Academic literature on the topic 'Position'

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Journal articles on the topic "Position"

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Wagner, A., M. Butterling, F. Fiedler, F. Fritz, M. Kempe, and T. E. Cowan. "Position-resolved Positron Annihilation Lifetime Spectroscopy." Journal of Physics: Conference Series 443 (June 10, 2013): 012091. http://dx.doi.org/10.1088/1742-6596/443/1/012091.

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Reay, Donald T., and John D. Howard. "Restraint Position and Positional Asphyxia." American Journal of Forensic Medicine and Pathology 20, no. 3 (1999): 300–301. http://dx.doi.org/10.1097/00000433-199909000-00016.

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Chan, Theodore C., Gary M. Vilke, Tom Neuman, and Jack L. Clausen. "Restraint Position and Positional Asphyxia." Annals of Emergency Medicine 30, no. 5 (1997): 578–86. http://dx.doi.org/10.1016/s0196-0644(97)70072-6.

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Lawlor, Andrea. "Position Paper #14: The Pacific Gyre, and: Position Paper #18: Insurance, and: Position Paper #19: Donald Trump, and: Position Paper #20: Positions." Ploughshares 43, no. 1 (2017): 110–13. http://dx.doi.org/10.1353/plo.2017.0015.

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Hammond, David Ian, and Brian C. Lentle. "Position, Position." Radiology 271, no. 3 (2014): 926–27. http://dx.doi.org/10.1148/radiol.14140346.

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Zhao, Zhijian, Junhong Fan, Yang Liu, Jean de la Rosette, and Guohua Zeng. "Percutaneous nephrolithotomy: position, position, position!" Urolithiasis 46, no. 1 (2017): 79–86. http://dx.doi.org/10.1007/s00240-017-1019-5.

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Brookler, Kenneth. "Positional Nystagmus in Only One Position." Ear, Nose & Throat Journal 78, no. 11 (1999): 834. http://dx.doi.org/10.1177/014556139907801106.

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Falahatkar, Siavash, and Mojtaba Teimoori. "Re: percutaneous nephrolithotomy—position, position, position!" Urolithiasis 46, no. 5 (2018): 501. http://dx.doi.org/10.1007/s00240-018-1046-x.

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Cho, Jang Ho, Hyoung Il Son, Tapomayukh Bhattacharjee, Dong Gun Lee, and Doo Yong Lee. "Position-Position Control with Gain-Scheduling for Telesurgical Systems." Abstracts of the international conference on advanced mechatronics : toward evolutionary fusion of IT and mechatronics : ICAM 2010.5 (2010): 283–88. http://dx.doi.org/10.1299/jsmeicam.2010.5.283.

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Nechiporenko, Alexander V. "The Concept of Position and Positional Thinking." Siberian Journal of Philosophy 18, no. 2 (2020): 195–207. http://dx.doi.org/10.25205/2541-7517-2020-18-2-195-207.

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The paper elaborates on and develops the concept of “position”. Drawing on the examples from the history of science and philosophy from G. Galileo to the works of the Moscow Methodological Circle in the second half of the 60s - early 70s of the 19th century the author considers the cultural phenomenon of positional thinking. Special attention is paid to the philosophy of I.G. Fichte. An assumption is made and substantiated that Fichte’s dialectics is a model of specifically positional thinking and provides a basis for determining the objective content of the concept of “position”. The paper also describes the context of the emergence of positional schemes, their specific structure and use in the works of MMK as a normative-logical apparatus, an alternative to formal logic. It also outlines the area of topical problems associated with the concept of “position”.
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Dissertations / Theses on the topic "Position"

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Hale, Rebecca O. "POSITION CLASS PRECLUSION: A COMPUTATIONAL RESOLUTION OF MUTUALLY EXCLUSIVE AFFIX POSITIONS." UKnowledge, 2014. http://uknowledge.uky.edu/ltt_etds/3.

