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of novel colloidal camera-based technologies developed at KAUST into drone payloads and robotic platforms, enabling next-generation perception capabilities. The Research Specialist will contribute
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https://stochastic_numerics.kaust.edu.sa/Pages/Home.aspx
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highly desirable. We seek a postdoctoral researcher to develop novel SWIR and exploratory room-temperature MWIR photodetectors based on CQDs. The position focuses on device architecture design, charge
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to identify collection risks and recommend appropriate actions or escalation. Investigate and resolve complex Treasury and Collection issues and prepare reporting and analysis. Complete month-end/year-end
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optoelectronic measurements is highly desirable. This position focuses on the chemical control of III–V CQD surfaces. The researcher will develop surface-reconstructed, low-trap-density CQDs and ligand-exchanged
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for structural health monitoring applications. The candidate will work in a transdisciplinary environment to develop and characterize nanofiber materials, as well as to build and test sensor prototypes.
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, geophysical (e.g., side-scan sonar, sub-bottom profiling), and oceanographic data, as well as ROV, submersible, and OFOS footage. The successful candidate will process and interpret hydroacoustic data, develop
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Materials Spectroscopy (SMS) Laboratory, http://spectroscopy.kaust.edu.sa Institution: Division of Physical Science & Engineering, King Abdullah University of Science and Technology (KAUST) Thuwal, Saudi
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, multilayer architectures, and the preservation of delicate micro- and nanostructures during macroscopic extrusion. Key Objectives Establish processing–structure–property relationships: Develop a deep
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develop phase-field and finite element models and work closely with experimental efforts at KAUST. Research areas include: Phase-field modeling of fracture Multiphysics coupling Finite element methods