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In a reverse biased abrupt p-n junct ion doping concentrat ion NA = 9 ×1016/cm3 and ND = 1 × 1016/cm3
respectively. In p-n junction total deplet ion layer width 3 μm. T he depletion width on p–side is
    Correct answer is between '0.1,0.4'. Can you explain this answer?
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    In a reverse biased abrupt p-n junct ion doping concentrat ion NA = 9 ...
    It seems that the information provided is incomplete. The doping concentration (NA) is given as 9, but the units are missing. In order to fully understand the reverse biased abrupt p-n junction, we need to know the units of doping concentration (typically given in atoms/cm^3) and any other relevant information such as the doping concentration of the n-side (ND), the built-in potential (Vbi), and the applied voltage (V).
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    In a reverse biased abrupt p-n junct ion doping concentrat ion NA = 9 ×1016/cm3 and ND = 1 × 1016/cm3respectively. In p-n junction total deplet ion layer width 3 μm. T he depletion width on p–side isCorrect answer is between '0.1,0.4'. Can you explain this answer?
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    In a reverse biased abrupt p-n junct ion doping concentrat ion NA = 9 ×1016/cm3 and ND = 1 × 1016/cm3respectively. In p-n junction total deplet ion layer width 3 μm. T he depletion width on p–side isCorrect answer is between '0.1,0.4'. Can you explain this answer? for GATE 2024 is part of GATE preparation. The Question and answers have been prepared according to the GATE exam syllabus. Information about In a reverse biased abrupt p-n junct ion doping concentrat ion NA = 9 ×1016/cm3 and ND = 1 × 1016/cm3respectively. In p-n junction total deplet ion layer width 3 μm. T he depletion width on p–side isCorrect answer is between '0.1,0.4'. Can you explain this answer? covers all topics & solutions for GATE 2024 Exam. Find important definitions, questions, meanings, examples, exercises and tests below for In a reverse biased abrupt p-n junct ion doping concentrat ion NA = 9 ×1016/cm3 and ND = 1 × 1016/cm3respectively. In p-n junction total deplet ion layer width 3 μm. T he depletion width on p–side isCorrect answer is between '0.1,0.4'. Can you explain this answer?.
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