# Two concentric metallic spherical shells of radii r1 and r2

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Thus, the capacitance of the given

**two concentric spherical shells**is equal to 4 π ε 0**R 1 R 2 R 2**−**R 1**. Hence, the correct answer is option C. Note. This question could also be attempted by considering the electric field at an arbitrary point between the**two spherical shells**to find out the net potential difference.north node trine chiron

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- Thus, the capacitance of the given
**two concentric spherical shells**is equal to 4 π ε 0**R 1 R 2 R 2**−**R 1**. Hence, the correct answer is option C. Note. This question could also be attempted by considering the electric field at an arbitrary point between the**two spherical shells**to find out the net potential difference. - Consider
**two concentric spherical metal shells of radii r1 and r2**(**r2**>**r1**).The outer**shell**has a charge q and the inner**shell**is grounded.charge on inner**shell**is - Three
**concentric****spherical****shells****of****radii****R****1,****R****2,**R 3 (**R****1**<**R****2**< R 3) carry charges -1, -2 and 4 coulombs, respectively. The charge in coulombs on the inner and outer surfaces respectively, of the outermost**shell**is—. 0 and 4. 3 and 1.. 2018. 5. 22. ·**Two****concentric****metallic****spherical****shells****of****radii**R and 2R are given ... - A thin cylindrical
**shell****of**radius**R1**is surrounded by a 2nd**concentric**cylindrical**shell****of**radius**R2**The inner**shell**as a total charge +Q and the outer**shell****of**-Q. Assuming the length L of the**shells**is much greater than**R1**or**R2**, determine the electric field as a function of R (the perpendicular distance from the common axis of the cylinders) for (a) 0<R<R1, (b) R1<R<R2, and (c) R>R2, (d ... - Mar 29, 2020 · A uniformly charged thin
**spherical****shell****of radius**R carries uniform surface charge density of σ per**Two****concentric**thin**metallic**spheres**of radii****R1****and R2**(**R1**>**R2**) bear charges Q1 and Q2 A system of binary stars of masses mA and mB are moving in circular orbits**of radii**rA and rB A charge Q is distributed over**two****concentric**hollow ...