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. These key generation methods offer greatly enhanced levels of security but rely on the use of error-correcting codes. Compared to their use in classic communication channels, the needed codes have stricter
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., physically unclonable functions or PUFs, and quantum channels. These key generation methods offer greatly enhanced levels of security but rely on the use of error-correcting codes. Compared to their use in
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fault-tolerance. Due to the critical nature of many distributed systems, their correctness is of crucial importance. The verification of distributed systems, however, is notoriously difficult. This PhD
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Science, or a related field. Strong background in digital signal processing. Background on error correcting codes is also highly desirable Proficiency in programming languages such as MATLAB, Python, or C/C
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, providing them with essential improvements to aspects such as performance and fault-tolerance. Due to the critical nature of many distributed systems, their correctness is of crucial importance
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such as performance and fault-tolerance. Due to the critical nature of many distributed systems, their correctness is of crucial importance. The verification of distributed systems, however, is notoriously
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. Process simulation software is being developed for virtual optimization of tool design and material handling, enabling first-time-right manufacturing. The predictive quality of these tools relies
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Trainees, National Trainees, Interns and Visiting Researchers, as applicable; conduct fundamental research on (hybrid) quantum computing algorithms (e.g., error detection/mitigation techniques, quantum
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) Assessing the performance and fault tolerance of neuromorphic hardware; (b) Designing and developing one or more machine learning (ML) and artificial intelligence (AI) algorithms to support and enhance
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handling, enabling first-time-right manufacturing. The predictive quality of these tools relies on accurate constitutive models that describe the behavior of the molten material during forming. With