Auswahl der wissenschaftlichen Literatur zum Thema „Tents“

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Zeitschriftenartikel zum Thema "Tents":

1

Cheetham, David. „Scriptural reasoning: texts or/and tents?“ Islam and Christian–Muslim Relations 21, Nr. 4 (Oktober 2010): 343–56. http://dx.doi.org/10.1080/09596410.2010.527102.

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Kunz, Thomas H., und Gary F. McCracken. „Tents and harems: apparent defence of foliage roosts by tent-making bats“. Journal of Tropical Ecology 12, Nr. 1 (Januar 1996): 121–37. http://dx.doi.org/10.1017/s0266467400009342.

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ABSTRACTPalmate umbrella tents used by tent-making bats in Trinidad, West Indies, were observed in three species of Neotropical palms, Sabal mauritiiformis, Coccothrinax barbadensis and Mauritia flexuosa. Tents were most common in palm leaves that have supporting petioles angled at 50–70° above the horizontal. The shape and volume of tents is influenced mostly by leaf morphology (leaf width and leaflet length) and age of the tent. Tent-crowns varied from being heart-shaped in S. mauritiiformis, oval or round in C. barbadensis and spade-shaped in M. flexuosa. Leaves in which tents were constructed were most often beneath overhanging vegetation, and were generally free of vegetation below, allowing bats to enter and depart from tents without being impeded by the clutter of adjacent vegetation.Singles and small apparent harem groups of two bat species, Artibeus jamaicensis and Uroderma bilobatum, were captured and observed in tents made from the leaves of S. mauritiiformis and C. barbadensis. No bats were observed in tents constructed in leaves of M. flexuosa. The apparent harem social organization in these and other tent-making bat species suggests that leaves modified into tents may provide critical and defendable resources that promote the evolution of polygyny. This hypothesis is based on the observed patchy distribution of suitable palm trees, the inappropriateness of many palm leaves as potential tents and the resultant architecture provided by palmate umbrella tents. We suggest that tent-making is an adult male behaviour.
3

Aronson, Lisa, und Labelle Prussin. „Present Tents“. Women's Review of Books 13, Nr. 12 (September 1996): 8. http://dx.doi.org/10.2307/4022444.

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Hadimioglu, Çagla. „Black Tents“. Thresholds 22 (Januar 2001): 18–25. http://dx.doi.org/10.1162/thld_a_00424.

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JOHNSON, NICHOLAS. „lntracervical Tents“. Obstetrical & Gynecological Survey 44, Nr. 6 (Juni 1989): 410–20. http://dx.doi.org/10.1097/00006254-198906000-00002.

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6

Lawrence, Ghislaine. „Laminaria tents“. Lancet 360, Nr. 9331 (August 2002): 497. http://dx.doi.org/10.1016/s0140-6736(02)09688-5.

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Walker, Paul. „Tents and Monuments“. Fabrications 25, Nr. 3 (02.09.2015): 304–21. http://dx.doi.org/10.1080/10331867.2015.1094845.

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8

Leyte, Jerry C., und Charles F. Forney. „Controlled Atmosphere Tents for Storing Fresh Commodities in Conventional Refrigerated Rooms“. HortTechnology 9, Nr. 4 (Januar 1999): 672–75. http://dx.doi.org/10.21273/horttech.9.4.672.

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A plastic tent was designed and constructed for the controlled atmosphere (CA) storage of small quantities of fresh produce. The CA tent is suspended from pallet racking in a standard cold room and can hold two standard pallets stacked 6 feet high with produce. Tents are sealed with two air tight zippers and a small water trough, resulting in an airtight chamber that successfully maintains CA storage environments. The CA tents are easily set up and removed to allow flexibility in use of storage space. To provide efficient use of storage space tents can be stacked two or three high on pallet racking. Tents are easily loaded and unloaded by a single person using a forklift. CA tents provide an economical alternative to traditional CA rooms for the storage of small quantities of fresh produce under CA environments.
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Rahmani, Assist Prof Abdolrazagh, Associate Prof Eshagh Rahmani und ,. MA student ,. Zahra Sakhaei manesh. „The impact of the quartets Omar Khayyam in the poetic experience of the Iraqi poet Zahawi“. ALUSTATH JOURNAL FOR HUMAN AND SOCIAL SCIENCES 226, Nr. 3 (01.09.2018): 475–90. http://dx.doi.org/10.36473/ujhss.v226i3.106.

