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Stankowski, J. & Czyźak, B. Microwave absorption in high-Tc superconductors studied by the EPR method.
The microwave absorption is monitored by a microwave cavity with a resonant frequency of 9.4 GHz.
Zhao, X. et al. Excellent microwave absorption property of graphene-coated Fe nanocomposites.
In MFMMS, the magnetic field dependence of the microwave absorption for different temperatures is detected.
The exchange interaction was attributed to the microwave absorption properties.
The microwave absorption property is depended on the soaking time.
Qin, F. & Brosseau, C. A review and analysis of microwave absorption in polymer composites filled with carbonaceous particles.
Zhang, R. et al. Enhanced microwave absorption properties of ferroferric oxide/graphene composites with a controllable microstructure.
The fundamental microwave absorption mechanism of the composites is discussed.
Following World War II, major efforts were mounted to measure and to understand microwave absorption spectra of molecules.
Absorbed infrared radiation causes rotational changes in molecules, as described for microwave absorption above, and also causes vibrational changes.
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