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, incident response, working knowledge of security frameworks (e.g. NIST 800-171 / 53 moderate, CMMC or equivalent), experience with network security, identity and access management, vulnerability management
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | 15 days ago
consortium. This is a compelling opportunity for an experienced security practitioner ready to shape security strategy at the frontier of HPC and AI infrastructure. The full job description is available
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resources to researchers at the University of Chicago. It is dedicated to enabling research by providing access to centrally managed High-Performance Computing (HPC), storage, and visualization resources
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classified environments, including a thorough understanding of security policies, compliance frameworks, and associated standard processes (e.g., NIST, DISA STIGs). HPC systems architecture experience
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compliance. A key near-term priority is maturing infrastructure and operating models to support NIST 800-171 compliance, including identity and role-based access management, physical and logical access
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of security policies, compliance frameworks, and associated standard processes (e.g., NIST, DISA STIGs). Demonstrated experience designing and deploying of HPC systems, ensuring they meet the
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priority is maturing infrastructure and operating models to support NIST 800-171 compliance, including identity and role-based access management, physical and logical access controls, secure facilities and
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for exploring solutions to some of today's most challenging problems. As an HPC Linux Systems Engineer, you will work within the HPC Scalable Systems Group inside of the NCCS Systems Section to support numerous
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them. Research Computing & AI Enablement - Work with the Architecture team to build scalable HPC and GPU-enabled environments on IaaS cloud sites along with other specialized hosted solutions. Work
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transactions and sharing via smart contract. Post-quantum cryptography (PQC) is a mature field addressing quantum threats to classical schemes, the NIST released first three finalized Post-Quantum Encryption