980 resultados para roadmap-suunnittelu
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Today, forty years since its birth, the Caribbean integration has reached its limit.1 2 Consequently, there is urgent need to respond to the current realities and emerging global trends — which require greater engagement from the public, students, academics and policymakers — in moving the Caribbean Community towards a new trajectory of Caribbean convergence. The immediate concern is to devise ways of improving the convergence process among Latin American and Caribbean countries. This convergence process will have to be sensitive to both current and emerging global dynamics. This paper presents the roadmap of a new trajectory towards Caribbean convergence, sensitive to both current and emergent regional and global trends. It begins in Section I by identifying the emerging international political and economic trends that provide a backdrop against which the discussion on Caribbean convergence is squarely placed. Section II discusses the need for a new strategy of convergence, and provides the conceptual framework of Caribbean convergence. Section III spells out the pillars, strategies and delivery mechanisms of Caribbean convergence, and highlights the role of Trinidad and Tobago in this process. The paper concludes by pointing out the urgent need for a regional synergy of economic logic and political logic.
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Pós-graduação em Educação - FFC
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O presente trabalho, intitulada: A dinâmica de uso da Praça Olavo Bilac no contexto da cidade de Belém, teve como objetivo identificar e analisar os diferentes usos e a forma de apropriação na Praça Olavo Bilac, e para isso partimos da hipótese de que os diversos usos nesta praça são reveladores das condições de vida impostas pelo modo de produção capitalista. A metodologia se estruturou a partir de um levantamento de fontes bibliográficas referente ao tema, em seguida realizamos uma pesquisa documental sobre a origem e a história da praça em questão, precisamente em jornais, sites e documentos oficiais, pertencentes à Paróquia de São Domingos de Gusmão, realizamos ainda uma observação sistemática na área de estudo, nos horários da manhã, tarde e noite; todos os dias da semana, porém de forma não consecutiva. Também foi realizada a aplicação de um roteiro de entrevistas com os vendedores e freqüentadores da Praça Olavo Bilac, a fim de servir como registros de referência histórica e registros de usos dos entrevistados. Após a aplicação destes roteiros partimos para a etapa referente às entrevistas, momento em que realizamos uma conversa com vendedores que atuam no interior da Praça, com pessoas que utilizam a praça como passagem, e com outros moradores do bairro que fazem uso desta praça, e que com esta tem relação, totalizando 16 pessoas. Os resultados desta pesquisa apontaram que, esta praça é uma referência de lazer, é local de passagem, do encontro, mas também da diversidade e da desigualdade que o modo de produção capitalista impõe às cidades e aos que nela vivem, pois a Praça Olavo Bilac, assim como as demais praças, é a expressão da cidade, e vai expressar o modo de vida desta cidade.
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No contexto brasileiro, a investigação acerca das necessidades educacionais especiais concentra-se no estudo das dificuldades e possibilidades de inclusão desses alunos em classes regulares de ensino, enfatizando os processos de ensino e aprendizagem. Poucos estudos, no Brasil, admitem a família como objeto de análise, embora não se questione a sua importância para o desenvolvimento infantil. Dessa forma, com base no modelo bioecológico e na teoria estrutural sistêmica, admitindo-se a família como um campo de desenvolvimento comum a todos os membros faz-se necessário conhecer o modo como ela se estrutura para atender as demandas decorrentes da necessidade especial de seu filho e os efeitos dessa dinâmica nos demais membros. A partir disso objetivou-se descrever, a estrutura e a dinâmica de famílias de crianças com necessidades educacionais especiais, além de: analisar as interações e relações estabelecidas dentro de cada subsistema (conjugal, fraternal, parental) e entre eles, assim como identificar a organização familiar, a partir dos mecanismos de coesão e hierarquia de acordo com o modelo estrutural sistêmico. Como estratégia de pesquisa utilizou-se o estudo de casos múltiplos, com duas famílias de crianças com necessidades educacionais especiais, sendo uma menina surda, de dez anos, e um menino, de doze anos, com dificuldades de aprendizagem. Os instrumentos e técnicas aplicados foram: Roteiro de Entrevista Semi-Estruturado, Inventário de Rotina (IR), Observação Sistemática, Diário de Campo, Family System Test (FAST) e Genograma. Os escores de proximidade obtidos no FAST foram coerentes com os resultados do IR, demonstrando maior coesão na díade mãe-filho que na díade pai-filho, nas duas famílias; quanto à flexibilidade das fronteiras, em geral, a percepção das famílias foi de fronteiras rígidas, nos sistemas, familiar, parental e fraternal, sendo que, a