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Acoustical engineering
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Related lectures (32)
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Analogue electrical schemes of small acoustic elements
Discusses modelling small acoustic systems using electric representations and deriving analogue electrical quadripoles for acoustic elements.
Electroacoustics: Notions of Acoustics
Covers fundamental concepts of electroacoustics, including frequency response, sensitivity, efficiency, power, and directivity.
Radiation Impedance in Acoustic Systems
Explores the calculation of radiation impedance in acoustic systems using COMSOL Multiphysics.
Electrodynamic Loudspeaker Acoustic Response
Covers the electrodynamic loudspeaker acoustic response and calculations of acoustic power and pressure.
Perception of Sound and Room Acoustics: Electroacoustics and Audio Engineering
Explores sound perception, room acoustics, and electroacoustics, covering physical principles and practical applications.
Electrodynamic Loudspeaker: Thiele Small Parameters
Explores electrodynamic loudspeakers' Thiele/Small parameters for audio engineering.
Frequency Domain Study: Acoustic Response Analysis
Explores the Frequency Domain study in COMSOL for analyzing acoustic responses to harmonic excitation in various fields.
Doublets and Dipoles: Acoustic Radiation and Directivity in Audio Engineering
Explores acoustic radiation, directivity, and superposition in audio engineering, focusing on doublets, dipoles, and cardioid sources.
Acoustic Manipulation: Holographic Micro-Tweezers to Quantum Analogues
Explores advancements in acoustic manipulation technology, focusing on the transition from optical tweezers to acoustical tweezers and their potential in life sciences.
Acoustics: Designing for Sound Environment
Explores the significance of acoustics in architectural design and the importance of sound environments for user comfort.
Audio Engineering Fundamentals
Introduces audio engineering fundamentals, covering microphone transduction, impedance matching, and directivity control.
Microphone Theory: Pressure & Gradient Microphones
Explores the theory and operation of pressure and gradient microphones, mixed-action microphones, and microphone arrays.
Electroacoustic Absorbers: Introduction
Introduces electroacoustic absorbers for room modal equalization, focusing on improving the listening experience at low frequencies.
Geometrical Acoustics: Simulation and Criteria
Explores applications and criteria of geometrical acoustics in audio engineering.
Acoustic Simulation: Pulsating Sphere
Covers the simulation of acoustic waves in fluids using the Pressure Acoustics, Frequency Domain interface in COMSOL Multiphysics.
Room Acoustics Quality Criteria
Explores the impact of reflections on sound localization and the annoyance caused by echoes in room acoustics.
Room Modes Equalization with Electroacoustic Absorbers: Frequency Response
Analyzes the frequency response of a room with electroacoustic absorbers.
Acoustic Analysis of Reverberation Time
Explains the calculation of reverberation time for different spaces based on volume and occupancy.
Electroacoustic Absorbers: Control Design
Covers the design of electroacoustic absorbers, focusing on modal equalization, optimization, and performance evaluation.
Loudness and Sound Level
Explores loudness, sound level, perception, scaling, and integration in audio engineering.
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