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In Paradigm Function Morphology, it is usual to model affix position classes with an ordered sequence of inflectional rule blocks. Each rule block determines how (or whether) a particular affix position is filled. In this model, competition among inflectional rules is assumed to be limited to members of the same rule block; thus, the appearance of an affix in one position cannot be precluded by the appearance of an affix in another position. I present evidence that apparently disconfirms this restriction and suggests that a more general conception of rule competition is necessary. The data appear to imply that an affixation rule may in some cases override a rule introducing an affix occupying another, distinct position. I propose that each inflectional rule R carry two indices — the first, as usual, specifying the position of the affix introduced by R. The second, however, specifies the position(s) that R satisfies. By default, these two indices identify the same position. However, where one affix precludes another, the second index of the appearing affix specifies two affix positions: the one in which it appears and the one which it precludes. With both blocks satisfied, no other rules which fill either may be applied.
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Adamian, Nika. "Predictive position coding : attentional account of motion-induced position shifts." Thesis, Sorbonne Paris Cité, 2017. http://www.theses.fr/2017USPCB164/document.

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La localisation des objets dans l'espace est l'une des fonctions centrales du système visuel. Lorsqu'un observateur ou une cible se déplace, le mouvement de l’œil ou de l'objet peut être pris en compte pour calculer la position de l'objet à n'importe quel moment. Il a été démontré à plusieurs reprises que le mouvement visuel peut fortement influencer la position perçue d'un objet. Par exemple, la position d'un stimulus contenant une texture en mouvement (De Valois &amp; De Valois, 1991; Ramachandran &amp; Anstis, 1990), celle d'un flash présenté sur (Cavanagh &amp; Anstis, 2013) ou à côté (Whitney &amp; Cavanagh, 2000) d'une texture en mouvement, et même les positions d'apparition et de disparition d'objets en mouvement (Fröhlich, 1923) sont perçus comme étant déplacées dans le sens du mouvement. Dans le cadre de cette thèse, nous avons exploré la relation entre ces changements de position provoqués par le mouvement et différentes formes d'attention visuelle: 1) l'attention spatiale temporaire, 2) l'attention globale et locale, 3) l'attention spatiale maintenue, et 4) l'attention centrée sur les objets. Dans une première série d'expériences, nous avons étudié dans quelle mesure et de quelle manière l'attention module l'effet Fröhlich (i.e la position perçue du début du mouvement est déplacée dans le sens du mouvement). Dans les expériences 1 et 2, nous avons mesuré l'effet Fröhlich dans différentes conditions de d'indiçage et nous avons montré que les indices non valides ou tardifs entraînent des déplacements perceptifs plus importants. Dans l'expérience 3, nous avons comparé les déplacements provoqués par le mouvement lorsque les sujets portaient leur attention sur un ensemble d'objets en mouvement qui formaient un groupe à quand ils portaient leur attention à un seul stimulus parmi cet ensemble. Les résultats montrent que l'effet Fröhlich n'était présent que lorsque l'attention sélectionne un seul objet et qu'il disparaît lorsque le stimulus est perçu dans un contexte de groupe (global). Ainsi, ces résultats suggèrent que l'attention sélective est à la fois à l'origine de et module l'effet Fröhlich. Ayant établi que les délais temporels de l'attention augmentent les changements de la position provoqués par le mouvement, l'étude suivante était conçue pour explorer si la distribution spatiale de l'attention a le même effet. Dans cette étude, nous avons utilisé le « flash grab » - un changement de position illusoire aperçu quand une cible est brièvement présentée brièvement sur un fond en mouvement au moment de l'inversion du sens du mouvement (Cavanagh &amp; Anstis, 2013). Les essais étaient regroupés en différents blocks au début desquels un indice indiquait la région de l'espace dans laquelle la cible était susceptible d'apparaître. Nos résultats mettent en évidence une diminution du flash-grab quand la distribution spatiale des cibles était limitée à une plage de 90° ou moins. Dans la dernière étude, nous nous sommes demandés si l'effet du mouvement