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The universality of literature has had great effects on literary unity. In this area, the effects of Arabic and Persian reflect the development of in-kind modeling of literary and literary overlap and become a wide field of comparative studies. Khayyam is considered to be one of the greatest men of the fifth century AH and has left a great literary imprint in the world of art and literature. One of the most famous of its variants is the reference to its quartets, which seem to have conflicting views of the universe and the Creator at first sight. This duplication, which we find in the quartets of the tents has produced many studies over the ages, including those Zahawi contemporary Iraqi poet, who was affected by the tents clearly. We find this effect when the quartets of the tents express the prose and the system, and also when it regulates its quadrilateral. We find that his idea inspired much of the quartets of tents. Here is the importance of studying the comparison between them through the quartets. And their cultural influences between them and this research includes common aspects between the quartets of these poets. The most important results we have reached in this study can be summarized as follows: Al-Zahawi was influenced by his quartets of the ideas and quartets of tents. The tents look at life and the universe with a pessimistic look and call for forgetting the melancholy of the world and its depression, while also drinking alcohol and Zahawi. The Arabization of the quartets of the tents by the Zahawi and the similarity of the contents of their quartets due to the cultural context common to them as a result of the knowledge of the Arab world on the ideas of tents. Such study confirms the connection and friction of both Arabic and Persian cultures.
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KOTENKO, Irina A. „HIP-ROOFS OF SAMARA HISTORICAL BUILDINGS“. Urban construction and architecture 9, Nr. 1 (15.03.2019): 92–100. http://dx.doi.org/10.17673/vestnik.2019.01.15.

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The article explores one of the characteristic final elements of the roofs of historic residential and civil buildings - the tent. The variety of forms and their varieties that appeared in Samara in the late XIX - early XX century, in the heyday of interest in folk traditions and stylisations in the spirit of national neoromanticism, is noted. For the first time, the author classifies the tent completion forms common in the city in the form of simple four sided tents, hubcaps, tents, epanches on the roofs of houses, as well as with various dormer windows; tents on corner turrets, compositionally complex tents with ornaments in the form of keel-shaped zakomars, stamped inserts, with side obelisks, hip overlays and cross decorations, cubic, barrel-shaped and multitiered tents. The author emphasizes the special significance of the tent in town planning, the composition of buildings and the recognition of the appearance of the Volga historical city of Samara. The purpose of the article is to study the characteristic features of the identity of the city, its architecture, in particular the tent elements of historical buildings.

Dissertationen zum Thema "Tents":

1

Bunn, Stephanie Joan. „The house of meaning : tents and tent dwelling among the Kyrgyz of Central Asia“. Thesis, University of Manchester, 2000. http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.504496.

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The House of Meaning is a study of the perception of the environment and the organisation of space in the boz üy (tent) of the nomadic Kyrgyz. It examines the boz üy as a core metaphor for Kyrgyz nomadic life and as a matrix for the social organisation of that life. I begin this dissertation with a review of Central Asian nomadic history, considering the age of the early nomads, the 'Orientalism' debate, oral history, lineage and tribal relations, and the Kyrgyz oral epic Manas. I then pose the question, "What is a nomad?" and suggest that in order to understand Kyrgyz pastoral nomadism, we need to consider the importance of movement, human-animal relations and the nomadic philosophy of nature. Following this, I consider learning and tradition, focusing on the importance of the family- and home-based nature of Kyrgyz learning, and on the importance the Kyrgyz place on non-declarative learning for the upbringing of children. Then I examine Kyrgyz shyrdak carpets, considering them in terms of the criteria of beauty, skill, form and meaning, and the context in which they are made. Finally, I examine the Kyrgyz boz üy, the felt tent itself, and, through a consideration of form and space in vernacular architecture, attempt to distil the multi-faceted significance of this seemingly simple form of dwelling. I consider geometry, the notion of 'organic' in vernacular architecture, different anthropological approaches to space in architecture, homeliness and the unfolding relationship between the person, the house and the universe. The Kyrgyz are a nomadic people. Their home moves with them and yet it is a still place, the focus and integrating force of their lives. The Kyrgyz boz üy is a 'house of meaning' because it is a generating point for social forces and a centre for learning and change. It is both a microcosm of the universe and a macrocosm of the person. It provides an essential image of the synthesis and synergy of the lives of a nomadic people.
2

Homan, Michael M. „To your tents, O Israel! : the terminology, function, form, and symbolism of tents in the Hebrew Bible and the ancient Near East /“. Diss., Connect to a 24 p. preview or request complete full text in PDF format. Access restricted to UC campuses, 2000. http://wwwlib.umi.com/cr/ucsd/fullcit?p9975878.

