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Lecture
Radar principles
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Related lectures (18)
Radar Meteorology: Principles and Applications
Explores radar meteorology principles, microphysics analysis, scanning techniques, and lidar applications in atmospheric measurements.
Active Remote Sensing: Principles and Applications
Explains the principles of active remote sensing, focusing on synthetic aperture radar and its applications in environmental monitoring.
Meteorological Radar and Lidar Applications
Covers the principles and applications of meteorological radar and lidar technologies in environmental monitoring.
Radar and Communications Technologies: Applications and Challenges
Covers radar and communication technologies, focusing on their applications in sensing and the challenges faced in modern wireless communications.
Applications: Radar and Telecommunication
Covers radar, telecommunication applications, antenna gain, and radio detection principles.
Remote Sensing Applications at MeteoSwiss
Explores remote sensing applications at MeteoSwiss, including radar network challenges and quantitative precipitation estimation.
Wireless Localization Techniques
Explores wireless localization techniques, including RSSI, trilateration, and advanced methods for accurate distance measurement in wireless networks.
Radar Technologies: Applications and Challenges in Robotics
Discusses radar technologies, their applications in robotics, and challenges in mmWave imaging.
Doppler Effect and Radar Applications
Explores the Doppler effect, radar systems, wave propagation, and satellite communication.
Snowfall Microphysics: Radar Doppler Spectra Analysis
Explores radar Doppler spectra analysis for studying snowfall microphysics and secondary ice production mechanisms.
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Earth Observation: Principles and Applications
Covers the principles of Earth observation, focusing on satellite imagery and its applications in various fields.
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Size Distribution of Drops and Ice Crystals
Explores the statistical summary of drop properties and the significance of drop size distribution in cloud and precipitation formation.
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Friis' Formula: Antenna Gain and Power Density
Explores Friis' formula, antenna gain, power density, RADAR, and Doppler RADAR.
Project-Based Learning in Communications and Robotics
Introduces a project-based course in communications and robotics, emphasizing practical projects and independent learning to prepare students for real-world challenges.
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