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Evaluation of the Mechanical Stability of Optical Payloads for Remote Sensing Satellites Based on Analysis and Testing Results. [PDF]
Akzhigitov D +4 more
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The influence of intercalated disk nanostructure on local ionic currents and cardiac conduction. [PDF]
Sui R, Moise N, Weinberg SH.
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Population stratified differences between ATG16L1 rs2241880 polymorphism with Crohn's disease risk: a systematic review and meta-analysis. [PDF]
Gao Y, Zhang Y, Jiang P.
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La universidad que queremos (II): En búsqueda de una mejora contrastada
Arcadi Gual
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Minimally Invasive Therapy & Allied Technologies, 2004
The present contribution focuses on the structural modelling of Nitinol devices. Apart from a powerful material modelling which should consider the well-known phenomena pseudo-elasticity, pseudo-plasticity and the shape memory effect a computationally efficient finite element implementation is needed.
, Reese, , Christ
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The present contribution focuses on the structural modelling of Nitinol devices. Apart from a powerful material modelling which should consider the well-known phenomena pseudo-elasticity, pseudo-plasticity and the shape memory effect a computationally efficient finite element implementation is needed.
, Reese, , Christ
openaire +2 more sources
A SMOOTHED FEM (S-FEM) FOR HEAT TRANSFER PROBLEMS
International Journal of Computational Methods, 2013By smoothing, via various ways, the compatible strain fields of the standard finite element method (FEM) using the gradient smoothing technique, a family of smoothed FEMs (S-FEMs) has been developed recently. The S-FEM possesses the advantages of both mesh-free methods and the standard FEM and works well with triangular and tetrahedral background cells
B. Y. XUE +3 more
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Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 1995
The FOM Fusion FEM project involves the construction and operation of a 1-MW, 100 ms pulse, rapidly tunable FEM in the 130–250 GHz range for fusion applications. The undulator is a novel step-tapered undulator, consisting of two sections with different strengths and lengths and equal periodicities, and separated by a fieldfree gap.
Eecen, P.J., Tulupov, A.V., Schep, T.J.
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The FOM Fusion FEM project involves the construction and operation of a 1-MW, 100 ms pulse, rapidly tunable FEM in the 130–250 GHz range for fusion applications. The undulator is a novel step-tapered undulator, consisting of two sections with different strengths and lengths and equal periodicities, and separated by a fieldfree gap.
Eecen, P.J., Tulupov, A.V., Schep, T.J.
openaire +2 more sources

