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The student will focus on creating magnetic and electrically conductive nanoparticles, further development of novel polymer nanocomposite for Environment, Energy, Sensor, and Healthcare Application
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will focus on the control of magnetic properties under mechanical stresses (by in situ magnetometry and imaging) to anticipate the performance of flexible or stretchable magnetic sensors. The PhD student
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heterostructures with unconventional merging of functional materials to develop a new generation of sensors and quantum devices. Devices based on the synergetic combination of oxide ferromagnetic (FM
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to their sturdiness, long coherence times, and most notably very high sensitivity with respect to magnetic fields. On the other hand, Surface Acoustic Wave (SAW) sensors have demonstrated their usefulness in a wide
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SAL, which conducts research in the areas of Sensor Systems, Intelligent Wireless Systems, Power Electronics, Embedded Systems, and Microsystems. The position includes planned time at SAL in Villach