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This article has been cited by the following publications. This list is generated based on data provided by Crossref.

Chaigne, Antoine 2016. Reconstruction of piano hammer force from string velocity. The Journal of the Acoustical Society of America, Vol. 140, Issue. 5, p. 3504.
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Desvages, Charlotte and Bilbao, Stefan 2016. Two-Polarisation Physical Model of Bowed Strings with Nonlinear Contact and Friction Forces, and Application to Gesture-Based Sound Synthesis. Applied Sciences, Vol. 6, Issue. 5, p. 135.
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Gwinner, Joachim and Stephan, Ernst Peter 2018. Advanced Boundary Element Methods. Vol. 52, Issue. , p. 537.
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Ishikawa, Ai Michels, Dominik L. and Yaguchi, Takaharu 2018. Geometric-integration tools for the simulation of musical sounds. Japan Journal of Industrial and Applied Mathematics, Vol. 35, Issue. 2, p. 511.
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Akar, Özge and Willner, Kai 2020. Investigation of the Helmholtz Motion of a Violin String: A Finite Element Approach. Journal of Vibration and Acoustics, Vol. 142, Issue. 5,
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Uncini, Aurelio 2022. Digital Audio Processing Fundamentals. Vol. 21, Issue. , p. 609.
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Bucur, Voichita 2022. Handbook of Materials for Percussion Musical Instruments. p. 483.
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Carré, Pierre and Bensoam, Joël 2023. Sound synthesis of a 3D nonlinear string using a covariant Lie group integrator of a geometrically exact beam model. Journal of Sound and Vibration, Vol. 544, Issue. , p. 117354.
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Bilbao, Stefan and Ducceschi, Michele 2023. Models of musical string vibration. Acoustical Science and Technology, Vol. 44, Issue. 3, p. 194.
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Han, Mingjin 2024. Artificial intelligence-driven tone recognition of Guzheng: A linear prediction approach. Demonstratio Mathematica, Vol. 57, Issue. 1,
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Simionato, Riccardo Fasciani, Stefano and Holm, Sverre 2024. Physics-informed differentiable method for piano modeling. Frontiers in Signal Processing, Vol. 3, Issue. ,
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Simionato, Riccardo and Fasciani, Stefano 2025. Sines, transient, noise neural modeling of piano notes. Frontiers in Signal Processing, Vol. 4, Issue. ,
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Time domain simulation of a piano. Part 1: model description
  • Volume 48, Issue 5
  • J. Chabassier (a1), A. Chaigne (a2) and P. Joly (a3)
  • DOI: https://doi.org/10.1051/m2an/2013136
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Time domain simulation of a piano. Part 1: model description
  • Volume 48, Issue 5
  • J. Chabassier (a1), A. Chaigne (a2) and P. Joly (a3)
  • DOI: https://doi.org/10.1051/m2an/2013136
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Time domain simulation of a piano. Part 1: model description
  • Volume 48, Issue 5
  • J. Chabassier (a1), A. Chaigne (a2) and P. Joly (a3)
  • DOI: https://doi.org/10.1051/m2an/2013136
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