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Seuring, Stefan |
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Nor Azizi, S. |
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Pato, Margarida Vaz |
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Kölker, Katrin |
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Huber, Oliver |
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Király, Tamás |
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Spengler, Thomas Stefan |
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Al-Ammar, Essam A. |
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Dargahi, Fatemeh |
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Mota, Rui |
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Mazalan, Nurul Aliah Amirah |
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Macharis, Cathy | Brussels |
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Arunasari, Yova Tri |
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Nunez, Alfredo | Delft |
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Bouhorma, Mohammed |
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Bonato, Matteo |
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Fitriani, Ira |
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Autor Correspondente Coelho, Sílvia. |
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Pond, Stephen |
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Okwara, Ukoha Kalu |
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Toufigh, Vahid |
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Campisi, Tiziana | Enna |
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Ermolieva, Tatiana |
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Sánchez-Cambronero, Santos |
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Agzamov, Akhror |
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Bengisu, Turgay
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Publications (12/12 displayed)
- 2021Room Acoustics and Acoustical Partitions
- 2021Power Transmission in Pipelines
- 2021Sound Pressure Levels and Octave Bands
- 2021Acoustic Waves from Spherical Sources
- 2021Acoustic Intensity and Specific Acoustic Impedance
- 2021Resonant Cavities
- 2021Solutions of Spherical Wave Equation
- 2021Acoustic Waveguides
- 2021Filters and Resonators
- 2021Solutions of Acoustic Wave Equation
- 2021Derivation of Acoustic Wave Equation
- 2021Complex Numbers for Harmonic Functions
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document
Derivation of Acoustic Wave Equation
Abstract
In the analysis of acoustics, sound waves are typically formulated as the additions of series of harmonic functions such as cosine and sine functions. Each harmonic function is a solution of an acoustic wave equation under the given boundary conditions.
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