866 resultados para BIG-BANG NUCLEOSYNTHESIS


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Big data and AI are paving the way to promising scenarios in clinical practice and research. However, the use of such technologies might clash with GDPR requirements. Today, two forces are driving the EU policies in this domain. The first is the necessity to protect individuals’ safety and fundamental rights. The second is to incentivize the deployment of innovative technologies. The first objective is pursued by legislative acts such as the GDPR or the AIA, the second is supported by the new data strategy recently launched by the European Commission. Against this background, the thesis analyses the issue of GDPR compliance when big data and AI systems are implemented in the health domain. The thesis focuses on the use of co-regulatory tools for compliance with the GDPR. This work argues that there are two level of co-regulation in the EU legal system. The first, more general, is the approach pursued by the EU legislator when shaping legislative measures that deal with fast-evolving technologies. The GDPR can be deemed a co-regulatory solution since it mainly introduces general requirements, which implementation shall then be interpretated by the addressee of the law following a risk-based approach. This approach, although useful is costly and sometimes burdensome for organisations. The second co-regulatory level is represented by specific co-regulatory tools, such as code of conduct and certification mechanisms. These tools are meant to guide and support the interpretation effort of the addressee of the law. The thesis argues that the lack of co-regulatory tools which are supposed to implement data protection law in specific situations could be an obstacle to the deployment of innovative solutions in complex scenario such as the health ecosystem. The thesis advances hypothesis on theoretical level about the reasons of such a lack of co-regulatory solutions.

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L’argomento di questa tesi nasce dall’idea di unire due temi che stanno assumendo sempre più importanza nei nostri giorni, ovvero l’economia circolare e i big data, e ha come obiettivo quello di fornire dei punti di collegamento tra questi due. In un mondo tecnologico come quello di oggi, che sta trasformando tutto quello che abbiamo tra le nostre mani in digitale, si stanno svolgendo sempre più studi per capire come la sostenibilità possa essere supportata dalle tecnologie emergenti. L’economia circolare costituisce un nuovo paradigma economico in grado di sostituirsi a modelli di crescita incentrati su una visione lineare, puntando ad una riduzione degli sprechi e ad un radicale ripensamento nella concezione dei prodotti e nel loro uso nel tempo. In questa transizione verso un’economia circolare può essere utile considerare di assumere le nuove tecnologie emergenti per semplificare i processi di produzione e attuare politiche più sostenibili, che stanno diventando sempre più apprezzate anche dai consumatori. Il tutto verrà sostenuto dall’utilizzo sempre più significativo dei big data, ovvero di grandi dati ricchi di informazioni che permettono, tramite un’attenta analisi, di sviluppare piani di produzione che seguono il paradigma circolare: questo viene attuato grazie ai nuovi sistemi digitali sempre più innovativi e alle figure specializzate che acquisiscono sempre più conoscenze in questo campo.

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In this thesis the design of a pressure regulation system for space propulsion engines (electric and cold gas) has been performed. The Bang-Bang Control (BBC) method has been implemented through the open/close command on a solenoid valve, and the mass flow rate of the propellant has been fixed with suitable flow restrictors. At the beginning, research for the comparison between mechanical and electronic (for BBC) pressure regulators has been performed, which resulted in enough advantages for the selection of the second valve type. The major advantage is about the possibility to have a variable outlet pressure with a variable inlet pressure through a simple remote command, while in mechanical pressure regulators the ratio between inlet and outlet pressures must be mechanically settled. Different pressure control schemes have been analyzed, changing number of solenoid valves, flow restrictors and plenums. For each scheme the valve’s frequencies were evaluated with simplified mathematical models and with the use of simulators implemented on Python; the results obtained from those two methods matched quiet well. From all the schemes it was possible to observe varying frequency and duty cycle, for changes in different parameters. This results, after experimental checks, can be used to design the control system for a given total number of cycles that a specific solenoid valve can guarantee. Finally, tests were performed and it was possible to verify the goodness of the control system. Moreover from the tests it was possible to deduce some tips in order to optimize the running of the simulator.

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Universidade Estadual de Campinas. Faculdade de Educação Física

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Universidade Estadual de Campinas . Faculdade de Educação Física

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Universidade Estadual de Campinas . Faculdade de Educação Fisica

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Universidade Estadual de Campinas. Faculdade de Educação Física

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Universidade Estadual de Campinas . Faculdade de Educação Física

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Universidade Estadual de Campinas . Faculdade de Educação Física

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Universidade Estadual de Campinas . Faculdade de Educação Física