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“Modern pollution signals in sediments from Windermere, NW England, determined by micro-XRF and lead isotope analysis”, Micro-XRF Studies of Sediment Cores: Applications of a Non-destructive Tool for the Environmental Sciences: Part III. Springer, pp. 423–442, 2015.
, “A 500 year sediment lake record of anthropogenic and natural inputs to Windermere (English Lake District) using double-spike lead isotopes, radiochronology, and sediment microanalysis”, Environmental Science & Technology, pp. 7254–7263, 2014.
, “Characterization of buried inundated peat on seismic (Chirp) data, inferred from core information”, Archaeological Prospection, vol. 14, pp. 261-272, 2007.
, “Measurement of the in situ compressional wave properties of marine sediments”, Oceanic Engineering, IEEE Journal of, vol. 32, pp. 484-496, 2007.
, “The frequency dependence of compressional wave velocity and attenuation coefficient of intertidal marine sediments”, Journal of the Acoustical Society of America, vol. 120, pp. 2526-2537, 2006.
, “Imaging of Buried Archaeological Materials: The Reflection Properties of Archaeological Wood”, Marine Geophysical Research, vol. 26, pp. 135-144, 2005.
, “Tidal height and frequency dependence of acoustic velocity and attenuation in shallow gassy marine sediments”, J. Geophys. Res., vol. 109, p. B08101, 2004.
, “The acoustic characteristics of marine archaeological wood”, in Acoustical Oceanography. Proceedings of the Institute of Acoustics Conference on Acoustical Oceanography, vol. 23 (Part 2), St Albans, UK: Institute of Acoustics, 2001, pp. 299-306.
, “Temporal variability of P-wave attenuation due to gas bubbles in a marine sediment”, in Acoustical Oceanography, Proceedings of the Institute of Acoustics Conference on Acoustical Oceanography, 9-12 April 2001, Southampton Oceanography Centre, St Albans, UK: Institute of Acoustics, 2001, pp. 283-298.
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