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porous carbon electrodes developed in the network. You will leverage advanced data analysis methods such as Distribution of Diffusion Times to obtain insight into mass transfer and microstructural effects
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Job Purpose To make a leading contribution to the GALLANT programme (https://www.gla.ac.uk/gallant ) through the project “Simultaneous carbon sequestration and pollution remediation”, working with
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to join the exciting and collaborative research project part of the Dutch National Growth Fund program – Growth with Green Steel (https://groeienmetgroenstaal.nl/en/ ). As a PhD or post-doc researcher, you
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novel in-situ characterisation approach including surface-specific techniques, spectroscopic, and microstructural characterisation, to examine the chemistry and interactions at the interface of the oil
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Green Steel (https://groeienmetgroenstaal.nl/en/ ). As a PhD or post-doc researcher, you will work in a stimulating academic environment and collaborate with leading industrial partners. You will also
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to learn, thriving in dynamic, fast-moving environment Strong Trading Interest and drive to develop a deep mental model of microstructure and market intuition By applying to this role, you will be
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microstructure, residual stress, and distortion of the deposited parts, all of which significantly impact their mechanical properties and overall performance. Consequently, accurately determining and effectively
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. The temperature field generated by the interaction between the arc and the material plays a critical role in determining the microstructure, residual stress, and distortion of the built parts—all of which
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Engineering. With the support of the National Laboratory of Solid State Microstructures and the Frontier Science Center for Critical Earth Materials Cycling, SSER is striving to fulfill the strategic needs
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for real-time measurements of structural, chemical, microstructural, and phase changes in the material. Another direction is to develop and perform such measurements to gain a comprehensive understanding of