11. Two hollow and thin spherical sheets of conducting material, of radii R, and R2, respectively, are concentric to eac
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11. Two hollow and thin spherical sheets of conducting material, of radii R, and R2, respectively, are concentric to eac
11. Two hollow and thin spherical sheets of conducting material, of radii R, and R2, respectively, are concentric to each other and carry equal and opposite charge Q (positive on the inner conductor). The space between the two conductors is filled with a dielectric of relative permittivity & (volume marked with dashed lines in the figure 4). Fig. 4 (a) Sketch the distribution of charges on the conductors and the dielectric. [2] (b) Calculate the amplitude of the electric field E, polarisation P, and electric induction field D outside of the outer conductor (r > R₂). [2] (c) Calculate the amplitude of the electric field E, polarisation P, and electric induction field D in the dielectric (R₂>r> R₁). [5] (d) Calculate the volumetric and surface distribution of bound charges in the dielectric. [4] Hint: you might need to use the divergence in spherical co-ordinates: V. A = 1 0(r² Ar) 7.2 Ər 1 ə + r sin 0 00 (Ao sin 0) + 1 0A r sin do (e) Calculate the amplitude of the electric field E, polarisation P, and electric displacement field D inside the inner conductor (r< R₁). [2] (f) Calculate the potential difference between the two conductors and the capacitance of the whole system. [5] fos. RI
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