Academic literature on the topic 'ASCOE'

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Journal articles on the topic "ASCOE"

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Amarenco, P., J. Bogousslavsky, L. R. Caplan, G. A. Donnan, M. E. Wolf, and M. G. Hennerici. "The ASCOD Phenotyping of Ischemic Stroke (Updated ASCO Phenotyping)." Cerebrovascular Diseases 36, no. 1 (2013): 1–5. http://dx.doi.org/10.1159/000352050.

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Ljubec, Živa. "The myth of ASCOT and its rival ASCO2.T: Tech-noetic vs. techno-logic, round 1." Technoetic Arts 9, no. 2 (May 17, 2012): 89–96. http://dx.doi.org/10.1386/tear.9.2-3.89_1.

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Rotar, O. P. "Evidence born from ASCOT trial – still important after 15 years." Eurasian heart journal, no. 3 (September 27, 2021): 46–53. http://dx.doi.org/10.38109/2225-1685-2021-3-46-53.

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The paper presents the overview evolution of hypertension identification and treatment during last 15 years after publication of ASCOT trial (AngloScandinavian Cardiac Outcomes Trial) results. It discusses possible mechanism of more significant cardiovascular risk reduction in amlodipine/ perindopril group comparing with atenolol/diuretic group: central blood pressure, arterial stiffness, asleep blood pressure and BP variability. Innovative approaches in time of ASCOТ trial such as combined antihypertensive therapy from start and RAAS inhibitor as first line now became routine practice in actual guidelines. Importance of early prescribing of fixed antihypertensive combination and choice of safe drugs help to improve adherence and decrease resistant hypertension prevalence. Prevention of new onset of diabetes in metabolic patients needs application of metabolically neutral drugs and including of renin-angiotensin-aldosterone inhibitors in combination therapy. Results of ASCOT-Legacy trial demonstrated long-term protective effect of amlodipine/perindopril combination resulting in decreasing mortality, rate of stroke and coronary events during 20-years follow-up.
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Chen, Hung-Hsuan, and C. Lee Giles. "ASCOS++." ACM Transactions on Knowledge Discovery from Data 10, no. 2 (October 26, 2015): 1–26. http://dx.doi.org/10.1145/2776894.

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Murphy, Matthew P., Christina Buckley, Conor Sugrue, Emma Carr, Aine O’Reilly, Shane O’Neill, and Sean M. Carroll. "ASCOT." Plastic and Reconstructive Surgery - Global Open 5, no. 9 (September 2017): e1486. http://dx.doi.org/10.1097/gox.0000000000001486.

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Ljubec, Živa. "The uncertainty of ASCOT and the second-order hesitation of ASCO2.T within the transdisciplinary buffer zone, Round 2." Technoetic Arts 11, no. 2 (September 1, 2013): 149–61. http://dx.doi.org/10.1386/tear.11.2.149_1.

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Klein, Friederike, and Sandrina Bachmaier. "++ Ticker ++ ASCO 2020 ++ Ticker ++ ASCO 2020 ++ Ticker ++ ASCO 2020 ++ Ticker ++ ASCO 2020 ++." Im Fokus Onkologie 23, no. 4 (September 2020): 87. http://dx.doi.org/10.1007/s15015-020-2552-6.

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Szyndler, Anna. "Spuścizna badania ASCOT — obserwacja odległa ASCOT-Legacy." Choroby Serca i Naczyń 16, no. 2 (June 27, 2019): 112–15. http://dx.doi.org/10.5603/chsin.2019.0016.

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Fuchs, Flávio Danni, Miguel Gus, and Jorge Pinto Ribeiro. "ASCOT-BPLA." Lancet 367, no. 9506 (January 2006): 205. http://dx.doi.org/10.1016/s0140-6736(06)68022-7.

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Donzelli, Alberto, and Alberto Malliani. "ASCOT-BPLA." Lancet 367, no. 9506 (January 2006): 205–6. http://dx.doi.org/10.1016/s0140-6736(06)68023-9.

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Dissertations / Theses on the topic "ASCOE"

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Довгаль, Максим Олегович. "Методологія балансування електроенергії в балансуючій групі та модель аналізу часових рядів для прогнозування ціноутворення." Master's thesis, КПІ ім. Ігоря Сікорського, 2020. https://ela.kpi.ua/handle/123456789/40832.

