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Field
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Evolution Under Ion Irradiation using transmission electron microscopy. In situ transmission electron microscopy (TEM) is a powerful characterization technique that can be used to provide a comprehensive
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, superconducting circuits, cryogenic engineering, and materials science. The successful candidate will contribute to the design and fabrication of superconducting resonators; design, perform, and analyze experiments
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association with the ITER project; • Astrochemistry and exobiology, to simulate various environments and to prepare for future space missions and observations; • Surface sciences and innovative materials
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15th October 2026 Languages English English English The Department of Mechanical and Industrial Engineering has a vacancy for a PhD Candidate in Structural Integrity and Life Assessment of Materials
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characterization of defects in semiconductor materials. Demonstrates expertise in investigating the optical and electronic properties of semiconductors to support the development of next-generation electronic and
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techniques need to be combined with 3D characterization approaches such that the local structure can be connected with the optical response. Position You will characterize the optical response at the single
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, characterized not only by aggressive tumor cells but also by a complex tumor microenvironment comprising cancer-associated fibroblasts (CAFs) and tumor-associated macrophages (TAMs). Current liquid biopsy
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This PhD project focuses on the quantitative investigation of Coulomb phases in artificial spin ice materials. The selected candidate will explore the dynamics and thermal fluctuations of magnetic
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Inria, the French national research institute for the digital sciences | Talence, Aquitaine | France | 2 months ago
-generated trajectories. - Experimental characterization of the alternative mechanisms and real-to-sim calibration.We will prototype and characterize the proposed mechanisms with a dual goal: (i) validating
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, cosmetics, sustainable materials, and biomedical applications. Tuning surfactant nature or concentration drastically changes foam and bubbly flow properties—bubble velocity, coalescence, foam rheology