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Titlebook: Natural and Artificial Rockslide Dams; Stephen G. Evans,Reginald L. Hermanns,Gabriele Sca Book 2011 Springer-Verlag Berlin Heidelberg 2011

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,Rock-Avalanche Size and Runout – Implications for Landslide Dams,h there might be useful answers. The regional answer comes from probabilistic landslide hazard analysis. We approach the local problem by discussing forms that answers might have taken in some historical New Zealand landslides. Edifice shape seems more important than specific, weakest defects in det
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The Grain-Size Distribution of Rock-Avalanche Deposits: Implications for Natural Dam Stability, detailed research into the grain-size distribution and sedimentology of rock-avalanche deposits. These data show poorly sorted deposits composed of angular, highly-fragmented clasts with preserved source stratigraphy. Grain-size distributions segregate based on rock type and become finer with dista
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A. R. Ischukhysical and biological systems. Their mechanical properties are connected to molecular scale friction and adhesion forces [1]; biomolecular interactions such as protein–protein interactions [2]; ion channels [3]; surface attachments of Geckos, spiders, and other insects [4]; the transport of water i
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O. Hungr. Thus, IAPP amyloid formation can be accelerated by seeding with preformed IAPP amyloid fibrils. At the molecular level, IAPP amyloid formation was found to proceed . a conformational transition into hydrophobic β-sheet containing conformeric states..The transition into β-sheets could also be seede
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0930-0317 formation, sedimentology and stability of rockslide dams is examined in several analytical papers. An analysis of break-out floods from volcanogenic lakes and hydrological methods of estimating break-out flood978-3-642-26975-2978-3-642-04764-0Series ISSN 0930-0317 Series E-ISSN 1613-2580
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Reginald L. Hermanns,Andres Folguera,Ivanna Penna,Luis Fauqué,Samuel Niedermann
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