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Titlebook: Software Technologies for Embedded and Ubiquitous Systems; 5th IFIP WG 10.2 Int Roman Obermaisser,Yunmook Nah,Franz J. Rammig Conference pr

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Javier Fernández Briones,Miguel Ángel de Miguel,J. P. Silva,Alejandro Alonsoonal analysis of the effect of stenting on the arterial wall, studies of collagen fibre distributions in saccular aneurysms and the interaction between blood flow and aneurysm development.....Biological tissues – the musculo-skeletal system, heart valves, ligaments, intervertebral discs, the uterus
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Ina Schieferdecker,Jürgen Großmannior showed strain hardening. This hardening behavior was due to shear in the organic layers that transferred load to the tablets via the well-known shear lag load transfer mechanism in fiber and platelet reinforced composites. It is noted that this is a preliminary study where the simplified microme
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Ingomar Wenzel,Raimund Kirner,Bernhard Rieder,Peter Puschneronal analysis of the effect of stenting on the arterial wall, studies of collagen fibre distributions in saccular aneurysms and the interaction between blood flow and aneurysm development.....Biological tissues – the musculo-skeletal system, heart valves, ligaments, intervertebral discs, the uterus
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Songah Chae,Doo-Hyun Kim,Changhee Jung,Duk-Kyun Woo,Chaedeok Limior showed strain hardening. This hardening behavior was due to shear in the organic layers that transferred load to the tablets via the well-known shear lag load transfer mechanism in fiber and platelet reinforced composites. It is noted that this is a preliminary study where the simplified microme
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Martin Schlager,Roman Obermaisser,Wilfried Elmenreichior showed strain hardening. This hardening behavior was due to shear in the organic layers that transferred load to the tablets via the well-known shear lag load transfer mechanism in fiber and platelet reinforced composites. It is noted that this is a preliminary study where the simplified microme
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Youngjin Jung,Jeongbae Lee,Jinbaek Kwon,Keewook Rim,Sangyoung Choior showed strain hardening. This hardening behavior was due to shear in the organic layers that transferred load to the tablets via the well-known shear lag load transfer mechanism in fiber and platelet reinforced composites. It is noted that this is a preliminary study where the simplified microme
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