sur la position perçue affecte l'objet dans son ensemble ou si il affecte les caractéristiques distinctes d'un même objet indépendamment les uns des autres. Pour cela nous avons utilisé le paradigme flash grab en présentant brièvement une forme sur un fond en mouvement au moment de l'inversion du sens du mouvement. Les résultats indiquent que les attributs de la cible orthogonaux au mouvement du fond étaient déplacés, alors que les attributs parallèles au mouvement restaient intacts. Ceci suggère que le mouvement interagit avec la position des attributs de l'objet (et que l'attention focale sélectionne) avant que ces attributs ne soient regroupés en un objet. En conclusion, nous avons utilisé une variété de manipulations attentionnelles à des changements de position provoqués par le mouvement pour étudier le lien entre l'amplitude de l'illusion et les caractéristiques attentionnelles utilisé<br>Localizing objects in space is one of the central functions of the visual system. When an observer or a target is moving, the motion of the eye or the object can be taken into account to compute the current object locations. It has been shown many times that visual motion can strongly influence the perceived position of an object. For example, a stationary patch containing moving texture (De Valois &amp; De Valois, 199; Ramachandran &amp; Anstis, 1990), a flash presented on (Cavanagh &amp; Anstis, 2013) or next to (Whitney &amp; Cavanagh, 2000) a moving texture, and even the onset and offset positions of the moving targets (Fröhlich, 1923) are perceived as shifted in the direction of motion. In this thesis we explore the relationship between these motion-induced position shifts and visual attention in the following forms: 1) transient spatial attention, 2) global and local attention, 3) sustained spatial attention, and 4) object-based attention. In the first series of experiments we looked at whether and how attention modulates the shift in localization of motion onset (Fröhlich effect). In Experiments 1 and 2 we measured Fröhlich effect under different cueing conditions and established that invalid or late cues produced larger perceptual shifts. In Experiment 3 we compare the motion-induced shifts when the subjects attended to a set of moving stimuli as a group and when they attended to an orientation singleton. We showed that the Fröhlich effect was only present when the target was individuated and disappeared when the stimulus was perceived globally. Thus, the Fröhlich effect appeared to be both produced and modulated by focal attention. Having established that temporal delays of attention increase motion-induced position shifts, the next study explored if spatial distribution of attention has a similar effect. In this study we used flash grab - an illusory position shift seen when a target is briefly flashed on top of a moving background that abruptly changes direction (Cavanagh &amp; Anstis, 2013). Trials were presented in blocks and before each block a cue indicated a range of possible target locations. We found that the flash grab was reduced if the spatial distribution of targets was limited to a range of 90° or less. The final study asked whether motion shifts the perceived position of an object as a whole or if separate features of a single object are shifted independently. To test this we used the flash grab paradigm and briefly presented a shape on top of a moving background at the moment it changed direction. The results showed that the features of the target that were orthogonal to the background motion were shifted, whereas the features parallel to the motion were intact. This suggests that motion interacts with the position of the object's features (and focal attention selects them) before they are bound together into an object. In conclusion, we applied a variety of attentional manipulations to motion-induced position shifts, and examined the link between the strength of the illusion and the characteristics of attention used in a particular task. We found that 1) motion-induced position shifts require focused attention and the possibility to track an individual motion trajectory; 2) allowing attention to be allocated more efficiently in space reduces the illusion; and 3) motion-induced shifts operate on the feature-based and not object-based level
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Håkansson, Pontus, and David Knutsson. "Safe Sleeping Position." Thesis, Halmstad University, School of Business and Engineering (SET), 2007. http://urn.kb.se/resolve?urn=urn:nbn:se:hh:diva-750.

