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                metamaterials of various shapes, materials and textures and model their interaction with the upcoming waves. In the end, this project enhances our knowledge of PBs and provides practical solutions in their design 
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                the project The following publications are related to the work to be performed within this project: Your Profile: Excellent master`s degree in Chemistry, Physics, Engineering, Material science or a similar 
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                second-class undergraduate honours degree in Engineering, Physics or Materials Science Excellent English written and spoken communication skills Being passionate about science, curious, and self-driven 
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                -performance computing, simulations, and computational methods in physical sciences. Informal enquiries should be directed to the project supervisors, Dr Cillian Cockrell (Bangor University, NFI – c.cockrell 
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                Max Planck Institute for the Structure and Dynamics of Matter | Hamburg, Hamburg | Germany | 20 days agoScience and Quantum Materials Research The program offers exciting research opportunities at ultra-intense electron and X-ray sources to directly observe atomic motions during primary events. The use 
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                of suitable process parameters for PBF techniques, and the comprehensive analysis and testing of the fabricated materials. Key responsibilities include: scientific work on the project topics, including support 
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                to mastering the great challenges facing society today. The Institute for Ion Beam Physics and Materials Research is dedicated to the study of materials and their nanostructures that can be considered for future 
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                position is within the field of experimental materials physics and nanotechnology, in the project «Nanoscale imaging of magnetic skyrmion dynamics in thin film devices» (NIMSKY). Magnetic skyrmions 
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                part of the REACT initiative, 15 early-stage researchers (ESRs) will be trained through a comprehensive, interdisciplinary program spanning material science, device physics, computer architecture 
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                origin. We hypothesize that it could be a mixture of plant, algae, and microbial-derived materials. The student will exploit the samples resulting from physical fractionation to study (a) the molecular