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Phase-Shift Transmission Line Method for Permittivity Measurement and Its  Potential in Sensor Applications | IntechOpen
Phase-Shift Transmission Line Method for Permittivity Measurement and Its Potential in Sensor Applications | IntechOpen

Phase Angle - an overview | ScienceDirect Topics
Phase Angle - an overview | ScienceDirect Topics

Parallel-equivalent circuit representing a lossy dielectric and the... |  Download Scientific Diagram
Parallel-equivalent circuit representing a lossy dielectric and the... | Download Scientific Diagram

A Pixelated Microwave Near-Field Sensor for Precise Characterization of  Dielectric Materials | Scientific Reports
A Pixelated Microwave Near-Field Sensor for Precise Characterization of Dielectric Materials | Scientific Reports

Electronics | Free Full-Text | Design and Optimization of Microwave Sensor  for the Non-Contact Measurement of Pure Dielectric Materials
Electronics | Free Full-Text | Design and Optimization of Microwave Sensor for the Non-Contact Measurement of Pure Dielectric Materials

Electrode interface polarization formation in dielectric elastomer  actuators - ScienceDirect
Electrode interface polarization formation in dielectric elastomer actuators - ScienceDirect

Dielectric characterization and modelling of aqueous solutions involving  sodium chloride and sucrose and application to the design of a bi-parameter  RF-sensor | Scientific Reports
Dielectric characterization and modelling of aqueous solutions involving sodium chloride and sucrose and application to the design of a bi-parameter RF-sensor | Scientific Reports

Measurements Using Capacitive Sensors - Vitrek
Measurements Using Capacitive Sensors - Vitrek

Measuring Dielectric Properties of Materials with Varying Thickness |  Zurich Instruments
Measuring Dielectric Properties of Materials with Varying Thickness | Zurich Instruments

Dielectric properties: why they're important and how to measure them
Dielectric properties: why they're important and how to measure them

An optic to replace space and its application towards ultra-thin imaging  systems | Nature Communications
An optic to replace space and its application towards ultra-thin imaging systems | Nature Communications

A) Polarization mechanisms for dielectric materials as a function the... |  Download Scientific Diagram
A) Polarization mechanisms for dielectric materials as a function the... | Download Scientific Diagram

Phase-Shift Transmission Line Method for Permittivity Measurement and Its  Potential in Sensor Applications | IntechOpen
Phase-Shift Transmission Line Method for Permittivity Measurement and Its Potential in Sensor Applications | IntechOpen

Sensors | Free Full-Text | Design of Dielectric Resonator Antenna Using  Dielectric Paste
Sensors | Free Full-Text | Design of Dielectric Resonator Antenna Using Dielectric Paste

Topological phase singularities in atomically thin high-refractive-index  materials | Nature Communications
Topological phase singularities in atomically thin high-refractive-index materials | Nature Communications

Measure Thickness, Gap, Displacement Using Capacitance Measurement Sensor
Measure Thickness, Gap, Displacement Using Capacitance Measurement Sensor

Phase-Shift Transmission Line Method for Permittivity Measurement and Its  Potential in Sensor Applications | IntechOpen
Phase-Shift Transmission Line Method for Permittivity Measurement and Its Potential in Sensor Applications | IntechOpen

Mass Sensing – An Overview | Zurich Instruments
Mass Sensing – An Overview | Zurich Instruments

Broadband and chiral binary dielectric meta-holograms | Science Advances
Broadband and chiral binary dielectric meta-holograms | Science Advances

Phase-Shift Transmission Line Method for Permittivity Measurement and Its  Potential in Sensor Applications | IntechOpen
Phase-Shift Transmission Line Method for Permittivity Measurement and Its Potential in Sensor Applications | IntechOpen

Surface plasmon resonance - Wikipedia
Surface plasmon resonance - Wikipedia

Phase-Shifting Interferometry for Determining Optical Surface Quality
Phase-Shifting Interferometry for Determining Optical Surface Quality

Electronics | Free Full-Text | Rethinking Liquid Crystal Tunable Phase  Shifter Design with Inverted Microstrip Lines at 1–67 GHz by  Dissipative Loss Analysis
Electronics | Free Full-Text | Rethinking Liquid Crystal Tunable Phase Shifter Design with Inverted Microstrip Lines at 1–67 GHz by Dissipative Loss Analysis