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To detect the spin coming out of silicon, Appelbaum and his colleagues made a detector with a unique layered structure: a nickel-iron layer on top of a copper layer, which is deposited on a silicon substrate.
A copper layer is active metal cast to CFC tiles, and then an OF-copper layer is added by hot isostatic pressing to produce bi-layer tiles.
A continuous conductive copper layer was successfully deposited.
The outer layer, a copper layer is dedicated to protect a waste container against corrosion.
FEA determined the optimum thickness of the copper layer to be between 100 and 125 μm.
The coated conductors have copper layer as a stabilizer not to be damaged by over-currents.
The microvias employed in this work had no sidewall copper layer.
In order to avoid corrosion, the copper layer has to be coated.
A copper layer is attached to the ZnO/ITO/PET structure to construct piezoelectric transducers.
Electrodeposition of thin copper layer was carried out on titanium wires in acidic sulphate bath.
Finite element simulation was also carried out to estimate the plastic strain of the copper layer.
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