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Актуальність роботи. Балансування електроенергії в новому ринку електричної енергії є одним з актуальних питань. Для їх мінімізації окрім більш чіткішого прогнозування створюють балансуючі групи, тому був розроблений метод балансування для максимального зменшення небалансів. Також для подальшої закупівлі електроенергії створена модель аналізу часових рядів для прогнозування ціноутворення. Раціональність використання балансування електричної енергії багато в чому залежить від обсягу споживання підприємства та наявності Автоматизована система комерційного обліку електричної енергії (АСКОЕ) . Найбільше ефективне балансування в балансуючій групі, де більшість підприємств мають обсяг споживання 100-600 тис. кВт·год, тим самим це буде вигідно для підприємств у яких менше або більше споживання від заданого діапазону. Також для зменшення втрать розглядається питання з фінансової точки зору, а саме прогнозування ціноутворення. Для цього проводиться аналіз часових рядів для визначення ціноутворення електричної енергії. Це дуже ефективно для закупівлі електричної енергії на ринку добу наперед (РДН) та внутрішньодобового ринку (ВДР). Мета та завдання дослідження: зменшення небалансів електроспоживання промислових підприємств, шляхом балансування електроенергії в балансуючій групі та аналізу часових рядів для визначення ціноутворення електричної енергії для закупівлі на РДН та ВДР для прогнозування вигідності споживання. 1. Проаналізувати споживання та заявлений обсяг промислового підприємства, який купує електричну енергію на оптовому, а у майбутньому і на балансуючому ринку електричної енергії. 2. Оцінити вигідність для приєднання промислового підприємства до балансуючої групи. 3. Розробити методику методи балансування електроенергії в балансуючій групі. 4. Розробити модель аналізу часових рядів для прогнозування ціноутворення на РДН. 6. Оцінити та перевірити якість роботи моделі шляхом порівняння фактичних значень на період який прогнозується. Об’єктом дослідження є небаланси та ціни електричної енергії. Предмет дослідження: методи балансування електроенергії в балансуючій групі та аналіз часових рядів для визначення ціноутворення електричної енергії. Методи дослідження. Розробки і дослідження проводилися на основі теорії математичного моделювання, модель аналізу часових рядів для прогнозування ціноутворення. Наукова новизна одержаних результатів. 1. Розроблено методологія балансування електроенергії в балансуючій групі. 2. Створена модель аналізу часових рядів для прогнозування ціноутворення. Практичне значення одержаних результатів. Дослідження, що було проведене в роботі може бути використане: - для зниження фінансових витрат підприємств, які виникають при відхиленні фактичних обсягів електричного споживання від обсягів, заявле- них до покупки на ринку електричної енергії, шляхом балансування електроенергії в балансуючій групі; - для прогнозування ціноутворення для подальших закупівель на ринках або аукціонах; - для вибору найбільш оптимального плану роботи підприємства у ви- падку коли спрогнозована вигідна ціна .
Relevance of work. Balancing electricity in the new electricity market is one of the pressing issues. In addition to more clearly forecasting, balancing groups have been created to minimize them, so a balancing method has been developed to maximize the reduction of imbalances. The rationality of the use of balancing electricity depends largely on the volume of consumption of the enterprise and the availability of the Automated System of Commercial Electricity Metering (ASCOE) . hour, thereby it will be beneficial for enterprises that have less or more consumption from a given range. Also, to reduce losses, the issue is considered from a financial point of view, namely forecasting pricing. To do this, the analysis of time series is carried out to determine the pricing of electricity . Purpose and research objectives: to reduce the imbalances of power consumption of industrial enterprises, by balancing electricity in the balancing group and analysis in time series to determine the pricing of electricity for purchase on RDN and VDR to predict the profitability of consumption. 1. Analyze consumption and the declared volume of industrial enterprise that buys electricity at wholesale, and in the future and in the balancing market of electricity. 2. Assess the profitability for joining the industrial enterprise in the balancing group. 3. Develop methods of balancing electricity in the balancing group. 4. Develop a model of time series analysis to predict the pricing of RDN. 6. Oto value and to revibrate the quality of the model by comparing the actual values for the period that is projected. The object of research is imbalances and prices of electric energy. Subject of research: methods of balancing electricity in the balancing group and analysis of time series to determine the pricing of electric energy. Research methods. Developments and researches were conducted on the basis of the theory of mathematical modeling, a model of time series analysis for forecasting pricing. Scientific novelty of the obtained results. 1. The etiology of balancing electricity in the balancing group was developed. 2. A model for analyzing time series for forecasting pricing has been created. The practical significance of the obtained results. The research that was conducted in the work can be used: - to reduce the financial costs of enterprises that arise when deviating the actual volumes of electricity consumption from volumes, stated - them to purchase electricity on the market, by balancing electricity in the balancing group; - to predict pricing for further purchases in markets or auctions; - to choose the most optimal plan of work of the enterprise in you - a paddock when the favorable price is predicted.
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Carranza, Martínez Ramiro David, Adrianzén Silvia Karla Casusol, Paredes Joanna Daniela Florián, and Vargas Julio Alfredo Romero. "Planeamiento estratégico para la provincia de Ascope." Master's thesis, Pontificia Universidad Católica del Perú, 2018. http://tesis.pucp.edu.pe/repositorio/handle/123456789/12832.