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3

Saltzman, Adam. „Beyond the Tents: Community Spaces in Post-disaster Temporary Settlements“. University of Cincinnati / OhioLINK, 2011. http://rave.ohiolink.edu/etdc/view?acc_num=ucin1306500942.

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Puthurloganathan, Karthigeyan. „Design of closed loop deployable structures for tents and masts“. [Gainesville, Fla.] : University of Florida, 2004. http://purl.fcla.edu/fcla/etd/UFE0003540.

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Poschl, Ruth A. „Modelling the thermal comfort performance of tents used in humanitarian relief“. Thesis, Loughborough University, 2017. https://dspace.lboro.ac.uk/2134/25131.

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Globally, billions of people live in temporary shelters due to poverty, and every year millions of refugees and disaster affected individuals are forced to live in temporary shelters such as Standardised Emergency Relief Tents (SERTs). The Office of the United Nations High Commissioner for Refugees (UNHCR) has spent millions of US dollars annually on tents, blankets and mattresses. The tents used are designed as temporary accommodation; in reality they sometimes become homes for a number of years when the return to permanent shelter is slow or unaffordable. While the SERT aims to adhere to humanitarian standards for basic shelter provision, this type of construction is ultimately designed to be quick to deploy, using lightweight and cost effective materials. Consequently, SERTs have been known to provide an extremely thermally uncomfortable place to live in different climates, requiring stove heating in cold climates and being impractical to keep cool in hot climates. Little research has been done to determine whether this situation could be improved. The thermal comfort performance of a real SERT in a known UK climate was investigated, to explore the science behind the experience of real users. Measurements were made in the SERT over a 6 month period and the observations quantitatively analysed in order to characterise and explain the tent s response to a range of outdoor conditions. The predicted thermal comfort in the SERT was calculated using a variety of suitable metrics. The data collected in a UK climate was used to develop and validate computational models of the SERT, which have applications in any world climate. Based on quantitative analysis of the SERT models performances in cold, temperate and hot climates, conclusions were drawn regarding the suitability of the SERT for use in each climate. The computational models of the SERT were modified in geometry and material, with the aim of improving the predicted thermal comfort in the SERT in hot and cold climates. The effectiveness of these design changes was analysed, and recommendations for improvements to the SERT were made. These recommendations could be used by SERT manufacturers and key humanitarian organisations in order to facilitate design modifications.
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Alghamdi, Mohammed Alaysan. „Improving the thermal behavior of the pilgrimage tents in Mecca, Saudi Arabia“. Thesis, McGill University, 1987. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=63923.

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Al-Ghamdi, Mohammad S. „Assessment and improvement on thermal conditions inside pilgrimage tents at Makkah, Saudi Arabia“. Thesis, University of Newcastle Upon Tyne, 1993. http://hdl.handle.net/10443/403.

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The overheating problem experienced during Islamic pilgrimage in recent years has caused serious thermal discomfort and a number of mortalities among pilgrims coming from various parts of the world to perform the annual event at Makkah in Saudi Arabia. This research aims to investigate the real dimension of thermal discomfort experienced inside the pilgrimage tents. The back bone of this task was the data collected from the field investigations during the Hajj season of 1989, including climatic measurements taken inside the tents for the first time during the Hajj season. The investigations also included a subjective evaluation for internal thermal conditions by the pilgrims from Europe, the Middle East, and South East Asia. This research also attempts to identify passive and natural cooling guidelines that are applicable to the tent's design. The author tested sets of experiments aimed to measure the thermal effects of some of the natural cooling techniques on pilgrimage tents at Makkah. The research concludes with design guidelines to improve the thermal quality of the pilgrimage tent. The recommended guidelines were based on the experimental results and practical examples of cooling strategies applied to tents in similar hot climates.
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Humanson, Richard. „Optimering av lättvikt ramkonstruktion till räddningstält. : Optimization of a lightweight frame for rescue tents“. Thesis, Karlstads universitet, Fakulteten för teknik- och naturvetenskap, 2011. http://urn.kb.se/resolve?urn=urn:nbn:se:kau:diva-7602.