distribuição de hierarquia foi percebida pela díade parental, nas duas famílias, como sinal de prediletância, para o subsistema fraternal, e dominação, para o parental, o que interferiu nas estruturas relacionais desses subsistemas percebidas pelos membros. Na avaliação do subsistema fraternal, a ausência de poder, representada pelos pais e a representação dessa variável pelas crianças resultou em diferenças de percepção, no grupo. Portanto, esse estudo permitiu, por meio da identificação das relações e percepções dos membros das famílias, a compreensão de sua dinâmica e a influência desta, na trajetória desenvolvimental das crianças e do grupo, a partir, das demandas decorrentes do diagnóstico e das estratégias peculiares a cada família para enfrentar as necessidades especiais de suas crianças. Percebe-se que a família, sendo a principal parceira da escola na educação, precisa ser olhada como um sistema cujas estratégias relacionais são fundamentais para que a criança tenha suas habilidades estimuladas podendo, assim, superar suas dificuldades.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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The present study aimed to identify the presence of indicators of stress, levels of stress and overload with the formal and informal caregivers of cancer patients. Participated in the survey 33 caregivers of cancer patients in total, 16 formal and 17 informal. To collect data, we used: 1) Roadmap for characterization of participants; 2) Inventory of Stress Symptoms Lipp - ISSL and 3) Protocol Zarit Burden Interview - ZBT. The results revealed that 43 % of informal carers were in the resistance phase, 29 % in the burnout stage, 14 % at the stage of exhaustion and almost 14 % in the alert phase. Formal caregivers 25 % are in the exhaustion phase and 75 % in the resistance. The overload has also performed on a larger scale in informal than formal caregivers, 47 % to 18,7 % charge respectively. However, the results revealed no statistically significant difference between groups for the incidence of stress but indicated a difference against overloading pointing out that professional caregivers in the incidence is lower. The results suggest the need to implement support for informal and formal caregivers programs, develop coping strategies, handling the situations of overload and stress, aiming to better quality of life for the caregiver, and consequently for the patient who is receiving care.
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The inclusion of students with disabilities in youth and adult education is still new and there is little literature on the issue, which makes it both nationally relevant, and timely in the context of the construction of inclusive schools for all. The present study aimed to characterize the profile of the student of Youth and Adult Education in a medium size city of São Paulo, between the years 2011 and 2013. For the study documentary analysis was carried out using the Student Registration System of the State of São Paulo (PRODESP) for the study. A roadmap for the characterization of students was used, as a research instrument. It was possible to obtain data regarding the total enrolment per year, number of students with disabilities, types of disabilities, gender and age. Youth and Adult Education’s search for people with disabilities is increasing and accordingly, we observe that the target audience of YAE today has changed, including people with disabilities, indicating the need to consider development of teaching practices in line with the needs and demands of new YAE students.
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Pós-graduação em Educação - FFC
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Pós-graduação em Televisão Digital: Informação e Conhecimento - FAAC
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Although thetopic of integrationin product development is widely debated in the literature, there are few studies that address the participation by subsidiaries of multinational and R & D centers around the world in development projects of new products. Focusing on the perception of the Brazilian unit, this paper aims to present and analyze integration practices among subsidiaries, headquarters and R&D centers in product development projects in amultinational high tech company. For this purpose, was conducted an exploratory and qualitative researched operationalized by case study. Among the main results, it was noted collaboration betweenlocals marketing and engineering with the R & D centers, important role of senior management in the Brazilian unit to communicate outcomes of the strategic planning of products andtechnologies established by the headquarters to the subsidiary, the adoption of technological and information mechanisms and the application of methods such as technology roadmap.
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This paper describes the planning for the development of a social network conceived as a convergent environment on internet with cooking shows on TV. As results, the paper presents the characterization of the product's business model and a roadmap for specifying its requirements.
