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the formation and evolution of magma oceans in planets. By recreating the extreme conditions present during the early stages of planetary accretion, the project aims to elucidate the physical and chemical
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application. In this PhD, the focus is to rationally develop and process highly crystalline, X-ray sensitive lead-free perovskite material layers through micromanaging their electronic structure by composition
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excellent study results; You have a keen interest in labor market topics. You enjoy doing research related to policy-relevant and societal themes; You are fluent in English; You enjoy the writing process and
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. Application Deadline: May 27th 2024 Selection Deadline: June 17th 2024 Eligibility criteria Applicants with a Master degree or an equivalent in astrophysics or physics are eligible for the position. High
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Good communication skills, fluency in English, knowledge of Dutch and French are an asset Selection process For more information please contact Prof. dr. Natalie Lorent, tel.: +32 16 342786, mail
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mindset You have an excellent proficiency in the English language (both speaking and writing) Selection process Interested applicants should submit:- a motivation letter with a statement of skills and
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master's degree in Physics or Astronomy or Psychology or Educational Sciences - with very good study results (at least level 'cum laude'), or will obtain this very soon a teacher's degree from a university
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plus.- Candidates should be able to work independently and possess a critical mindset. Selection process For more information or questions about these positions and potential fit, please contact Prof
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communication skills Fluid in English Selection process For more information please contact Prof. dr. Lies Langouche, tel.: +32 16 33 05 24, mail: [email protected] or Prof. dr. Greet Van den Berghe
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further the limits of detection during the sorption process and allows us to study the entire isotherm curve. Requirements Research FieldPhysicsEducation LevelBachelor Degree or equivalent