Q: P. type semiconductor with length (1= 5mm), the cross-section area of (A= 0.5 mm?), and resistance (R=2502). Calculate the exact number of the majority (pp) and the minority (np) carriers. Also, calculate the number of acceptor atoms (NA) if the intrinsic carrier (n; = 2x1020/m³). Given the mobility for the electrons (u-0.4m2/V.s) and for the holes (u=0.2m2/V.s)

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EP1 HW3.pdf
EE1- Electronic physic – HW3
Q: P. type semiconductor with length (I= 5mm), the cross-section area of
(A= 0.5 mm?), and resistance (R=2502). Calculate the exact number of
the majority (pp) and the minority (np) carriers. Also, calculate the number
of acceptor atoms (NA) if the intrinsic carrier (n; = 2×102/m³). Given the
mobility for the electrons (u=0.4m²/V.s) and for the holes (u=0.2m²/V.s)
Transcribed Image Text:64% uo 12:49 * l. Gmail ► EP1 HW3.pdf EE1- Electronic physic – HW3 Q: P. type semiconductor with length (I= 5mm), the cross-section area of (A= 0.5 mm?), and resistance (R=2502). Calculate the exact number of the majority (pp) and the minority (np) carriers. Also, calculate the number of acceptor atoms (NA) if the intrinsic carrier (n; = 2×102/m³). Given the mobility for the electrons (u=0.4m²/V.s) and for the holes (u=0.2m²/V.s)
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