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Microwave heating of dielectric lossy objects
S. Kent
*
,
E. F. Kent
*
Corresponding author for this work
Department of Electronics and Communication Engineering
Department of Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Citations (Scopus)
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Keyphrases
Temperature Distribution
100%
Dielectric
100%
Lossy
100%
Microwave Heating
100%
Plane Wave
50%
Transmission Line
50%
Dielectric Object
50%
Low Dielectric Loss
50%
Incidence Angle
50%
Metal Plate
50%
Multiple Radii
50%
Slab Material
50%
Plane Wave Propagation
50%
Plane Wave Reflection
50%
Cascaded Transmission Line
50%
Heating Pattern
50%
Inner Electric Field
50%
Lossy Material
50%
Multilayer Slabs
50%
Engineering
Dielectrics
100%
Plane Wave
100%
Electric Lines
100%
Temperature Distribution
100%
Microwave Heating
100%
Dielectric Object
50%
Incidence Angle
50%
Electric Field
50%
Metal Plate
50%
Physics
Dielectric Material
100%
Transmission Line
66%
Plane Wave
66%
Temperature Distribution
66%
Wave Propagation
33%
Electric Field
33%
Chemical Engineering
Temperature Distribution
100%
Microwave Heating
100%
Material Science
Dielectric Material
100%
Plate Metal
33%