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Universitat Politècnica de Catalunya (UPC)- BarcelonaTECH | Barcelona, Cataluna | Spain | about 3 hours ago
. Evaluate and quantify fracture behavior using fracture mechanics theories applied to high loading rates (instrumented impact). Where to apply Website https://seuelectronica.upc.edu/en/procedures/call
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-fracture-group and https://www.nist.gov/programs-projects/pipeline-safety to learn more about our facilities and current research. Keywords Radiation; Metallurgy; Materials science; NDE; Modeling
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practical solutions to real-world problems. Project background Fracture risk assessment today relies mainly on areal bone mineral density (DXA) which has limited discriminative power and lose accuracy over
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create bone metastases in the spine, increasing the risk of fracture in these patients. Even treatments in some cases (for example androgen deprivation therapy for prostate cancer patients) may reduce
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Delft University of Technology (TU Delft) | Delft, Provincie Zuid-Holland | Netherlands | 14 days ago
has been made in understanding hydrogen embrittlement in conventional steels, the mechanisms governing hydrogen-induced degradation and fracture in compositionally complex circular steels remain poorly
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related to staff position within a Research Infrastructure? No Offer Description In this Postdoc position, you will investigate bone remodelling and fracture healing in a rare genetic bone disorder
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emphasis on the transition from stable to unstable crack growth in damage tolerant materials (e.g., tough nature materials like wood and composite materials) that experience rising fracture resistance
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on advanced modeling of coupled fracture/damage of geomechanical materials when subjected a range of multiphysical loading regimes including hydraulic, thermal, and chemical processes. The direct
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advanced modeling of coupled fracture/damage of geomechanical materials when subjected a range of multiphysical loading regimes including hydraulic, thermal, and chemical processes. The direct
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advanced modeling of coupled fracture/damage of geomechanical materials when subjected a range of multiphysical loading regimes including hydraulic, thermal, and chemical processes. The direct