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El presente Planeamiento Estratégico para la provincia de Ascope se elaboró con la finalidad de descentralizar el crecimiento de la región, propiciar un avance económico y garantizar un crecimiento sostenible en el tiempo. Este planeamiento estratégico articula todas las ventajas competitivas de la provincia, priorizando el bienestar de la población. Por las bondades de su clima y suelo fértil, la provincia cuenta con atractivos naturales y es propicio no sólo para la agricultura y turismo, sino también para desarrollar aquellas industrias de desarrollo sustentables con el medio ambiente. Es así que al analizar las fortalezas y debilidades de la provincia se proponen el desarrollo de tres pilares: agroindustria, energías renovables y el turismo. Cabe resaltar que en este proceso se profundiza la participación ciudadana y del gobierno, luchando así contra la pobreza e incentivando la inclusión social, esto con el fin de convertir a la provincia de Ascope en una región con un ambiente seguro para vivir, trabajar y visitar
The present Strategic Planning for the province of Ascope was developed with the purpose of decentralizing the growth of the region, propitiate an economic advance and guarantee a sustainable way. This strategic planning articulates all the competitive advantages of the province, prioritizing the welfare of the population. Due to the benefits of its climate and fertile soil, the province has natural attractions and is conducive not only for agriculture and tourism, but also to develop those sustainable development industries with the environment. Thus, when analyzing the strengths and weaknesses of the province, we proposed the development of three pillars is proposed: agroindustry, renewable energies and geriatric tourism. It is worth noting that this process deepens the participation of citizens and the government, thus fighting against poverty and encouraging social inclusion, this with the aim of to convert the Ascope province in a region with a safe environment to live, work and visit
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Benites, Cruz Jenny Liliana, Riofrío César Eduardo Li, Aranda Sebastián Alonso Vargas, and Chávez Alejandro Daniel Zavaleta. "Índice de progreso social del distrito de Ascope." Master's thesis, Pontificia Universidad Católica del Perú, 2018. http://tesis.pucp.edu.pe/repositorio/handle/123456789/12699.

