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. Particular emphasis will be placed on understanding the relationships between catalyst structure, interfacial processes, local reaction environments, and electrochemical performance. The project aims
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of electronic and ionic transport and structure–property relationships in functional materials. Integration of developed materials into soft and deformable thermal energy-harvesting devices. Characterization and
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on controlling and understanding the structure and properties of the coatings at the atomic and nanometer scales. Materials science is inherently interdisciplinary, involving close collaboration with theorists and
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and characterization of thin films. It focuses on controlling and understanding the structure and properties of the coatings at the atomic and nanometer scales. Materials science is inherently
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training collaboration in which universities and organisations from several countries jointly train doctoral students. The project combines research with structured doctoral education, including courses
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disorders. This call comprises two PhD positions with complementary research focus, unified by the goal of enabling in situ electronic functionalization of living tissue, where biological structures and
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emphasis will be devoted to practical problems in economics and finance, like the construction of high-dimensional optimal portfolios. Motivated by the widespread application of sample generalized inverses