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The desired pattern can be formed in the resulting resist film via localized thermal excitation; in this work, we investigate resistive heating and stamping.
Concrete that could conduct electricity would also create heat through resistive heating.
The substrates were heated using a resistive heating plate, providing temperatures up to 300 °C.
The first films studied by us where the ones deposited by resistive heating vaporization.
Fig. 3 XRD pattern of the 200-nm thick film deposited using resistive heating.
We use conventional resistive heating to generate high temperatures with an AC power supply.
AECL proposed a direct resistive heating concept to compensate for the requirement of high temperature heat.
Accordingly, the resistive heating performance of the fabricated composites was investigated at different power densities.
The results showed that SO3 decomposition can be successfully achieved with the direct resistive heating method.
The resistive heating mechanism was investigated in conjunction with applied voltage and carbon fiber loading.
High speed GC separations using conventional instruments also can be best achieved with resistive heating modules.
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