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<p>Project Safe Sleeping Position (SSP) contains all parts in a product development phase. The project comprises the whole cycle from idea to a complete product where all aspects are included. The scope is to develop an innovative solution for a common known problem and work with all parts within the man-machine-way. The result is an inflatable product which secures a child in the correct way for the seatbelt to work properly in the rearseat of a car. Ergonomics, technical extent, usability, design, construction, product solutions and market potential are some of all parts witch the project includes. The targetgroup for the project is children 4 to 12 years old, but there is a great potential for a further development to provide a solution for adults. </p><p>Signed project managers are commissioned by Volvo Car Corporation (VCC), a large car manufacturer with the whole world as the market. This sets requirements to the product to be adaptable to all markets without cutting down on usability. Except the assigner, the project comprises several partners, both companies, independent organizations and students at Halmstad University.</p>
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Joris, Hannah. "Our vulnerable position." Thesis, Konstfack, Ädellab/Metallformgivning, 2009. http://urn.kb.se/resolve?urn=urn:nbn:se:konstfack:diva-3228.

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Today outer –often opposing- influences are endless; varying from contact with group features such as cultural, economical, national distinctions to differences in individual religious beliefs, sexual behavior, political views, ecological consciousness, etc. … Being confronted with this otherness leads to a crumbling, an unsettling notion of the known, the established values which throughout time were thought to have become one’s own; leading to confusion and resulting in the questioning of the self. A learning and growing process which does not become easier with all the changes in our contemporary Western society… How do we, contemporary Western human beings deal with the apparent freedom and insecurity we are confronted with in our society?The essay starts off by looking at some of the major shifts in our contemporary society. A first important change is the space-time compression. The consequences of this shift, such as the dissolving of nations, hybridizing of national identities, globalization and theuncertainty it brings forth, are explored from different angles.Fast-moving trends have caused a confusion of beliefs and identities and as there is not one principle provided, one has to learn to grasp the contrasts. Today there is a taste for heterogeneity, causing a shift towards openness, inclusion and tolerance. Even though it is on its dispositions that contemporary society thrives, it also means that opposing extremes exist next to one another.In our ‘information society’ innovation of communication and knowledge occupy a significant role. Besides the confusion caused through the space-time compression, all truly transformative advances in knowledge bring along the downside of uncertainty and incalculability.Along with these ‘sources for uncertainty’, there is also a short look into possible certainties in contemporary life, since traditional religions and modern substitutes are not satisfactory and a strong belief in anything today seems rather improbable.A possible source for answers and improvements which is given are the humanities. They confront people with making judgments about the relationship between facts and values.It is important in creating awareness in an ‘information society’ since innovations are value-free. Humanities can have the ambition to bring people towards each other to take up new forms of identification that are open for collaboration and unity.
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Rau, Alexander V. "Relative-position localization." Thesis, University of Oxford, 2004. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.403983.

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Pfajfer, Aleksander. "Position-dependent encoding." Thesis, Massachusetts Institute of Technology, 1994. http://hdl.handle.net/1721.1/36461.

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Morris, Eric M. "The Tornado Position." University of Akron / OhioLINK, 2010. http://rave.ohiolink.edu/etdc/view?acc_num=akron1279143567.

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Wagner, Claude. "L'ergothérapie dans le champ des professions paramédicales : positions, prises de position et représentations." Metz, 2004. http://docnum.univ-lorraine.fr/public/UPV-M/Theses/2004/Wagner.Claude.LMZ0405.pdf.