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En el presente documento se elabora el Índice de Progreso Social del distrito de Ascope, ubicado en la provincia de Ascope, región La Libertad. Su finalidad es conocer el nivel de progreso alcanzado por el distrito. Esta herramienta permite medir el desarrollo del distrito desde varias dimensiones esenciales para el bienestar humano, lo que constituye una primera guía para una mejor toma de decisiones de las autoridades locales y nacionales en beneficio de los grupos de interés y permite identificar e integrar las necesidades y soluciones en busca de mejorar la calidad de vida de los ciudadanos. En el año 2018, el distrito de Ascope alcanzó un nivel bajo de progreso social como consecuencia de que, en la dimensión de necesidades humanas básicas, logró un nivel medio alto. Sin embargo, en fundamentos del bienestar presenta un nivel muy bajo, mientras que en la dimensión de oportunidades la situación es desalentadora, con un nivel extremo bajo. Estos resultados en su conjunto muestran que la población no cuenta con una vida digna, por ejemplo, una vivienda adecuada y oportunidades para lograr una educación superior de calidad. Por otro lado, cabe recalcar que, para alcanzar un desarrollo social integral de una comunidad, no es suficiente tener acceso a servicios básicos, sino también las condiciones que faciliten y fundamenten el bienestar y progreso de la comunidad en los ámbitos económico, social, académico y ecológico. Finalmente, se genera información para orientar la inversión pública a sectores urgentes de atender, además de promover e implementar políticas sociales que logren el bienestar de los pobladores del distrito de Ascope.
In this document the social Progress Index of the Ascope district is elaborated. Ascope which is located in the Ascope province, region La Libertad. The aim of this work is to know the progress level reached by the district, this tool measures the development of the district from different essential dimensions for the human well-being, constituting the first guide for local and national authorities to make better decisions for the benefit of the target groups, by identifying and integrating the needs and solutions in the improvement of the citizens’ quality life. The Ascope district, in 2018, reached a low level in social progress, as a consequence of a medium – high level in the basic human needs dimension. Nevertheless, in the wellness foundations a very low level was reached, whilst in the opportunities dimension the situation is discouraging with an extremely low level; these results show that the population don’t have a decent life, for example, having proper housing and opportunities to get quality higher education. On the other hand, it is important to emphasize that to reach an integral social development of a community it is not enough for the population in Ascope to have access to basic services, but also conditions that enable and provide the basis for the wellness and the community progress in the economic, social, academic and ecological aspects. Finally, information to direct public investment is generated to help underserved sectors in Ascope, also, social policies to ensure the welfare of the Ascope district population are promoted and implemented in this document.
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Sonntag, Rodja Fabian [Verfasser]. "Schnelle Beladung von Dieselpartikelfiltern mit Asche / Rodja Fabian Sonntag." Aachen : Shaker, 2016. http://d-nb.info/1122545568/34.

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Coda, Beatrice. "Studies on ash behavior during co-combustion of paper sludge in fluidized bed boilers Untersuchung des Ascheverhaltens bei der Mitverbrennung von Papierschlammen in Wirbelschichtfeuerungen /." [S.l. : s.n.], 2004. http://www.bsz-bw.de/cgi-bin/xvms.cgi?SWB11195138.

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Grönberg, Åsa. "Common knowledge database : gränssnittsprotoyp för en kunskapsdatabas." Thesis, University West, Department of Technology, 2003. http://urn.kb.se/resolve?urn=urn:nbn:se:hv:diva-342.

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Tyrallova, Lucia [Verfasser], and Hartmut [Akademischer Betreuer] Asche. "Automatisierte Objektidentifikation und Visualisierung terrestrischer Oberflächenformen / Lucia Tyrallova. Betreuer: Hartmut Asche." Potsdam : Universitätsbibliothek der Universität Potsdam, 2014. http://d-nb.info/1046725939/34.

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Asche, Christian [Verfasser]. "GPGPU-beschleunigte Reduktion bathymetrischer Geländemodelle mit T-Spline-Flächen / Christian Asche." Hannover : Technische Informationsbibliothek (TIB), 2016. http://d-nb.info/1099097576/34.

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Bruecher, Jonne [Verfasser], Helmut [Akademischer Betreuer] Asche, Helmut [Gutachter] Asche, and Katja [Gutachter] Werthmann. "Regional economic integration and development : A theoretical and empirical conceptualization with particular focus on the East African Community / Jonne Bruecher ; Gutachter: Helmut Asche, Katja Werthmann ; Betreuer: Helmut Asche." Leipzig : Universitätsbibliothek Leipzig, 2016. http://nbn-resolving.de/urn:nbn:de:bsz:15-qucosa-211672.

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Morina, Ilir. "Entwicklung von Verfahren zur Rekultivierung der Aschedeponie des Braunkohlekraftwerkes in Prishtina (Kosovo)." Tönning Lübeck Marburg Der Andere Verl, 2008. http://d-nb.info/995773971/04.

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Books on the topic "ASCOE"

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Wright, Eric. Asche zu Asche: Thriller. Bergisch Gladbach: Bastei Lübbe, 1990.

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Onslow, Richard. Royal Ascot. Marlborough: Crowood, 1990.

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Moya, Horacio Castellanos. El asco. Barcelona: Literatura Random House, 2018.

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Gross, Johannes. Phönix in Asche. München: Goldmann, 1991.

