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Soto, J.; Sainz, C.; Cendrero, A.; Diaz de Teran, J.R.; Remondo, J.; Alcaide, J.
International Atomic Energy Agency, Viena (Austria); Centro de Estudios Aplicados al Desarrollo Nuclear, La Habana (Cuba); Agencia de Energia Nuclear, La Habana (Cuba); Instituto Superior de Ciencia y Tecnologia Nuclear, La Habana (Cuba); Centro de Informacion de la Energia Nuclear, La Habana (Cuba); Centro de Tecnologia Nuclear, La Habana (Cuba); Instituto de Investigaciones Fundamentales de la Agricultura Tropical, La Habana (Cuba)1999
International Atomic Energy Agency, Viena (Austria); Centro de Estudios Aplicados al Desarrollo Nuclear, La Habana (Cuba); Agencia de Energia Nuclear, La Habana (Cuba); Instituto Superior de Ciencia y Tecnologia Nuclear, La Habana (Cuba); Centro de Informacion de la Energia Nuclear, La Habana (Cuba); Centro de Tecnologia Nuclear, La Habana (Cuba); Instituto de Investigaciones Fundamentales de la Agricultura Tropical, La Habana (Cuba)1999
AbstractAbstract
[en] The mass movements, such as slides, are the most important erosion processes and natural hazards in mountains and highlands areas. In this work, the evolution of landslides in the north of Spain were studied with a modification of the Cs-137 method for erosion. Samples are taken in a lot of landslide points at several deeps and measured with gamma spectrometry. The obtained deep profiles of Cs-137 were interpreted by the obtained with a numerical computer programme. The programme simulates the deposition of Cs-137 in the land surface, the redistribution in the soil and the soil losses by landslide. The finding results were useful for to characterise the deposition areas and for to put a date on the landslide
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1999; 6 p; 2. NURT 1999; La Habana (Cuba); 26-29 Oct 1999; Available from the library of the CIEN E-mail: katia@cien.energia.inf.cu; belkis@cien.energia.inf.cu; Published only in CD-ROM
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Multimedia
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Conference
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