Adapter (40) | ![]() |
Anode (195) | ![]() |
Cathode (146) | ![]() |
Dielectric material (55) | ![]() |
Direct current (16) | ![]() |
Electric arc (8) | ![]() |
Electric current (81) | ![]() |
Electric field (150) | ![]() |
Electrical circuit (30) | ![]() |
Electrical conduction (5) | ![]() |
Electrical conductivity (75) | ![]() |
Electrical engineering (270) | ![]() |
Electrical insulator (6) | ![]() |
Electrification (8) | ![]() |
Electroluminescence (23) | ![]() |
Electromagnetism (22) | ![]() |
Mechatronics (6) | ![]() |
Photoelectric effect (14) | ![]() |
Resistor (17) | ![]() |
Resonator (92) | ![]() |
Signal processing (27) | ![]() |
Superconductivity (224) | ![]() |
and measured the change of electrical conduction by assessing the transmission of a second low-frequency light pulse.
one to modify the material and one to measure the electrical conduction. Gedik says that the pulses used to measure the conduction are much lower frequency than the pulses used to modify the material behavior.
Magnetic substances like iron tend to interfere with graphene's electrical conduction. The researchers avoided those substances
and were concentrating on the speed of electrical conduction through the patch. We thought nanotubes could be integrated easily.
in turn has a strong effect on the electrical conduction of grapheneexplains Professor Mischa Bonn, Director at the MPI-P. The study,
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