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Geographers' A to Z Map Company. Bracknell, Wokingham, Ascot. Sevenoaks: Geographers A-Z Map Co, 1998.

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Park, Un-Yong. Die Asche: Kriminalroman. Münster: Neues Literaturkontor, 1996.

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Beckett, Simon. Kalte Asche: Thriller. 2nd ed. [Reinbek]: Wunderlich, 2007.

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Jacobus, Hans. Träume zu Asche? 2nd ed. Berlin, Germany: Spotless-Verlag, 1993.

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Boëtius, Henning. Phönix aus Asche: Roman. München: Btb, 2000.

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Harshalom, Avraham. Auferstanden aus der Asche. Praha: V Ráji, 1993.

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Book chapters on the topic "ASCOE"

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Mehlsen, Jesper. "ASCOT Trial." In Methods and Applications of Statistics in Clinical Trials, 74–79. Hoboken, NJ, USA: John Wiley & Sons, Inc., 2014. http://dx.doi.org/10.1002/9781118596005.ch7.

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Dobraunig, Christoph, Maria Eichlseder, Florian Mendel, and Martin Schläffer. "Cryptanalysis of Ascon." In Lecture Notes in Computer Science, 371–87. Cham: Springer International Publishing, 2015. http://dx.doi.org/10.1007/978-3-319-16715-2_20.

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Schuller, Marianne. "Pfeil und Asche." In Kleist-Jahrbuch 1999, 194–202. Stuttgart: J.B. Metzler, 2000. http://dx.doi.org/10.1007/978-3-476-03787-9_14.

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Jacob, Klaus. "Asche und Schwefel." In Entfesselte Gewalten, 123–35. Basel: Birkhäuser Basel, 1995. http://dx.doi.org/10.1007/978-3-0348-5687-4_12.

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Luminet, Jean-Pierre. "Asche und Diamant." In Schwarze Löcher, 70–82. Wiesbaden: Vieweg+Teubner Verlag, 1997. http://dx.doi.org/10.1007/978-3-322-85014-0_5.

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Pfeiffer, Anna-Livia. "Asche und Utopie." In transmortale, 11–27. Köln: Böhlau Verlag, 2015. http://dx.doi.org/10.7788/9783412502706-002.

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Welge, Katrin, William R. Maples, and Michael Browning. "Flammen und Asche." In Knochengeflüster, 121–30. Basel: Birkhäuser Basel, 1996. http://dx.doi.org/10.1007/978-3-0348-5089-6_10.

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Gebhardt, Christian, and Gordon Müller-Seitz. "Phönix aus der Asche." In Organisation und Umwelt, 41–90. Wiesbaden: Gabler Verlag, 2011. http://dx.doi.org/10.1007/978-3-8349-6940-8_2.

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Gerhardt, Volker. "Die Asche des Marxismus." In Politisches Denken Jahrbuch 1998, 17–46. Stuttgart: J.B. Metzler, 1998. http://dx.doi.org/10.1007/978-3-476-03709-1_2.

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Villars, P., K. Cenzual, J. Daams, R. Gladyshevskii, O. Shcherban, V. Dubenskyy, V. Kuprysyuk, and I. Savysyuk. "[AsCo3(CO)8]3." In Structure Types. Part 9: Space Groups (148) R-3 - (141) I41/amd, 164–65. Berlin, Heidelberg: Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-642-02702-4_101.

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Conference papers on the topic "ASCOE"

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Korkontzelos, Ioannis, and Sophia Ananiadou. "ASCOT." In the 2nd ACM SIGHIT symposium. New York, New York, USA: ACM Press, 2012. http://dx.doi.org/10.1145/2110363.2110472.

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Chen, Hung-Hsuan, and C. Lee Giles. "ASCOS." In ASONAM '13: Advances in Social Networks Analysis and Mining 2013. New York, NY, USA: ACM, 2013. http://dx.doi.org/10.1145/2492517.2492539.

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Searer, Gary R., Terrence F. Paret, and Sigmund A. Freeman. "ASCE-31 and ASCE-41: What Good Are They?" In Structures Congress 2008. Reston, VA: American Society of Civil Engineers, 2008. http://dx.doi.org/10.1061/41016(314)130.

