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competitive ERC. The project focuses on the development of a first-principles, machine-learning-accelerated computational framework for modelling polymorphism, anharmonicity, and electron–phonon interactions in
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emerging model for colour polymorphism, defence, and host–parasite interactions. Our group maintains >17 years of field data, >60,000 pedigree individuals, and well-established laboratory populations from
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George Emil Palade University of Medicine, Pharmacy, Science, and Technology of Târgu Mureș | Romania | 21 days ago
expression Mutations, gene polymorphism DNA sequencing – theroy and practice Sangersequencing Next generation sequencing (NGS) Molecular testing in oncology Laboratory approaches in Molecular Pathology
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George Emil Palade University of Medicine, Pharmacy, Science, and Technology of Târgu Mureș | Romania | 21 days ago
extraction Evaluation of nucleic acids PCR – theory and practice qPCR - theory and practice Gene expression Mutations, gene polymorphism DNA sequencing – theroy and practice Sangersequencing Next generation
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. Term: 2 years, with the possibility of extension. Project context Arctia plantaginis is an emerging model for colour polymorphism, defence, and host–parasite interactions. Our group maintains >17 years
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divergence between species, an excess of intermediate allelic frequencies, and/or, for long-lived signals such as trans-species polymorphisms. Balancing selection can emerge from different non-exclusive
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; Regional, national, and international collaborator programmes. For more information on our research, please see Prof. Barbour’s current group website at https://academic.sun.ac.za/barbour/Home.html , as
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Université de Bordeaux / University of Bordeaux | Villenave d Ornon, Aquitaine | France | 2 months ago
, taking into account single nucleotide polymorphisms (SNPs) and structural variants (SVs). You will build a searchable variant database for the implementation of genomically-assisted selection of alleles
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polymorph, facet composition, and geometry. This project aims to establish the first design framework for programmable, functional protein–semiconductor metamaterials, contributing to a broader vision of
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. An emerging frontier focuses on designing proteins that act as templates for inorganic interfaces, forming symmetric oligomers that control inorganic material polymorph, facet composition, and geometry