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Patients with rare and complex diseases such as congenital adrenal hyperplasia (CAH) often receive fragmented and inadequate care unless efforts are coordinated among providers. Translating the concepts of the medical home and comprehensive health care for individuals with CAH offers many benefits for the affected individuals and their families. This manuscript represents the recommendations of a 1.5 day meeting held in September 2009 to discuss the ideal goals for comprehensive care centers for newborns, infants, children, adolescents, and adults with CAH. Participants included pediatric endocrinologists, internal medicine and reproductive endocrinologists, pediatric urologists, pediatric surgeons, psychologists, and pediatric endocrine nurse educators. One unique aspect of this meeting was the active participation of individuals personally affected by CAH as patients or parents of patients. Representatives of Health Research and Services Administration (HRSA), New York-Mid-Atlantic Consortium for Genetics and Newborn Screening Services (NYMAC), and National Newborn Screening and Genetics Resource Center (NNSGRC) also participated. Thus, this document should serve as a "roadmap" for the development phases of comprehensive care centers (CCC) for individuals and families affected by CAH.
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The digital electronic market development is founded on the continuous reduction of the transistors size, to reduce area, power, cost and increase the computational performance of integrated circuits. This trend, known as technology scaling, is approaching the nanometer size. The lithographic process in the manufacturing stage is increasing its uncertainty with the scaling down of the transistors size, resulting in a larger parameter variation in future technology generations. Furthermore, the exponential relationship between the leakage current and the threshold voltage, is limiting the threshold and supply voltages scaling, increasing the power density and creating local thermal issues, such as hot spots, thermal runaway and thermal cycles. In addiction, the introduction of new materials and the smaller devices dimension are reducing transistors robustness, that combined with high temperature and frequently thermal cycles, are speeding up wear out processes. Those effects are no longer addressable only at the process level. Consequently the deep sub-micron devices will require solutions which will imply several design levels, as system and logic, and new approaches called Design For Manufacturability (DFM) and Design For Reliability. The purpose of the above approaches is to bring in the early design stages the awareness of the device reliability and manufacturability, in order to introduce logic and system able to cope with the yield and reliability loss. The ITRS roadmap suggests the following research steps to integrate the design for manufacturability and reliability in the standard CAD automated design flow: i) The implementation of new analysis algorithms able to predict the system thermal behavior with the impact to the power and speed performances. ii) High level wear out models able to predict the mean time to failure of the system (MTTF). iii) Statistical performance analysis able to predict the impact of the process variation, both random and systematic. The new analysis tools have to be developed beside new logic and system strategies to cope with the future challenges, as for instance: i) Thermal management strategy that increase the reliability and life time of the devices acting to some tunable parameter,such as supply voltage or body bias. ii) Error detection logic able to interact with compensation techniques as Adaptive Supply Voltage ASV, Adaptive Body Bias ABB and error recovering, in order to increase yield and reliability. iii) architectures that are fundamentally resistant to variability, including locally asynchronous designs, redundancy, and error correcting signal encodings (ECC). The literature already features works addressing the prediction of the MTTF, papers focusing on thermal management in the general purpose chip, and publications on statistical performance analysis. In my Phd research activity, I investigated the need for thermal management in future embedded low-power Network On Chip (NoC) devices.I developed a thermal analysis library, that has been integrated in a NoC cycle accurate simulator and in a FPGA based NoC simulator. The results have shown that an accurate layout distribution can avoid the onset of hot-spot in a NoC chip. Furthermore the application of thermal management can reduce temperature and number of thermal cycles, increasing the systemreliability. Therefore the thesis advocates the need to integrate a thermal analysis in the first design stages for embedded NoC design. Later on, I focused my research in the development of statistical process variation analysis tool that is able to address both random and systematic variations. The tool was used to analyze the impact of self-timed asynchronous logic stages in an embedded microprocessor. As results we confirmed the capability of self-timed logic to increase the manufacturability and reliability. Furthermore we used the tool to investigate the suitability of low-swing techniques in the NoC system communication under process variations. In this case We discovered the superior robustness to systematic process variation of low-swing links, which shows a good response to compensation technique as ASV and ABB. Hence low-swing is a good alternative to the standard CMOS communication for power, speed, reliability and manufacturability. In summary my work proves the advantage of integrating a statistical process variation analysis tool in the first stages of the design flow.
