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Source: The Open Library
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1Estimation of complex permittivity of composite multilayer material at microwave frequency using waveguide measurements
By M. D. Deshpande
“Estimation of complex permittivity of composite multilayer material at microwave frequency using waveguide measurements” Metadata:
- Title: ➤ Estimation of complex permittivity of composite multilayer material at microwave frequency using waveguide measurements
- Author: M. D. Deshpande
- Language: English
- Publisher: ➤ Available from the NASA Center for Aerospace Information - National Technical Information Service [distributor - National Aeronautics and Space Administration, Langley Research Center
- Publish Date: 2003
- Publish Location: ➤ Hampton, VA - Hanover, MD - Springfield, VA
“Estimation of complex permittivity of composite multilayer material at microwave frequency using waveguide measurements” Subjects and Themes:
- Subjects: ➤ Microwave frequencies - Estimating - Composite materials - Electrical properties - Electric fields - Dielectric permeability - Substrates
Edition Identifiers:
- The Open Library ID: OL16098341M
Access and General Info:
- First Year Published: 2003
- Is Full Text Available: No
- Is The Book Public: No
- Access Status: No_ebook
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Wiki
Source: Wikipedia
Wikipedia Results
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Permeability (electromagnetism)
electromagnetism, permeability is the measure of magnetization produced in a material in response to an applied magnetic field. Permeability is typically represented
Vacuum permittivity
organizations refer to as the magnetic constant (also called vacuum permeability or the permeability of free space). Since μ0 has an approximate value of 4π × 10−7 H/m
Permittivity
letter ε (epsilon), is a measure of the electric polarizability of a dielectric material. A material with high permittivity polarizes more in response
Relative permittivity
Low-κ dielectric Dielectric loss Permittivity Refractive index Permeability (electromagnetism) Hector, L. G.; Schultz, H. L. (1936). "The Dielectric Constant
Dielectric
electromagnetism, a dielectric (or dielectric medium) is an electrical insulator that can be polarised by an applied electric field. When a dielectric material is
Dielectric loss
In electrical engineering, dielectric loss is a dielectric material's inherent dissipation of electromagnetic energy (e.g. heat). It can be parameterized
Effective medium approximations
are two widely used formulae. Effective permittivity and permeability are averaged dielectric and magnetic characteristics of a microinhomogeneous medium
Coaxial cable
used. Magnetic permeability of the insulator, μ . {\displaystyle \ \mu ~.} Permeability is often quoted as the relative permeability μ r {\displaystyle
Polarization density
in a dielectric material. When a dielectric is placed in an external electric field, its molecules gain electric dipole moment and the dielectric is said
Wave impedance
homogeneous dielectric medium, similar expressions apply, but with the wave impedance of the medium replacing Z0. The presence of the dielectric also modifies