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crucial role in controlling risk. The project aims to investigate how abrupt changes in dynamics, such as hidden Markov models or statistical jump models, affect the optimal decision-making process for
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on flexible microsystems that can be implanted in the body, for example as part of nerve-controlled bionic limbs or for direct coupling to signals in the brain. We develop nano- and microfabrication methods
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measurement and control platform for optimal island operation of Chalmers’ wind-battery system. Machine learning-based forecasting tools for renewable production using limited local measurement data
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as Postdoctoral researcher. Experience with advanced DNA sequencing analysis, including: - Proficiency in computational skills including programming (e.g., bash, Python, R) and command-line interface
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, yet key questions remain regarding the chemical and tectonic controls on their alteration and mineralisation. A characteristic feature of IOA systems is extensive scapolite-rich alteration, whose
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regarding the chemical and tectonic controls on their alteration and mineralisation. A characteristic feature of IOA systems is extensive scapolite-rich alteration, whose formation may involve contributions
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recently identified signaling pathway by Rolny and colleagues that controls the tumor-promoting functions of TAMs has opened up new avenues for targeted immunotherapy. The project has a strong translational
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-based markers – is particularly valuable. Excellent command of English, both spoken and written, is required. Understanding of Swedish is an advantage, as clinical data and ethical applications are often
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skills including programming (e.g., bash, Python, R) and command-line interface in Unix/Linux environments - Experience with bioinformatics pipelines for DNA sequencing data analysis (e.g., variant calling
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Obstructive Pulmonary Disease (COPD), as well as healthy matched controls who have undergone physical training of varying intensity and duration. Job Responsibilities As a Postdoc in this project, you will