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The Internet is enabled by a network of silica fibers with a step-index profile. Since the invention of the optical fiber 50 years ago, its design has not been radically changed. During the last 10 years, it has
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14 Mar 2025 Job Information Organisation/Company Uppsala universitet Department Uppsala universitet, Department of Physics and Astronomy Research Field Physics Researcher Profile First Stage Researcher (R1) Country Sweden Application Deadline 15 Apr 2025 - 21:59 (UTC) Type of...
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to join our team. With Björn Lindström as teamleader and funded by the Bank of Sweden Tercentenary Foundation, we are studying how human-AI collaboration can improve human collective innovation. Our
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improve human collective innovation. Our interdisciplinary, multi-methods approach combines behavioral experiments, computational (RL/cognitive) modelling and multi-agent simulations. We offer a dynamic
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numerical methods used to design wind turbines and understand turbulent combustion in jet engines, this research aims to address critical computational challenges in simulating the physical dynamics
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to make a difference. Do you want to be involved and contribute to our development? Together, we can create a sustainable future through knowledge and innovation. We believe that knowledge and new
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Postdoctoral position in fabrication of hollow-core optical fibers for next-generation communication
-index profile. Since the invention of the optical fiber 50 years ago, its design has not been radically changed. During the last 10 years, it has been discovered that a new class of hollow-core fibers
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step-change in organic semiconductor material design by directly harnessing the power of vibrational modes to improve their functionality in optoelectronic applications. This will be achieved by
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: Structural integrity of materials is of primary concern in sustainable mechanical design, as more durable products impose longer product lives and allow the usage of less material. Accounting for structural
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, design and characterization of quantum processors Development and optimization of nano-fabrication processes for large-scale devices Development of optimal control techniches to achieve fast and high