30 environment-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"https:" positions in Saudi Arabia
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platform in the field of testing composite materials for in-situ testing in conditions relevant to the energy sector (high pressure, high temperature, extreme environments). Participate in the generation
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minerals; energy efficiency; renewable energy technologies; and sustainable fuels. Within this framework, a faculty position in Materials for Extreme Environments & Sustainable Energy Transitions is
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and maintain automation scripts in Bash and Python to streamline system administration tasks. Deploy and manage container environments (Singularity/Apptainer, Docker) for HPC workloads. Benchmark HPC
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; coordinate research opportunities; maintain internship records. Competencies Demonstrated commitment to exceptional student service in a student-centered environment. Sound judgment, professionalism
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endpoints, physical scientific workstations, and virtual scientific workstation services. This role enables secure, reliable, and high-performance access to scientific desktop environments for faculty
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performance, and who is comfortable working in a collaborative experimental environment. If you are enthusiastic about working at the forefront of organic electronics and functional polymer materials, please
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• Expertise in using or supporting computational science and engineering, data analysis, and artificial intelligence applications and libraries in different HPC environments. • Demonstrated ability to support
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service management. Basic knowledge of Linux operating systems. Required Skills Minimum 6 years of experience providing end-user support in a professional IT environment, including: Hands-on experience with
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to support AI research workflows. Design and implement efficient AI workflows optimized for KSL's high-performance computing environment. Build and maintain secure, OCI-compliant, HPC-ready container images
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research environment, tackling an interesting research question with strong applied outcomes. The project explores the use of synthetic polyploidy as a new approach to horticultural rootstock breeding