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dynamics and application of composite materials. Subject description Structural Engineering includes loads, design, sustainability, load carrying capacity, repair and strengthening, of buildings and civil
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about stem form and crown attributes, which will relate to stand composition. There is the potential to relate stand conditions to crown attributes, and then to relate these factors to stem wood
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Chalmers University of Technology focused on the recycling of carbon fibre composites. The project aims to develop a novel method for recovering fibres using magnetic fields, with the goal of lowering
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industrial demands in the wood composite industry. In this project, you will have the opportunity to combine cutting-edge expertise in polymer science with practical solutions for a greener future. If you have
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develop composite materials, design concepts and devices for soft and deformable electronic systems. Areas of special interest are bioelectronics and neural interfaces, stretchable (semi)conductors, energy
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degree (PhD) At least 1 original publication in a peer-reviewed journal A background in the relevant methods Complete application package submitted through the AMBER portal (including CV and detailed
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composition, structure, properties and production of materials – mainly metallic and ceramic – as well as application aspects. Project description The main goal of this project is to identify and develop
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organic semiconductors, polymer blends, and composites. Our research advances new plastic materials for wearable electronics and energy technologies. Collaborations with other universities, research
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The research will focus on the design of novel composite materials and hydrogels based on biopolymers, nanocellulose, and conjugated polymers. You will work closely with WWSC researchers at Chalmers, KTH, and
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(PhD students, post-docs, researchers and teachers) and is located at the BMC-building (Biomedical Center). The expertise includes computational and experimental mechanics of biological tissues, where a