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in any finite volume due to the existence of Black Holes. The aim of this project is to push the boundaries of the holographic principle beyond AdS space, formulating a set of self-consistency
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on the fabrication and characterization of novel 2D nanomaterials and heterostructures based on 2D materials, such as transition metal dichalcogenides and carbon-based frameworks. These materials will be produced
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Offer Description Project: NEHA (Nanoscale Epitaxial Heterostructures Involving Metal Halides); UNICORN (Hybrid Nanocomposite Scintillators for Transformational Breakthroughs in Radiation Detection and
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are involved in proteostasis and oxidative stress. Among these, BACH1 is interesting because it binds to antioxidant response elements (AREs) thereby repressing the transcription of ARE-controlled genes
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internal data collection and transmission in the presence of metal walls, and a module for transmitting data to a centralized collection system. Energy harvesting techniques, specific data processing
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dissociation of polaron-excitons in 2D metal halide perovskites. Utilizing tailored light sources, including intense terahertz (THz) pulses and high-harmonic generation, to drive and study emergent quantum
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that take into particular consideration elements such as contact, diachronic tendencies, standardization, and preservation of linguistic heritage. In accordance with the Department’s research interests
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Selection process First Phase: Evaluation of CV, qualifications and publications This phase will take into account all qualifications, publications (if any) andfurther relevant elements indicated in a
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recognized assessment standards in accordance with art. 24, paragraph 5, of the law n. 240/2010, taking into account what envisaged in the D.M. MIUR no. 344 of 4 August 2011. Further elements of educational
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what envisaged in the D.M. MIUR no. 344 of 4 August 2011. Further elements of educational and scientific qualification: Proven university teaching experience in GSD 03/CHEM-03 General and Inorganic