Consider a n-type semiconductor in which \({n}_{e}\) and \({\mathrm{n}}_{\mathrm{h}}\) are number of electrons and holes…
Consider a n-type semiconductor in which \({n}_{e}\) and \({\mathrm{n}}_{\mathrm{h}}\) are number of electrons and holes, respectively.
(A) Holes are minority carriers
(B) The dopant is a pentavalent atom
(C) \({\mathrm{n}}_{\mathrm{e}}{\mathrm{n}}_{\mathrm{h}}\neq {\mathrm{n}}_{\mathrm{i}}^{2}\)
(where \({n}_{i}\) is number of electrons or holes in semiconductor when it is intrinsic form)
(D) \({\mathrm{n}}_{\mathrm{e}}{\mathrm{n}}_{\mathrm{h}}\geq {\mathrm{n}}_{\mathrm{i}}^{2}\)
(E) The holes are not generated due to the donors
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