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Devices of this kind are used as amplifiers and RF signal sources at microwave frequencies (e.g., in radio relay systems and for dielectric heating) and also as oscillators (e.g., in continuous-wave Doppler radar systems).
Figure 18a shows that for channel widths below 2 µm, the value of tcc for dielectric side-walls is lower than for dielectric cathode.
These data suggest that nanocomposites have a great potential for dielectric applications.
The variable Fe2+ concentration is responsible for dielectric loss in the present series of samples.
A similar tendency was revealed for dielectric and electrical characteristics (Figures 4 and5).
But above 2 µm, the value of tcc for dielectric side-walls is higher.
We analytically investigated the design of a probe suitable for dielectric constant measurements.
A comparison is presented for dielectric, acoustic, ultrasonic, thermal and fibre optic monitoring methods.
We present a three-dimensional nonlinear finite element formulation for dielectric elastomers.
Electrical capacitance tomography (ECT) is known as an imaging technique for dielectric permittivity imaging.
The progress of the dry etching technology for dielectric materials and the ASET project were reviewed.
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