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Nowadays, it is clear that the target of creating a sustainable future for the next generations requires to re-think the industrial application of chemistry. It is also evident that more sustainable chemical processes may be economically convenient, in comparison with the conventional ones, because fewer by-products means lower costs for raw materials, for separation and for disposal treatments; but also it implies an increase of productivity and, as a consequence, smaller reactors can be used. In addition, an indirect gain could derive from the better public image of the company, marketing sustainable products or processes. In this context, oxidation reactions play a major role, being the tool for the production of huge quantities of chemical intermediates and specialties. Potentially, the impact of these productions on the environment could have been much worse than it is, if a continuous efforts hadn’t been spent to improve the technologies employed. Substantial technological innovations have driven the development of new catalytic systems, the improvement of reactions and process technologies, contributing to move the chemical industry in the direction of a more sustainable and ecological approach. The roadmap for the application of these concepts includes new synthetic strategies, alternative reactants, catalysts heterogenisation and innovative reactor configurations and process design. Actually, in order to implement all these ideas into real projects, the development of more efficient reactions is one primary target. Yield, selectivity and space-time yield are the right metrics for evaluating the reaction efficiency. In the case of catalytic selective oxidation, the control of selectivity has always been the principal issue, because the formation of total oxidation products (carbon oxides) is thermodynamically more favoured than the formation of the desired, partially oxidized compound. As a matter of fact, only in few oxidation reactions a total, or close to total, conversion is achieved, and usually the selectivity is limited by the formation of by-products or co-products, that often implies unfavourable process economics; moreover, sometimes the cost of the oxidant further penalizes the process. During my PhD work, I have investigated four reactions that are emblematic of the new approaches used in the chemical industry. In the Part A of my thesis, a new process aimed at a more sustainable production of menadione (vitamin K3) is described. The “greener” approach includes the use of hydrogen peroxide in place of chromate (from a stoichiometric oxidation to a catalytic oxidation), also avoiding the production of dangerous waste. Moreover, I have studied the possibility of using an heterogeneous catalytic system, able to efficiently activate hydrogen peroxide. Indeed, the overall process would be carried out in two different steps: the first is the methylation of 1-naphthol with methanol to yield 2-methyl-1-naphthol, the second one is the oxidation of the latter compound to menadione. The catalyst for this latter step, the reaction object of my investigation, consists of Nb2O5-SiO2 prepared with the sol-gel technique. The catalytic tests were first carried out under conditions that simulate the in-situ generation of hydrogen peroxide, that means using a low concentration of the oxidant. Then, experiments were carried out using higher hydrogen peroxide concentration. The study of the reaction mechanism was fundamental to get indications about the best operative conditions, and improve the selectivity to menadione. In the Part B, I explored the direct oxidation of benzene to phenol with hydrogen peroxide. The industrial process for phenol is the oxidation of cumene with oxygen, that also co-produces acetone. This can be considered a case of how economics could drive the sustainability issue; in fact, the new process allowing to obtain directly phenol, besides avoiding the co-production of acetone (a burden for phenol, because the market requirements for the two products are quite different), might be economically convenient with respect to the conventional process, if a high selectivity to phenol were obtained. Titanium silicalite-1 (TS-1) is the catalyst chosen for this reaction. Comparing the reactivity results obtained with some TS-1 samples having different chemical-physical properties, and analyzing in detail the effect of the more important reaction parameters, we could formulate some hypothesis concerning the reaction network and mechanism. Part C of my thesis deals with the hydroxylation of phenol to hydroquinone and catechol. This reaction is already industrially applied but, for economical reason, an improvement of the selectivity to the para di-hydroxilated compound and a decrease of the selectivity to the ortho isomer would be desirable. Also in this case, the catalyst used was the TS-1. The aim of my research was to find out a method to control the selectivity ratio between the two isomers, and finally to make the industrial process more flexible, in order to adapt the process performance in function of fluctuations of the market requirements. The reaction