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Conducted research and development in quantum computing, quantum mechanics, mathematical modeling, and computational methods, working across theoretical foundations, applied research, and engineering-oriented implementation.
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Developed and analyzed mathematical models for quantum systems, contributing to research workflows involving abstraction, simulation, data analysis, algorithmic reasoning, and formal problem formulation.
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Led and coordinated quantum computing project tasks, including research planning, implementation strategy, milestone definition, resource allocation, and collaboration with researchers across technical and academic contexts.
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Taught quantum computing and quantum mechanics topics, designing syllabi, lecture materials, assessments, and technical explanations for students and junior researchers.
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Mentored junior researchers and supported their contributions to quantum computing projects, helping translate complex mathematical and computational concepts into structured research work.
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This experience became a central foundation for my later work in post-quantum cryptography, cryptographic infrastructure, formal reasoning, protocol correctness, and security-critical systems where mathematical assumptions directly shape engineering decisions.
Professional Experience