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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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You will be working in a larger research and development project in parallel, distributed and heterogeneous computing. The project work can, under certain circumstances, be combined with an internal
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Exciting postdoc opportunity for an organic chemist! Want to use your synthesis skills to help in the development of renewable energy technologies? We are seeking a motivated and creative
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for energy and catalytic applications. The Materials Design division is currently active in the design and development of new 2D materials. This is achieved through a combination of theoretical simulations
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predictive control under uncertainty for autonomous systems. The research aims to develop improved numerical methods for solving challenging belief-space motion planning problems, where the uncertainty in
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developing and applying new optical spectroscopy techniques that use ultrafast (<10 fs) pulses of light and mid-infrared spectroscopy to understand how vibrational modes mediate a range of fundamental
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an international team led by Professor Klas Tybrandt and is part of the Laboratory of Organic Electronics (LOE). We develop composite materials, design concepts and devices for soft and deformable
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PyTorch, along with a solid understanding of modern neural network architectures and techniques. You are experienced in conducting independent research and highly motivated to develop methodologies
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for bioelectronics. The devices are developed by processes mimicking the biological biology and they are aimed to interface with the brain. The person we need We are looking for someone with background in physics
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well as the development of methods for responsible use of AI. Work assignments The postdoctoral researcher will be part of a Swedish Energy Agency funded project concerned with exploring the use of synthetic data created