MCQ Bank
The width of the depletion layer of a pn junction
- A) is increased under reverse bias
- B) is decreased under reverse bias
- C) decreases with light doping
- D) increases with heavy doping
For the given germenium diode and resistance circuit, the current flowing through resistance is data:image/png;base64,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
- A) 10mA
- B) 94mA
- C) 0.5mA
- D) 20mA
The process whereby charged particles in semiconductor move under the influence of electric field is termed as
- A) Diffusion
- B) Pushing
- C) Transportation
- D) Drift
When a diode is reversed biased
- A) Half of the current conducts through the diode
- B) Maximum current conducts through the diode
- C) No current conducts through the diode
- D) Double current conducts through the diode
For the given germinium diode and resistance circuit, the voltage drop across the resistance is data:image/png;base64,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
- A) 5.3V
- B) 10V
- C) 6V
- D) 4.7V
The N-side of a diode symbol is identified as data:image/png;base64,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
- A) anode
- B) cathode
- C)
- D)
In the given two figures of simple diode circuit, which diode Fig. is forward bised? data:image/png;base64,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
- A) Fig. (a)
- B) Fig. (a) &(b)
- C) Not any one
- D) Fig. (b)
When the turn ratio of a transformer is 5 and primary ac voltage is 10v, the secondary voltage is
- A) 25v
- B) 2v
- C) 100v
- D) 50v
From the characteristic I-V curve of the Diode, which region is Reversed bised? data:image/png;base64,iVBORw0KGgoAAAANSUhEUgAAAWQAAAEFCAIAAABb0QqIAAAAAXNSR0IArs4c6QAAAARnQU1BAACxjwv8YQUAAAAJcEhZcwAAEnQAABJ0Ad5mH3gAAE4JSURBVHhe7Z0HWBRXF4YXa4wl+U03pphorFGjsfcaBYMVRQ32KGpsWLArYm9YoqLYe4k1sYFYQFG6FKnSUZDeZIFd4P9mzjKuNBdYVnb3vswzz71n7s7OzN7zzTmXKaJcBoPBUAAmFgwGQyGYWDAYDIVgYsFgMBSCiQWDwVAIJhYMBkMhmFgwGAyFYGLBYDAUgokFg8FQCCYWDAZDIZhYMN4g5ZFVGIy3YWLB4MjJyRFkIjs7mwoMhjxMLBhcQEGF//77759//kGB6QWjIEwsGEwsGArBxEKrEbIPsVhsYmJSqVKlypUr37t3DxaJRIKlfCsGg4OJhfYihA+urq6tW7cWiUQ6OjqYQzIsLS1pESSDCgwGEwsthQIKzM3MzCigWLt2bZ06dZo3b96lSxdIxqRJk5KTk6kNNWZoOUwstAikFfKZhYeHR//+/aELv/76q6OjY2pqKiKLIUOGxMXFGRoawt6mTZv79+9TY3yQDWRoOUwsNJ98fo5yVlbW/v37a9SoAUWYNWtWWloa7OHh4aj269ePmm3fvh1VcJCHjPJaoy7k4I+hDJhYaDiCe2dmZoaEhDx//hyWjRs3QgV+/PHHGzdu0FIoyIsXL2D87bff0ICGKuzt7Vu0aMErhsjIyCg2NhbN1FEvGEqBiYUmQ47t7e29ePHiMWPGjOcZN27c559/rq+vHx8fj6XwfxqSEMQCZWGcIjExcRQPFiFbgeJgneqlF5k5kmwWXCgDJhYaC6UePj4+EydOvH79OvxcsD9+/HjevHn+/v5QBFSppbxYkIX0gti2bdv69etlFTVBmpuNaUzIyhtJDqhm449RBphYaCx0/k9ISEhNTUUBno/kIisri1QjPT0dUQPXLk8aCooFFQiqqgs0ThErScAkcmoyN2Inqiy+KCNMLDQWEguED0N5RowYMWzYMAMDg759+1pZWVEbgrSgULEQ4BVDbSSDxCI6KxaTjlML44gtqDKxKCNMLDQWEoukpKRnz555eHg4Ozu7uLi4ublhHhcXh0XyiQnmxYuFekFiESdJxFTJtcP4UHPByCg1TCw0FhKLgICA7du3QwjISISEhKxcudLV1RVlPmLQTLFIlKZiqvW0z7CgxYKRUWqYWGgy0AuxWHzq1Kk//vhj6tSppqam8+fPnzhx4ujRoy9cuJCenk6CoqlikZz9GtNnngMHPJ8nGBmlhomFtuDj43PlypWLFy8iK5GZ8tBUsXidLcb0nffQLv7GgpFRaphYaD7w/HzOn89CZc0TC3F2JqbGz0Z19JsiGBmlhomFFiHhodRDHk0VC0mOFFMHvynfeg8lO6MsMLHQIphYMMoCEwsNh6QhIiKCLs0C6enpoaGhVCbUSyywP++8FpPEAnNM3fyNv/EaQnZGWWBioeEglEhOTl6wYMHp06fDw8OhGlZWVrNmzcIi4WruEokF+WEFR34T+wfO+dxDdistoywwsdBkEFaAM2fOfP311127dp0yZcoff/wxePDgBw8eYKmgCOoVWSiCvFj8/nxBnae9ZRVGGWBioeGQ21tbW0dFRZGlIIqIRaZJw/j6b03JJrYlfH6WrVi3YbyJraxWQuQ3INkymIzFhDnCIoPgJXXcu1OZURaYWGg+5Pk2NjarV69etWqViYkJPcKbhjOAImKRmxucDlevv4i/RDyYXFdwWsUok1jgS7mP118kDpLVgSJiMSp4WW33rlRmlAUmFhoOuf3x48fbtWu3devW7du3r1279vbt2zCWUCxsU3BW17WiaEJqOaTkYlFGbFPlNoBQLLJYysRCKTCx0HBoFHPbtm22tkWe0hUSC5tFXArAxwVSG6tkLh0YIpzkYUnlTvtcA+77gvKqNOlaiSmJkHN1biXURpePVoL4dXINbLnPvi0KHHIbIKCIWIwOWVHLvWt2TkH5Y5QMJhYaDrn93bt39fT0LC0tz5w5c/DgwYcPH8JYosiCQglhSrZ8M2DBL1qUGcQPK5C3c204C+/hpCm8Mc/VaW2pNghMODsfoVADq0wbPscpIBaFxjKKiMUfIas/cOvyOlssb2SUAiYWGg65/a1bt8aOHTtnzhxjY+PRo0fTA3hLJBb8IIU+3D6/0/IRAdw+z/9hEvxfNsogBA780rwggoSDL3ONqcAFJm/JigC/AW9iGUIRsRgbsooXiwx5I6MUMLHQfEgUxGKxtbV1VlYWGeVRQCzI7Re+nS9wkEZw8oFsQshKLBcJKQa5N99M5ury5TcSwGcZnJoI8vEWcrojhyJi8UeI2QdundNlYsEoPUwsNBxSCi8vr+HDh3ft2vXs2bOIMnbt2gWjoAjvFosgK+5sr3uAFwjyW3lvF/5FYoUCpwW6XEEeuWZvylJeIEgXeAXhG7zJXOR4W6EEFBGLCaHmVV07xki4ZwiyyKIsMLHQcGiAc82aNdeuXXNzcztx4kRaWtrMmTNJRGhevFgIscPbjs1VhUCAqwqRBY1EcpYh/KgEoGGIRWJLq8wgLuOQDX/CkteAEyBeC3gFGZLKteSXvL0BpRjgNA7bXMWtY3QW9yhzJhZlgYmFhkNuf+XKldmzZ+/evXvv3r0WFhZLliwRFgmF4scsBDJzsnzEIeLsfKFDHkG2qYgvgoIz8zIR2TiFyhFUYVyIWVXXDtESJhZlhYmF5kPhw7Fjx3799ddmzZr9+eefsbGxMJIdlEgsCkV4Fq4sB6GggEteCiQUqkLYpL/Ct1dx7Rgl4R47ysSiLDCx0HDI7W1sbB4+fIhySkoK2eUpqVgU6nIwwj9zcu+IdYWsQUhD3ieGIcuru3VKlnKvaGRiURaYWGg45PZnz54dP358WlqaRCJJT08XnutNlFQs1AJBF8aHmvP/DeF2mYlFWWBioeEwsWBioSyYWGg45PYODg7NmjVr1aqVvr5+586dV69eDaMSxywqIIIqjA5eCbFIY1dwlhkmFhoOKYKHh8f169ddXFweP34M4QgICKClhGaLhWEwd2+IlN0bUmaYWGg45PanTp0yMzMjS0E0VCxkcsHuOlUWTCw0HHJ7RBNNmzYdO3YsEpA5c+YcOXKElhLlKhbksunZmYfjrgZmRPAWVeQCwreMCl7OxEIpMLHQcCgN8fHx2bp165YtWzBHiHHx4kX5pRUzsiijpggfHx60pI5bNyozygITC60gIyMjNjY2Li4O89evX6elcRcdCFRMsSgLpBOYY+od8NcXnrq8gVEmmFhoOOT2NjY2HTt27N69e+/evT/66KPp06fDiLCiIkcWmTncDbKy8KCEUFghvDfka6/BZGeUBSYWWoFUKk1PT0d8IZFIHB0dd+zYATkgpQAVUyzWRR3FXLhqu0SQWGTkZGFq4TOmje8EwcgoNUwstI6nT58aGBhAOFCuyJFFWSBdSMl+jQk5yIDnJoKRUWqYWGg4cHuANGTAgAF6enqDBg3q1KnT+fPnsaiCRxZlgXQhQZqC6UP3HiODlwtGRqlhYqEVpKam+vj4BAQEBAcHi8XctYzyaKpYRGfFYhI5NZ0XyT/sh4lF2WBioeFIJJKNGzcGBgbK6rm59+/fp2dwCoqg6WLRZMkLS1SZWJQRJhYaC2UZISEhBgYGycnJqEqlUswRXxgaGtK9ZJo6ZkG64J0ehAmRxcqXvDgysSgbTCw0FhICSMC4ceMgDagiysA8JiYG8vH69WuhjaaKhW2yEyaRU/NjCbd4o3rv1HuHiYUmQz4/Z84cCwsLsoA1a9bAgkLp3qIOKv5IIenChugTmETOPz9K80SV3UtWRphYaDIUOERHR48YMWLYsGFz58
- A) Region II
- B) Region I
- C)
- D)
For the given silicon diode resistance network, the current flowing through diode is data:image/png;base64,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
- A) 0.5mA
- B) 0
- C) 1mA
- D) 10mA
The P-side of a diode symbol is identified as data:image/png;base64,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
- A) Anode
- B) Cathode
- C)
- D)
From the characteristic I-V curve of Diode, which diode region is Forward bised? data:image/png;base64,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
- A) Region II
- B) Region I
- C)
- D)
True or false, hole current is opposit of electron current
- A) false
- B) true
- C)
- D)
An ideal diode can be used as
- A) two way conductor
- B) amplifier
- C) rectifier
- D) transistor
Secondary voltage is greater in magnitude as compared to primary voltage in a
- A) simple transformer
- B) isolated transformer
- C) step up transformer
- D) step down transformer