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Notre démarche consiste à prendre pour objet d'étude la profession d'ergothérapeute. Celle-ci peut être inscrite dans un champ professionnel plus vaste où existent des enjeux de légitimation et de reconnaissance. Profession paramédicale de la rééducation et de la réadaptation elle implique une formation de trois ans dans des écoles spécialisées sanctionnée par un diplôme d'Etat en ergothérapie. En effet, l'Etat en tant qu'administration est le vecteur premier de légitimation de cette profession, il lui reconnaît la maîtrise d'une technique formalisée dans le décret d'actes. Détenteur d'une qualification, d'une compétence technique spécifique l'ergothérapeute est toutefois subordonné à l'autorité du médecin prescripteur. En cela, dans le cadre de la division du travail médical, l'ergothérapie tient une place " d'intermédiaire " à l'identique des kinésithérapeutes ou des psychomotriciens, par exemple. Dans ces conditions une profession comme l'ergothérapie peut-elle jouir d'un certain degré d'autonomie ? Au sein des professions paramédicales et du monde médical en général les ergothérapeutes ont justement des difficultés à se positionner parce que les savoirs qui fondent la profession émanent de plusieurs disciplines (médecine, psychologie, techniques d'appareillage, ergonomie,). De plus, leurs domaines d'intervention ne sont pas toujours connus des médecins praticiens, des autres professions paramédicales et du grand public en général. Ainsi, la reconnaissance d'une profession telle que l'ergothérapie dépend en grande partie de la capacité des membres qui la composent à mettre en valeur leurs compétences auprès du corps médical, des patients ainsi qu'auprès de l'administration<br>Occupational therapy in the paramedical field: positions, stand points, perceptions. Our reasoning consists in studying the trade of occupational therapists. This profession can be included in a professional field in which legitimacy and recognition are at stake. Occupational therapy is a profession of reeducation and rehabilitation, that supposes a three-year training in special schools and for which a state degree is delivered. Indeed the state validates the professional qualification of occupational therapists through the decree of competences. However, the therapy performed by the occupational therapists has to be (taken) in accordance with medical doctor instruction. So, in the medical work division the place of the occupational therapist is in the middleman like the physiotherapist or the psychomotrician for instance. In these conditions can the occupational therapists get autonomy to a certain extent? Among the medical world in general the occupational therapists have difficulties to find a place because the knowledge on which is based the profession stems from many areas (medicine, psychology, ergonomics, ). In addition to that, all the areas covered by occupational therapists are not always known by the general practitioners, the others paramedical professions and people in general. So the recognition of the trade like the occupational therapists depends in great part on ability on his members to emphasize their expertise among the medical body, the patients and the administration
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Wagner, Claude Trépos Jean-Yves. "L'ergothérapie dans le champ des professions paramédicales positions, prises de position et représentations /." Metz : Université Metz, 2008. ftp://ftp.scd.univ-metz.fr/pub/Theses/2004/Wagner.Claude.LMZ0405.pdf.

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Lu, Yun Ran. "Position mobile phone market." Thesis, University of Macau, 2000. http://umaclib3.umac.mo/record=b1636664.

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Books on the topic "Position"

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Erik, Smith, and David Komary. Position. Schlebrügge.Editor, 2020.

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Janks, Hilary. Language & position. Hodder & Stoughton, 1994.

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Project, Glasgow 2000 Healthy Cities. Position statement. The Project, 1989.

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Commission, Great Britain Countryside. Position statement. Countryside Commission, 1993.

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Nyce, David S. Position Sensors. John Wiley & Sons, Inc., 2016. http://dx.doi.org/10.1002/9781119069164.

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Fuentes, Norberto. Position one. José Martí Pub. House, 1985.

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), Canadian Federation of Labour (1982. Position papers. The Federation, 1992.

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Quality Education Network. Committee of Educators. Position paper. The Committee, 1992.

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Union of Industrial and Employers' Confederations of Europe. Position papers. Presse Media Europe, 1989.

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Association of Large School Boards in Ontario. Task Force on Technological Studies. Position paper. The Association, 1988.

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Book chapters on the topic "Position"

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Vekinis, George. "Position, Position, Position." In The Researcher Entrepreneur. Springer Nature Switzerland, 2023. http://dx.doi.org/10.1007/978-3-031-44358-9_22.

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Andrews, Abigail. "Position." In The Social Life of Gender. SAGE Publications, Inc., 2018. http://dx.doi.org/10.4135/9781506300054.n5.

