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Building Physics and Solar Energy Laboratory
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Related lectures (37)
Plasma Waves: Characteristics and Magnetization
Explores plasma wave characteristics in magnetized plasma and discusses Doppler shifted resonances.
Plasma Waves: Propagation and Modes
Explores the propagation and modes of plasma waves, including R- and L-waves, Langmuir waves, and Faraday rotation.
Introduction to Acoustics
Covers the science of sound, wave propagation, acoustic properties, and sound wave characteristics.
Plasma Waves: Damping and Resonance
Explores plasma waves, emphasizing damping and resonance effects on energy exchange within the system.
Electromagnetic Waves: Theory & Applications
Explores electromagnetic waves, Maxwell's equations, circuits, and wave propagation through different media.
Plasma Waves: Two-Fluid Model
Explores plasma waves described by the two-fluid model and the behavior of Langmuir waves.
Electromagnetic Waves: Reflection, Refraction, and Interference
Explores electromagnetic waves, wave optics, interference, and diffraction phenomena in experimental physics II.
Photon: the light particle
MOOC: The Radio Sky I: Science and Observations
Delves into the properties and significance of the photon as a fundamental entity in the Universe.
Landau Damping in Plasma Physics
Covers the concept of Landau damping in plasma physics, focusing on the interaction between waves and particles.
Geometric Acoustics and Colorimetry
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Explores geometric acoustics, color perception, superposition of waves, and colorimetry, along with exam instructions in building physics.
Colorimetry and Light Propagation
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Explores colorimetry, light propagation, and sound wave properties.
Light Propagation and Colorimetry
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Discusses light propagation, color perception, radiation, and sound wave properties.
Building Physics: Radiation and Color Perception
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Explores radiation, sound waves, color perception, and luminous flux characterization.
Heat Transfer in Windows
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Explores heat transfer mechanisms in windows, covering spectral transmittance, reflection, and absorption of incident radiation.
Maxwell Equations for Antennas: Theory and Applications
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Explores the application of Maxwell's equations to antennas, covering radiation, potentials, currents, waves, and polarization.
Radiation and Antennas
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Explores interference, reflection, diffraction, fog effects, antennas, noise, EIRP, and link assessment in radiation and antennas.
Sound Wave Properties: Building Physics and Color Perception
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Covers sound wave properties, building physics, color perception, and acoustics.
Building Technology III: Building Physics
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Explores thermal losses in building technology, emphasizing windows, frames, and air infiltration.
Waves in Fluids: Basic Properties and Equations
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Covers the properties of waves in fluids, focusing on surface waves and their mathematical representation.
Antennas: Characteristics and Applications
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Explores antenna characteristics, families, Maxwell's equations application, reciprocity, wave propagation, directivity, and frequency features.
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