The Forbidden Energy Gap for Germanium is:
Question: The Forbidden Energy Gap for Germanium is: Answer:The correct option is(4).The Forbidden Energy Gap for Germanium is 0.72 eV. The term “forbidden energy gap”
Question: The Forbidden Energy Gap for Germanium is: Answer:The correct option is(4).The Forbidden Energy Gap for Germanium is 0.72 eV. The term “forbidden energy gap”
Question: An n-type Semiconductor is_________ Answer:The correct option is(3)An n-type Semiconductor is electrically neutral because the process of doping, which introduces extra charge carriers, does
Extrinsic semiconductors are doped with impurities to modify their electrical properties, making them suitable for electronic devices like diodes and transistors. Extrinsic semiconductors are particularly
An intrinsic semiconductor is a pure form of semiconductor material without any significant impurities added. Common materials used as intrinsic semiconductors include silicon (Si) and
N-Type Semiconductor has a large number of free electrons and it is formed by adding small amount of Pentavalent impurity to a pure semiconductor .
Question: Leakage Current in the Silicon Semiconductor is in the order of_________ Answer: The correct option is (2)Leakage Current in the Silicon Semiconductor is in
Discover why silicon is preferred over germanium in semiconductor technology, focusing on factors such as cost, thermal stability, electrical properties, and industry integration. In semiconductor
Germanium diode, once at the forefront of semiconductor technology, continue to hold a niche yet vital position in modern electronics. Comprised of the element germanium,
This article explores the differences between silicon diode and germanium diode, focusing on their physical properties, performance characteristics, and typical applications. Diodes, essential components in
A silicon diode is a type of power diode made using silicon semiconducting material. These diodes are commonly used in various applications such as motor