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Houston, Thomas W., Greg E. Mertz, and Andrew Maham. "Comparison of Seismic Design Provisions Using ASCE 43 With Conventional Design Based on ASCE 7 Seismic Loads." In ASME 2016 Pressure Vessels and Piping Conference. American Society of Mechanical Engineers, 2016. http://dx.doi.org/10.1115/pvp2016-63681.

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One graded approach for the design of nuclear facilities would design high hazard facilities to meet the provisions of ASCE 43 while low hazard facilities would be designed as conventional structures based on the seismic loading and design criteria in ASCE 7. In structures with an intermediate hazard it is not immediately obvious which standard provides a more conservative design. This paper presents a case study that compares the performance of an intermediate hazard structure with ASCE 7 seismic loading and criteria to the target performance goals described in ASCE 43 and DOE-STD-1020. The purposes of seismic design associated with ASCE 7 are; 1) to provide minimum design criteria for structures appropriate to their primary function and use considering the need to protect the health, safety, and welfare of the general public by minimizing the earthquake-related risk to life, and 2) to improve the capability of essential facilities and structures containing substantial quantities of hazardous materials to function during and after design earthquakes. Designs developed using the provisions of ASCE 7 are targeted to a collapse prevention limit state probability of 1% in 50 years. The goal of the earthquake provisions in ASCE 43 is to ensure that high hazard nuclear facilities can withstand the effects of earthquakes with desired performance, expressed as probabilistic Target Performance Goals and various limit, or damage, states. These Target Performance Goals range from 1×10−4 to 1×10−5 with limit states ranging from essentially linear response to short of collapse. There are requirements invoked by ASCE 7 that are different than the requirements of ASCE 43 which prevents a direct computation of performance based on comparing the seismic demand levels required by each standard. These differences include the use of building R values in ASCE 7 compared to component specific Fu values in ASCE 43, the use of different analyses methods, ASCE 7 upper bound limits on seismic forces for some components, the limitations on framing system types, among others. The effect of these differences on the performance achieved between the two standards is evaluated for the design of a reinforced concrete shear wall structure that is representative of the types of structures used in nuclear facilities.
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Bontsevich, Roman, Tatyana Filinichenko, Anna Gavrilova, Kristina Shchurovskaya, Galina Batisheva, Natalya Goncharova, Galina Ketova, et al. "Students’ knowledge of COPD: projects ASCO-1 and ASCO-­2 results comparison." In ERS International Congress 2019 abstracts. European Respiratory Society, 2019. http://dx.doi.org/10.1183/13993003.congress-2019.pa1485.

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6

Marvin, Dean. "Final Flight Data Report from ASCOT." In 2006 IEEE 4th World Conference on Photovoltaic Energy Conference. IEEE, 2006. http://dx.doi.org/10.1109/wcpec.2006.279873.

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7

Williams, Scott C. "ASCE Transient Analysis Task Committee." In Pipelines Specialty Conference 2009. Reston, VA: American Society of Civil Engineers, 2009. http://dx.doi.org/10.1061/41069(360)107.

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8

Kempner, Jr., Leon, and George T. Watson. "ASCE Substation Structure Design Guide." In Electrical Transmission in a New Age Conference. Reston, VA: American Society of Civil Engineers, 2002. http://dx.doi.org/10.1061/40642(253)17.

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9

Cook, Ronald, Larry Griffis, Peter Vickery, and Eric Stafford. "ASCE 7-10 Wind Loads." In Structures Congress 2011. Reston, VA: American Society of Civil Engineers, 2011. http://dx.doi.org/10.1061/41171(401)126.

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10

Zhang, Fan, and Yong-Yi Wang. "Assess the Seismic Wave Influence on Buried Pipelines With ASCE Soil-Spring Model." In ASME 2014 33rd International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2014. http://dx.doi.org/10.1115/omae2014-24650.

