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Prediction of airborne sound transmission across a timber–concrete composite floor using Statistical Energy Analysis
Churchill, C., & Hopkins, C. (2016). Prediction of airborne sound transmission across a timber–concrete composite floor using Statistical Energy Analysis. Applied Acoustics, 110, 145-149. https://doi.org/10.1016/j.apacoust.2016.03.031
Prediction of the dynamic properties of a cross laminated timber plate from an investigation of the eigenmodes using a scanning laser vibrometer
Churchill, C., & Hopkins, C. (2015). Prediction of the dynamic properties of a cross laminated timber plate from an investigation of the eigenmodes using a scanning laser vibrometer. In Vol. 37. Proceedings of the institute of acoustics (pp. 193-196).
Development of SEA models of composite heavyweight-lightweight floors by incorporating measured stiffness data for suspended ceiling hangers
Churchill, C., & Hopkins, C. (2013). Development of SEA models of composite heavyweight-lightweight floors by incorporating measured stiffness data for suspended ceiling hangers (p. (10 pp.). Presented at the 42nd international congress and exposition on noise control engineering (INTER-NOISE 2013). Noise control for quality of life. .
Prediction of the dynamic properties of a cross laminated timber plate from an investigation of the eigenmodes using a scanning laser vibrometer
Churchill, C., & Hopkins, C. (2013). Prediction of the dynamic properties of a cross laminated timber plate from an investigation of the eigenmodes using a scanning laser vibrometer (pp. 822-825). Presented at the AIA-DAGA 2013 conference on acoustics. .
Modelling airborne sound transmission across a hybrid heavyweight-lightweight floor using Statistical Energy Analysis
Churchill, C., Hopkins, C., & Krajči, L. (2011). Modelling airborne sound transmission across a hybrid heavyweight-lightweight floor using Statistical Energy Analysis (pp. 1353-1357). Presented at the Forum Acusticum 2011. .