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Weik, Martin H. "position." In Computer Science and Communications Dictionary. Springer US, 2000. http://dx.doi.org/10.1007/1-4020-0613-6_14321.

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Organ, Nancy. "Position." In Data Visualization for People of All Ages. A K Peters/CRC Press, 2024. http://dx.doi.org/10.1201/9781003309376-6.

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Hollis, Ed, and Sally Stone. "Position." In Inside Information. RIBA Publishing, 2022. http://dx.doi.org/10.4324/9781003277835-6.

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McNally, Derek. "Positional Astronomy (Astronomie de Position)." In Reports on Astronomy. Springer Netherlands, 1991. http://dx.doi.org/10.1007/978-94-011-3364-7_5.

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Mao, Qibo, and Stanislaw Pietrzko. "Positive Position Feedback (PPF) Control." In Control of Noise and Structural Vibration. Springer London, 2013. http://dx.doi.org/10.1007/978-1-4471-5091-6_6.

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Bhatt, Rakesh Mohan. "Subject Position, Object Positions, and Case." In Studies in Natural Language and Linguistic Theory. Springer Netherlands, 1999. http://dx.doi.org/10.1007/978-94-015-9279-6_6.

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Huankang, Zhang, Huang Jingjing, Hou Xiaolin, J. Peter Van Maanen, and Xiao Kuanlin. "Positional Therapy: Left Lateral Decubitus Position Versus Right Lateral Decubitus Position." In Positional Therapy in Obstructive Sleep Apnea. Springer International Publishing, 2014. http://dx.doi.org/10.1007/978-3-319-09626-1_8.

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Longhofer, Jeffrey. "Depressive position." In A-Z of Psychodynamic Practice. Macmillan Education UK, 2015. http://dx.doi.org/10.1007/978-1-137-03387-1_20.

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Conference papers on the topic "Position"

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Sel, Artun, Samer Hayek, and Zaher M. Kassas. "Robust Position Estimation using Range Measurements from Transmitters with Inaccurate Positions." In 2024 27th International Conference on Information Fusion (FUSION). IEEE, 2024. http://dx.doi.org/10.23919/fusion59988.2024.10706519.

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He, Zhiyuan, Huiqiang Jiang, Zilong Wang, Yuqing Yang, Luna K. Qiu, and Lili Qiu. "Position Engineering: Boosting Large Language Models through Positional Information Manipulation." In Proceedings of the 2024 Conference on Empirical Methods in Natural Language Processing. Association for Computational Linguistics, 2024. http://dx.doi.org/10.18653/v1/2024.emnlp-main.417.

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Sereno, N. S., and R. Fuja. "Positron beam position measurement for a beam containing both positrons and electrons." In Beam instrumentation. AIP, 1997. http://dx.doi.org/10.1063/1.52289.

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Sereno, Nicholas S. "Calibration of an advanced photon source linac beam position monitor used for positron position measurement of a beam containing both positrons and electrons." In The eighth beam instrumentation workshop. AIP, 1998. http://dx.doi.org/10.1063/1.57014.

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Gu, Yonggang, Feng Cheng, Chao Zhai, and Hongzhuan Hu. "Dynamic position accuracy analysis of fiber positioner." In Advances in Optical and Mechanical Technologies for Telescopes and Instrumentation III, edited by Roland Geyl and Ramón Navarro. SPIE, 2018. http://dx.doi.org/10.1117/12.2311859.

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Farinholt, Kevin, Austin Creasy, Gyuhae Park, Charles Farrar, and Donald Leo. "Adaptive Positive Position Feedback for Structural Control." In 49th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference
16th AIAA/ASME/AHS Adaptive Structures Conference
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. American Institute of Aeronautics and Astronautics, 2008. http://dx.doi.org/10.2514/6.2008-2040.