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The propagation of seismic waves introduces strains in buried pipelines. Considerable amount of work was performed in 1970’s and early 1980’s in this subject area. A good representative of such work is the model developed by Shinozuka and Koike in 1979. The analytical models developed during this period are still the major tools in assessing the influence of seismic waves on buried pipelines. The foundations of these models are the assumptions and some simplified soil and pipe interaction models available at the time. In 1984 a spring model representing the interaction between soil and buried pipes was introduced by American Society of Civil Engineers (ASCE) in Guidelines for the Seismic Design of Oil and Gas Pipeline Systems. An improved version of the ASCE model was later published in Guidelines for the Design of Buried Steel Pipe by American Lifelines Alliance in 2001. Since then, the spring model has become one of the most widely used models by various industries and has been incorporated into commercial software, such as AutoPIPE®. Most of the soil properties in fields are represented by the parameters of the ASCE soil-spring model. However, it is inconvenient to assess the influence of seismic waves on pipelines with soil properties described by parameters of the ASCE model. There are differences between the ASCE soil-spring model and the soil-pipe interactions in the seismic wave analysis model. In this paper the foundation of Shinozuka and Koike model is first reviewed. The model is then revised to accommodate the ASCE soil-spring model. Some unnecessary assumptions in the Shinozuka and Koike model are removed to make the model more generally applicable to various field conditions. Finally, the revised model is verified by finite element analysis under several typical pipeline field conditions, including straight segments and segments with bends and tees.
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Reports on the topic "ASCOE"

1

Ellis, K. P. ASCOT meteorological towers. Office of Scientific and Technical Information (OSTI), September 1991. http://dx.doi.org/10.2172/26579.

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2

Seltzer, Sherman M., Danny K. Tollison, Thomas G. Howsman, Richard D. Irwin, and William P. Maggard. ASCOT (Advanced Structural Control Techniques). Fort Belvoir, VA: Defense Technical Information Center, September 1985. http://dx.doi.org/10.21236/ada165917.

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3

Coulter, R. L., and T. J. Martin. Argonne National Laboratory operations during ASCOT 1991. Office of Scientific and Technical Information (OSTI), December 1991. http://dx.doi.org/10.2172/5757736.

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Coulter, R. L., and T. J. Martin. Argonne National Laboratory operations during ASCOT 1991. Office of Scientific and Technical Information (OSTI), December 1991. http://dx.doi.org/10.2172/10122314.

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5

JM Hubbe and KJ Allwine. ASCOT 91 field experiment : PNL airsonde data summary. Office of Scientific and Technical Information (OSTI), July 1991. http://dx.doi.org/10.2172/946091.

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6

Kneifel, Joshua D. Economic Analysis of ASCE 7-22 Tornado Load Requirements. Gaithersburg, MD: National Institute of Standards and Technology, 2022. http://dx.doi.org/10.6028/nist.tn.2214.

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7

El-Gibaly, Omaima, and Susan M. Lee. Too Young to Be a Mother: A Description of the Lives of Married Adolescent Girls in Egypt. Population Council, 2004. http://dx.doi.org/10.31899/pgy2004.1000.

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Improving the status and health of women is high on the agenda of the Ministry of Health and Population in Egypt. Investing in the lives of women who marry in their teens has long-term benefits for these girls and their children. Valid information is needed, however, to address these girls’ special needs. Adolescent health is currently one of the major concerns of the Ministry of Health and Population, as is delaying early marriage and addressing the reproductive and other health needs of married girls. The Ministry was a fieldwork partner with the Population Council, providing data collection from primary health care physicians throughout the country for the “Adolescent and Social Change” Survey (ASCE) in 1997. This monograph is an in-depth analysis of the ASCE survey data. It portrays the context in which married girls are living, describes their characteristics, marriages, and reproductive practices, and makes them visible for the first time, which is hoped will contribute to improving their situation.
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8

Kroposki, B., S. Englebretson, C. Pink, J. Daley, R. Siciliano, and D. Hinton. Validation of IEEE P1547.1 Interconnection Test Procedures: ASCO 7000 Soft Load Transfer System. Office of Scientific and Technical Information (OSTI), September 2003. http://dx.doi.org/10.2172/15004842.

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9

Schechter, E., Emil Simiu, and M. M. Schechter. Developmental computer-based version of ASCE 7-95 standard provisions for wind loads. Gaithersburg, MD: National Bureau of Standards, 1995. http://dx.doi.org/10.6028/nist.tn.1415.

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10

Giller, R. A. ,. Westinghouse Hanford. Wind load comparison for the ASCE standard 7 and the Hanford site design criteria. Office of Scientific and Technical Information (OSTI), July 1996. http://dx.doi.org/10.2172/657488.

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