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hierarchies and incorporating more technical datasets such as geomorphology and metal detection finds into archaeological analysis researching into the complexity of the production and distribution chains
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educational solution that uniquely combines elements of gamification, adaptive learning, and advanced technologies including 3D/VR/XR and AI. Your primary responsibility will be ensuring continuous user
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. This project combines molecular genetics, advanced imaging, and quantitative analysis to answer fundamental questions in plant cell biology and genome stability. You will be part of AGILE, a large international
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biological component of the project. The postdoctoral fellow will establish and maintain genetically and fluorescently modified cancer cell models suitable for live-cell mechanobiology, such as reporter
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travel, potential internships) Flexible working hours EMPLOYMENT & FUNDING Start: 1 October 2026 Funding combines a standard salary component (32k CZK, taxed) and a PhD scholarship component (16k, tax-free
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the occupational risks faced by inhabitants of the Roman Empire influenced their choice of preferred cults. The main methods used in the project include spatial analysis, predictive modelling, statistics, and the
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spectroscopic parameters, with a particular emphasis on magnetic resonance. This is an ideal opportunity for candidates interested in applied quantum chemistry, especially with a focus on heavy element compounds
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studies Application of basic and advanced statistical methods (e.g., linear/logistic regression, Cox regression, potentially also multilevel analysis, structural equation modelling, mixed-effects modelling
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on landscape archaeology using Geographic Information Systems (GIS) and network analysis MAIN JOB CONTENT Framework Performance of auxiliary/partial research and development work according to the instructions
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work in the field of parasitology. Participation in the preparation and implementation of research projects and publications. Collection and analysis of biological samples using modern laboratory methods