Examples of using Cathode in English and their translations into Vietnamese
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Colloquial
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Ecclesiastic
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Computer
He eventually wrote his Ph.D. thesis concerning the cathode ray tube in 1927, and worked on plasma lamps.
An oxygen permeable membrane separates the anode and cathode from the water being measured.
off often, Cold cathode fluorescent lamps can be used.
Thomson showed that cathode rays were composed of a previously unknown negatively charged particle, which was later named the electron.
be switched on and off frequently, Cold cathode CFLs can be used.
LED displays do not use mercury(used in cathode lamps in LCD backlight) so they are environment friendly.
In this cell, brine(concentrated sodium chloride solution) is electrolysed between a liquid mercury cathode and a titanium or graphite anode.
This is our 3mm Bi-Color With Common Anode or Common Cathode Type Super Red& Yellow Green LED,
Both the anode and cathode are immersed in a solution that contains a dissolved metal salt- such as an ion of the metal being plated-
popularized terminology such as anode, cathode, electrode, and ion.
In the early cold cathode vacuum tubes,
Both the anode and cathode are immersed in a solution that contains a dissolved metal salt-such as an ion of the metal being plated-and other ions that act to permit the flow of electricity through the circuit.
higher contrast ratio than an LCD, irrespective of whether the LCD uses an LED backlight or cold cathode fluorescent lamps.
The technique is essentially that same as the one used by Thomson for cathode rays, except that whole atoms do not spontaneously leap out of the surface of an object as electrons sometimes do.
The problem can be solved by manufacturing the anode and cathode films, and then rapidly laminating them together with the active polymer in a protective atmosphere.
the medium through which the ionic charge flows between cathode and anode.
physicists led by J.J. Thompson and experiments using cathode ray tubes).
of a star or a cross was placed in the way of the cathode ray, then a“shadow” of the same shape would appear on the glass, showing that the
LiFePO4 is an intrinsically safer cathode material than Lithium-ion since exothermic reactions can not occur in batteries based on this material LiFePO4 cells do not incinerate or explode under extreme conditions.
it launches in 2022, producing cathode copper and sulphide concentrate.