Examples of using Semiconductor materials in English and their translations into Indonesian
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Colloquial
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Ecclesiastic
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Computer
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Ecclesiastic
To improve fluorescence quantum yield, quantum dots can be made with"shells" of a larger bandgap semiconductor material around them.
The most common semiconductor material used in photovoltaic cells is silicon, an element found in sand.
A semiconductor material with extra electrons is called an n-type(n for negative because electrons have a negative charge)
use a so-called“gain medium,” for example a semiconductor material, to create a focused beam of light waves.
Integrated circuit is a device made of semiconductor material with all integrated electrical components.
subsequently they force other electrons in the semiconductor material to join them because of heavy collision.
on the same piece of semiconductor material, along with other components like capacitors and resistors.
which was built on thin slices of different types of semiconductor material pressed together.
combine together within the semiconductor material.
use a so-called"gain medium," such as a semiconductor material, to produce a focused beam of light waves.
be built using silicon, the most common semiconductor material.
on the same piece of semiconductor material, along with other components like capacitors and resistors.
such as OFC winding/braiding, semiconductor material and aluminum foil.
The color is characteristic of the energy bandgap of the semiconductor material used to make the LED.
The color is characteristic of the energy band gap of the semiconductor material used to make the LED.
By using the semiconductor material gallium arsenide phosphide(GaAsP)
Primarily, silicon is employed as a semiconductor material, while germanium, on the other hand, is also used in a lot of cases.
By using the semiconductor material GaAsP and the technique of stimulated emission,
Unlike IGFETs, the JFET gate terminal forms a diode with the channel(semiconductor material between source and drain).
To do so, they developed a novel microfabrication technique that modifies semiconductor material atom by atom.