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correlation of the damage mechanisms at micro- and macro-scale. This also generates accurate input data for multi-scale models for composites. This PhD will further develop and enhance these micromechanical
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dedicated PhD candidate on advanced material modelling in the textile domain. In this project you will dive deep into a cutting-edge research area, exploring the complexities of advanced textile material
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modelling and design of the pressurized composite tank, in different operational conditions (static burst, fatigue and impact). The research will be done in close collaboration with the involved industrial
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modelling and design of the pressurized composite tank, in different operational conditions (static burst, fatigue and impact). The research will be done in close collaboration with the involved industrial
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assessment of solutions for Structural Health Monitoring. The research will be done in close collaboration with the involved industrial partners. The PhD researcher will also closely work together
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will be able to align your research with other research groups. You will expand your research network in Europe and beyond extensively. You will contribute to the training of young researchers
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inconsistency is processed by qualified ethnic minority job seekers and how it can be overcome. To this end, multiple quantitative research methods will be applied (e.g., experiments, experience sampling study
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, the researcher will join an international team of scholars working on manuscript materials recently uncovered from the historic area of Greater Gandhāra and contribute to the study and preservation