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composite materials, derived from inorganic by-products and other sustainable precursors, is available at CBS.GPE. This position involves the design, synthesis, and characterization of metal-organic
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processes for efficient metal recovery. Utilization of material characterization techniques, including: Inductively Coupled Plasma (ICP) for metal composition analysis. X-ray Powder Diffraction (XRD) and
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rapid growth of artificial intelligence. Key responsibilities include synthesising 2D materials with precise control over layer thickness, composition, and defect density, followed by comprehensive
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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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Fritz Haber Institute of the Max Planck Society, Berlin | Berlin, Berlin | Germany | about 1 month ago
materials with applications in heterogeneous catalysis, energy conversion and electrochemistry. By combining unique synthesis methods, state-of-the art tools for experimental characterization and advanced
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materials that can potentially help answer them. Publishing goals can also be included. A 3-page CV summarizing education, positions, research experience, and other activities. The period of enrolment
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will have three responsibilities: - (1) studies of composite materials for a beam-facing RF shield. (2) contributions to the operation and exploitation of the Timepix4 testbeam. (3) simulation work
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contribute? You have experience in polymer synthesis and vitrimer materials? You want to develop novel polymeric materials for impact-resistant composite structures? Then we have a new opening for you! The
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, synthesizing and characterizing multifunctional composite materials for applications in soft robotics and wearable computing and such other tasks that are assigned to you. Core Responsibilities: Responsible
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generator integration in building walls, which might just be the right project for you. Thermoelectric Generators (TEG) made of non-strategic materials can lead to a widespread, cost-effective deployment