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Mirth, John A. "Two Precision Position Synthesis of Planar Linkages With Positional Rectification." In ASME 1996 Design Engineering Technical Conferences and Computers in Engineering Conference. American Society of Mechanical Engineers, 1996. http://dx.doi.org/10.1115/96-detc/mech-1185.

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Abstract Precision position synthesis is used to generate planar linkages that pass through two exact positions and an additional number of approximate positions. The approximate positions provide a means of rectifying the solution linkages such that all solutions presented are more likely to describe a motion that remains within acceptable positional bounds. The rectification method involves the development of three different numerical algorithms that may be applied to a particular step in the dyad/triad method of precision position synthesis. The three algorithms presented can be applied in a variety of combinations to allow for the synthesis of both simple (four-bar) and complex (multiloop) planar linkages.
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Douglis, Fred, John Palmer, Elizabeth S. Richards, et al. "Position." In the 11th workshop. ACM Press, 2004. http://dx.doi.org/10.1145/1133572.1133593.

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Vidyaraman, S., M. Chandrasekaran, and S. Upadhyaya. "Position." In the 2007 Workshop. ACM Press, 2008. http://dx.doi.org/10.1145/1600176.1600189.

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Tian, Zhao, Yu-Lin Wei, Xi Xiong, et al. "Position." In MobiCom '17: The 23rd Annual International Conference on Mobile Computing and Networking. ACM, 2017. http://dx.doi.org/10.1145/3129881.3129892.

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Reports on the topic "Position"

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Rubio Cano, Licet Paola, Elvis Gustavo Flórez Álvarez, and Sami Gabriel Coavas-Blanquicet. Position Design. Ediciones Universidad Cooperativa de Colombia, 2023. http://dx.doi.org/10.16925/gcnc.72.

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Abstract:
The purpose of this document is to provide students of the Business Administration program with reference material on the subject of “position design”, considering the importance of being able to understand the subject in a clearer way and its implication in organizational processes. For this purpose, the concept is made clear, covering all the elements inherent to the specification of a position in the organization, as well as identifying the practical differentiation between job and position, the definition of position profile, as well as the advantages and disadvantages that a correct or incorrect position design suggests for the organization, as well as the impact in terms of favoring optimal conditions for the workers in the exercise of their functions and the increase in productivity.
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DiMassa, G., and A. G. Ruggiero. Beam position monitor. Office of Scientific and Technical Information (OSTI), 1988. http://dx.doi.org/10.2172/1118921.

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Gardner C., L. Ratner, and T. Roser. Foil Position Calibration. Office of Scientific and Technical Information (OSTI), 1993. http://dx.doi.org/10.2172/1131609.

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Watkins, Heath A. BPPM Position Coefficients. Office of Scientific and Technical Information (OSTI), 2012. http://dx.doi.org/10.2172/1044096.

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Cumming, J., D. Beavis, R. Betts, et al. More on ZCAL's response: Position dependence, position determination, and collimation effects. Office of Scientific and Technical Information (OSTI), 1989. http://dx.doi.org/10.2172/5199382.

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Cupps, Kim. Position Paper - Business Breakout. Office of Scientific and Technical Information (OSTI), 2011. http://dx.doi.org/10.2172/1114709.

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Di Massa, G., and A. G. Ruggiero. Beam position monitor analysis. Office of Scientific and Technical Information (OSTI), 1989. http://dx.doi.org/10.2172/5912811.

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KRISKOVICH, J. R. Portable Exhauster Position Paper. Office of Scientific and Technical Information (OSTI), 1999. http://dx.doi.org/10.2172/798060.

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Claus, J. Beam Position Monitor for RHIC. Office of Scientific and Technical Information (OSTI), 1988. http://dx.doi.org/10.2172/1119136.

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Shafer, R. Tevatron Beam Position Monitor System. Office of Scientific and Technical Information (OSTI), 1988. http://dx.doi.org/10.2172/1119137.

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