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An infinitely long solid cylinder of radius R has a uniform volume charge density ρρ. It has a spherical cavity of radius R2 with its centre on the axis of the cylinder, as shown in the figure. The magnitude of the electric field at the point P, which is at a distance 2R from the axis of the cylinder, is given by the expression . The value of k is:Correct answer is '6'. Can you explain this answer? for JEE 2024 is part of JEE preparation. The Question and answers have been prepared
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An infinitely long solid cylinder of radius R has a uniform volume charge density ρρ. It has a spherical cavity of radius R2 with its centre on the axis of the cylinder, as shown in the figure. The magnitude of the electric field at the point P, which is at a distance 2R from the axis of the cylinder, is given by the expression . The value of k is:Correct answer is '6'. Can you explain this answer?, a detailed solution for An infinitely long solid cylinder of radius R has a uniform volume charge density ρρ. It has a spherical cavity of radius R2 with its centre on the axis of the cylinder, as shown in the figure. The magnitude of the electric field at the point P, which is at a distance 2R from the axis of the cylinder, is given by the expression . The value of k is:Correct answer is '6'. Can you explain this answer? has been provided alongside types of An infinitely long solid cylinder of radius R has a uniform volume charge density ρρ. It has a spherical cavity of radius R2 with its centre on the axis of the cylinder, as shown in the figure. The magnitude of the electric field at the point P, which is at a distance 2R from the axis of the cylinder, is given by the expression . The value of k is:Correct answer is '6'. Can you explain this answer? theory, EduRev gives you an
ample number of questions to practice An infinitely long solid cylinder of radius R has a uniform volume charge density ρρ. It has a spherical cavity of radius R2 with its centre on the axis of the cylinder, as shown in the figure. The magnitude of the electric field at the point P, which is at a distance 2R from the axis of the cylinder, is given by the expression . The value of k is:Correct answer is '6'. Can you explain this answer? tests, examples and also practice JEE tests.