Vibrations in Physical Systems, 2021, vol. 32, No. 1

Editors:
Tomasz STRĘK (editor in-chief)
Maciej TABASZEWSKI (editor)

Guest editor:
Katarzyna SUDER-DĘBSKA

Publishing date: October 2021

  1. Statistical Analysis With Kolmogorov-Smirnov Distance for Reflections’ Directions of Arrival and Amplitudes for Sound Field Diffuseness Estimation
    by: Bartłomiej CHOJNACKI , Bartosz PRZYSUCHA , Tadeusz KAMISIŃSKI , Wojciech BINEK
    Vibrations in Physical Systems, 2021, 32(1), 2021101, pages: 6
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.01
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  2. Usefulness of the Matching Pursuit Method in Phonocardiographic Signal Analysis
    by: Natalia DAMPS, Maciej KŁACZYŃSKI
    Vibrations in Physical Systems, 2021, 32(1), 2021102, pages: 8
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.02
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  3. Method for the Correlation Coefficient Estimation of the Bottom Echo Signal in the Shallow Water Application Using Interferometric Echo Sounder
    by: Piotr GRALL , Jacek MARSZAL
    Vibrations in Physical Systems, 2021, 32(1), 2021103, pages: 6
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.03
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  4. The Use of Tranquility Rating for Urban Spaces
    by: Julia IDCZAK, Klara JUROS, Aleksandra CHOJAK, Dominik MLECZKO
    Vibrations in Physical Systems, 2021, 32(1), 2021104, pages: 8
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.04
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  5. Stopband Effect and Sound Transmission Loss of Periodic Locally Resonant Structures
    by: Klara JUROS, Aleksander KRAS, Tadeusz KAMISIŃSKI
    Vibrations in Physical Systems, 2021, 32(1), 2021105, pages: 9
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.05
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  6. A New Direct-Sequence Spread Spectrum Signal Detection Method for Underwater Acoustic Communications in Shallow-Water Channel
    by: Iwona KOCHAŃSKA
    Vibrations in Physical Systems, 2021, 32(1), 2021106, pages: 8
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.06
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  7. Experimental Tests of the Acoustic Properties of Sound-Absorbing Linings and Cores of Layered Baffles
    by: Krzysztof KOSAŁA
    Vibrations in Physical Systems, 2021, 32(1), 2021107, pages: 6
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.07
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  8. Voice Pathology Assessment Using X-Vectors Approach
    by: Katarzyna KOTARBA , Michał KOTARBA
    Vibrations in Physical Systems, 2021, 32(1), 2021108, pages: 8
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.08
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  9. Influence of the Elastic Cavity Walls on Cavity Flow Noise
    by: Paweł ŁOJEK , Ireneusz CZAJKA, Andrzej GOŁAŚ, Katarzyna SUDER-DĘBSKA
    Vibrations in Physical Systems, 2021, 32(1), 2021109, pages: 8
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.09
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  10. Influence of Cavity Edges Shape on Flow Induced Noise
    by: Paweł ŁOJEK , Katarzyna SUDER-DĘBSKA , Michał MACH
    Vibrations in Physical Systems, 2021, 32(1), 2021110, pages: 8
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.10
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  11. Application of High-Density Sound Absorbing Materials for Improving Low-Frequency Spectral Flatness in Room Response
    by: Mirosław MEISSNER
    Vibrations in Physical Systems, 2021, 32(1), 2021111, pages: 9
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.11
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  12. Using FreeFEM Open Software for Modelling the Vibrations of Piezoelectric Devices
    by: Marek MOSZYŃSKI
    Vibrations in Physical Systems, 2021, 32(1), 2021112, pages: 7
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.12
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  13. Estimation of Sound Power Level of Machine by Inverse Method
    by: Janusz PIECHOWICZ
    Vibrations in Physical Systems, 2021, 32(1), 2021113, pages: 9
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.13
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  14. Impact Sound Reduction Measurement Method for Lightweight Floor Screed
    by: Adam PILCH , Piotr DUDA, Jarosław RUBACHA
    Vibrations in Physical Systems, 2021, 32(1), 2021114, pages: 6
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.14
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  15. A Method of Precise Pulse Onset Determination Using the Akaike Information Criterion for Ultrasound Transmission Tomography
    by: Piotr PRUCHNICKI , Krzysztof J. OPIELIŃSKI
    Vibrations in Physical Systems, 2021, 32(1), 2021115, pages: 6
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.15
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  16. Underwater Acoustic Communication System Using Broadband Signal with Hyperbolically Modulated Frequency
    by: Jan H. SCHMIDT , Aleksander M. SCHMIDT
    Vibrations in Physical Systems, 2021, 32(1), 2021116, pages: 8
    DOI:https://doi.org/10.21008/j.0860-6897.2021.1.16
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