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9

Meng, Xiaomin. „Influence of yarn and fabric construction parameters on the performance of cotton/dyneema fabrics for tent applications“. Thesis, Georgia Institute of Technology, 2000. http://hdl.handle.net/1853/8622.

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Apedo, Komla Lolonyo. „Numerical modelling of inflatable structures made of orthotropic technical textiles : application to the frames of inflatable tents“. Thesis, Lyon 1, 2010. http://www.theses.fr/2010LYO10145.

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L'objectif principal visé par cette thèse est de modéliser les poutres gonflables en textiles techniques orthotropes. Les approches statiques font l'objet de ce rapport. Avant d'aborder ce problème, nous avons été amenés à identifier tous les paramètres qui ont un effet direct sur les propriétés mécaniques effectives de ces composites. Ainsi, nous avons développé un modèle micro mécanique de prédiction de ces propriétés mécaniques. Le modèle proposé est basé sur l’analyse d'un volume élémentaire représentatif (VER) prenant en compte non seulement les propriétés mécaniques et la. fraction de volume de chaque phase dans le VER mais également leur géométrie et leur architecture. Chaque fil dans le VER a été modélisé comme un matériau isotrope transverse (contenant les fibres et la résine). La méthode dite d’assemblage de cylindres a été utilisée pour l’homogénéisation au niveau des fils. Une deuxième homogénéisation est ensuite réalisée. Elle prend en compte la fraction de volume de chaque constituant (fils de chaîne, fils de trame et résine non prise en compte dans les fils). Le modèle a été validé par des résultats expérimentaux existant dans la littérature. Une élude paramétrique a été menée afin d'étudier les effets des divers paramètres géométriques et mécaniques sur ces propriétés mécaniques. Dans l'analyse structurale, un modèle poutre gonflable 3D de Timoshenko en tissu orthotrope a été proposé. Il prend en compte les non-linéarités géométriques et l'effet de la force suiveuse générée par la pression de gonflage. Les équations d'équilibre non-linéaires dérivent du principe des travaux virtuels en configuration lagrangienne totale. Dans une première approche, une linéarisation a été faite autour de la configuration de référence précontrainte pour obtenir les équations adaptées aux problèmes linéaires. A titre d'exemple, le problème de flexion plane a été abordé. Quatre cas de conditions aux limites ont été traités et les résultats obtenus améliorent les modèles existants dans le cas de tissu isotrope. Les charges de plissage ont été également proposées dans chaque cas traité. Dans une deuxième approche, les équations non-linéaires ont été discrétisées par la méthode des éléments finis. Deux types de solutions ont été alors proposées : les solutions aux problèmes éléments finis linéaires obtenues par une linéarisation des équations discrétisées autour de la configuration de référence précontrainte et les solutions aux problèmes éléments finis non-linéaires réalisées en adoptant une méthode Quasi-Newton sous sa forme incrémentale. A titre d’exemple, la flexion d’une poutre encastrée-libre a été étudiée et les résultats améliorent les modèles théoriques. Le modèle éléments finis non-linéaire a été comparé favorablement à un modèle éléments finis coque mince 3D. Une étude paramétrique a été ensuite effectuée. Elle a porté sur l'influence des propriétés mécaniques et sur de la pression de gonflage sur la réponse de la poutre. Les solutions éléments finis linéaires se sont avérées proches des résultats théoriques linéarisés d'une part et les résultats du modèle éléments finis non-linéaire se sont avérés proches des résultats du modèle linéaire dans le cas des propriétés mécaniques élevées alors que le modèle éléments finis non-linéaire est indispensable pour modéliser ces poutres lorsque les propriétés mécaniques du tissu sont faibles
The main objective of this thesis was to model inflatable beams made frorn orthotropic woven fabric composites. The static aspects were investigated in this report. Before planning to develop these models, it was necessary to know all the parameters which have a direct effect on the effective mechanical properties these composites. Thus, a micro­ mechanical model was performed for predicting the effective mechanical properties. The proposed model was based on the analysis of the representative volume element (RVE). The model took into account not only the mechanical properties and volume fraction of each components in the RVE but also their geometry and architecture. