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charge transport, such protection of propagating fluctuations of the magnetization – dubbed spin waves or magnons – has recently been gaining attention. This PhD project will focus on using femtosecond
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to explore the elastic tuning of collective states in Kagome quantum materials. The successful candidate will employ high-resolution X-ray diffraction in combination with electrical resistivity
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testing of drug effects without relying heavily on animal models. Integrated sensors enable real-time monitoring of parameters like oxygen levels, electrical activity, and metabolic changes, providing
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contribute to cutting-edge research on advanced electrode systems designed to overcome key limitations of current ECG technologies. Current ECG electrodes often lose signal quality over time, cause skin
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APPLICATION INSTRUCTIONS: CURRENT PENN STATE EMPLOYEE (faculty, staff, technical service, or student), please login to Workday to complete the internal application process . Please do not apply
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entitled “Properties of low-dimensional quantum systems with charge, spin, and orbital degrees of freedom.” The project's scientific goal is to investigate the novel phenomena of multi-orbital systems, i.e
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deposition) to the study of optoelectronic properties (current-voltage measurements, capacitive measurements, C-AFM, external quantum efficiency). The ultimate goal will be to produce a photosensitive device
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conferences. We welcome applications from ambitious researchers with a strong power electronics, circuits and protection engineering background. What you would be doing: Assessing the current state of the art
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and toxicity performance make them strong candidates for safety‑critical applications in aerospace, rail, automotive and battery technologies. However, current PFA systems suffer from brittleness
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biomedical engineering, electrical engineering, machine learning, statistics, computer science, or a related area considered relevant for the research topic, or completed courses with a minimum of 240 credits