was carried out in both a batch stirred reactor and in a re-circulating fixed-bed reactor. In the first system, the effect of various reaction parameters on catalytic behaviour was investigated: type of solvent or co-solvent, and particle size. With the second reactor type, I investigated the possibility to use a continuous system, and the catalyst shaped in extrudates (instead of powder), in order to avoid the catalyst filtration step. Finally, part D deals with the study of a new process for the valorisation of glycerol, by means of transformation into valuable chemicals. This molecule is nowadays produced in big amount, being a co-product in biodiesel synthesis; therefore, it is considered a raw material from renewable resources (a bio-platform molecule). Initially, we tested the oxidation of glycerol in the liquid-phase, with hydrogen peroxide and TS-1. However, results achieved were not satisfactory. Then we investigated the gas-phase transformation of glycerol into acrylic acid, with the intermediate formation of acrolein; the latter can be obtained by dehydration of glycerol, and then can be oxidized into acrylic acid. Actually, the oxidation step from acrolein to acrylic acid is already optimized at an industrial level; therefore, we decided to investigate in depth the first step of the process. I studied the reactivity of heterogeneous acid catalysts based on sulphated zirconia. Tests were carried out both in aerobic and anaerobic conditions, in order to investigate the effect of oxygen on the catalyst deactivation rate (one main problem usually met in glycerol dehydration). Finally, I studied the reactivity of bifunctional systems, made of Keggin-type polyoxometalates, either alone or supported over sulphated zirconia, in this way combining the acid functionality (necessary for the dehydrative step) with the redox one (necessary for the oxidative step). In conclusion, during my PhD work I investigated reactions that apply the “green chemistry” rules and strategies; in particular, I studied new greener approaches for the synthesis of chemicals (Part A and Part B), the optimisation of reaction parameters to make the oxidation process more flexible (Part C), and the use of a bioplatform molecule for the synthesis of a chemical intermediate (Part D).
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L'energia solare rientra nel gruppo delle energie rinnovabili, ovvero che provengono da una fonte il cui utilizzo attuale non ne pregiudica la disponibilità nel futuro. L'energia solare ha molti vantaggi, poiché è inesauribile ed è una risorsa d'immediata disponibilità perché giunge attraverso i raggi del sole. La conversione fotovoltaica sfrutta il meccanismo di generazione di carica elettrica prodotto dall'interazione della radiazione luminosa su di un materiale semiconduttore. La necessità di creare energia riducendo al minimo l'impatto ambientale ed il contemporaneo aumento del prezzo di fonti fossili come ad esempio il petrolio ed il carbone (senza trascurare il fatto che le riserve di essi sono, di fatto, esauribili) ha portato un aumento considerevole della produzione di energia elettrica tramite conversione fotovoltaica. Allo stato attuale dell'economia e dei mercati, sebbene il settore fotovoltaico sia in forte crescita, non è esente da un parametro che ne descrive le caratteristiche economiche ed energetiche, il cosiddetto rapporto costo/efficienza. Per efficienza, si intende la quantità di energia elettrica prodotta rispetto alla potenza solare incidente per irraggiamento, mentre per costo si intende quello sostenuto per la costruzione della cella. Ridurre il rapporto costo/efficienza equivale a cercare di ottenere un'efficienza maggiore mantenendo inalterati i costi, oppure raggiungere una medio-alta efficienza ma ridurre in maniera significativa la spesa di fabbricazione. Quindi, nasce la necessità di studiare e sviluppare tecnologie di celle solari all'avanguardia, che adottino accorgimenti tecnologici tali per cui, a parità di efficienza di conversione, il costo di produzione della cella sia il più basso possibile. L'efficienza dei dispositivi fotovoltaici è limitata da perdite ottiche, di ricombinazione di carica e da resistenze parassite che dipendono da diversi fattori, tra i quali, le proprietà ottiche e di trasporto di carica dei materiali, l'architettura della cella e la capacità di intrappolare la luce da parte del dispositivo. Per diminuire il costo della cella, la tecnologia fotovoltaica ha cercato di ridurre il volume di materiale utilizzato (in genere semiconduttore), dal momento in cui si ritiene che il 40% del costo di una cella solare sia rappresentato dal materiale. Il trend che questo approccio comporta è quello di spingersi sempre di più verso spessori sottili, come riportato dalla International Technology Roadmap for Photovoltaic, oppure ridurre il costo della materia prima o del processo. Tra le architetture avanzate di fabbricazione si analizzano le Passivated Emitter and Rear Cell-PERC e le Metal Wrap Through-MWT Cell, e si studia, attraverso simulazioni numeriche TCAD, come parametri geometrici e di drogaggio vadano ad influenzare le cosiddette figure di merito di una cella solare.