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Items where Author is "Greenwood, P."

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Jump to: 2014 | 2013 | 2008
Number of items: 8.

2014

Greenwood, P. and Kuhn, N. J.. (2014) Does the invasive plant, Impatiens glandulifera, promote soil erosion along the riparian zone? : An investigation on a small watercourse in northwest Switzerland. Journal of soils and sediments, Vol. 14, H. 3. pp. 637-650.

Greenwood, P. and Kuhn, Nikolaus. (2014) Earth Surface Exchanges (ESEX) Commentary on 'Plants as river system engineers'by A. Gurnell. Earth Surface Processes and Landforms 39: 4-25, 2014. DOI 10,1002/esp.3397. Earth surface processes and landforms, Vol. 40. pp. 131-134.

2013

Greenwood, P. and Fister, W. and Kinnell, P. I. A. and Rüegg, H. -R. and Kuhn, N. J.. (2013) Developing and testing a precision erosion measurement facility for elucidating mobilization mechanisms in shallow-flow conditions. In: Desertification and land degradation : processes and mitigation. [Ghent], pp. 105-111.

Fister, W. and Heckrath, G. and Greenwood, P. and Kuhn, N. J.. (2013) Erodibility of biochar from a sandy soil in Denmark. In: Extended abstracts : UNCCD 2nd Scientific Conference. UNCCD, pp. 249-253.

Fister, W. and Rüegg, H. -R. and Tresch, S. and Greenwood, P.. (2013) Präzisionsanlage zur experimentellen Untersuchung von Bodenerosionsprozessen. Regio Basiliensis, 54 (1). pp. 19-26.

Yao, Y. and Zhang, E. and Kuhn, N. J. and Jones, R. and Langdon, P. and Shen, J. and Greenwood, P.. (2013) Sediment provenence in the Shudu lake basin, northwest Yunnan province, China, as revealed by composite fingerprinting. Die Erde, Vol. 144, H. 1. pp. 17-29.

Greenwood, P. and Walling, D. E. and Quine, T. A.. (2013) Using caesium-134 and cobalt-60 as tracers to assess the remobilization of recently-deposited overbank-derived sediment on river floodplains during subsequent inundation events. Earth Surface Processes and Landforms, 39 (2). pp. 228-244.

2008

Greenwood, P. and Walling, D. E. and Quine, TA.. (2008) Assessing the remobilisation of recently-deposited sediment from river flood plains during single overbank flood events, using caesium-134 and cobalt-60 as tracers. International Association of Hydrological Sciences, 325. pp. 13-22.

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