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, taking into account that socially interacting hosts can exchange gut microbes (horizontal transmission), and evaluating the effect of these factors on emergent phenotypes (gut metabolome and host behaviour
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puzzles in a quantum simulation approach. Moreover, they allow one to engineer and investigate even richer variants of the model, which go beyond the realm of existing materials. In our group, we
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vitro 2D/3D cell cultures and On-Chip devices to study fundamental processes of immune migration in solid tumor and its microenvironment. Tasks: Technical support in cell culture techniques with human
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quantum dot films engineered at the atomic as well as at the supra-nanocrystalline level to address applications related to safety and security, remote sensing, environmental monitoring, thermal imaging etc
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interact with co-workers promptly and professionally, management and support the wide user community of students, post-doctoral researchers and faculty, promoting the growth of the EM core. Excellent oral
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lasers based on colloidal quantum dot technology. The aim is to develop the first chip-integrated infrared quantum dot laser emitting in the telecom wavelength regime as well as in longer wavelengths
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atomic-layer-by layer engineer-ing of novel artificial metastable materials and interface superconductivity; (iv) studies of superconducting heterostructures, Josephson junctions, SQUIDS, nanowires, and
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Materials and Devices (AEMD) group focuses on the material sciences and technology aspects of novel electronic materials, with a strong emphasis on graphene as well as other 2D materials (MoS2). The group
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underlying human disease. The team brings together diverse expertise, ranging from work with mutant stem cell-derived beta cell organoids, engineered mouse models, single cell epigenomics, large-scale genetic
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. The postdoctoral candidate will have the opportunity to work in a vibrant project at the intersection of materials science, electrochemistry, optoelectronics, and engineering, as well as utilize state-of-the-art