < r < ∞.d)is discontinuous at r = R.Correct answer is option 'A,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 non-conducting solid sphere of radius R is uniformly charged. The magnitude of the electric field due to the sphere at a distance r from its centrea)increases as r increases, for r < R.b)decreases as r increases, for 0 < r < ∞.c)decreases as r increases, for R < r < ∞.d)is discontinuous at r = R.Correct answer is option 'A,C'. Can you explain this answer?.
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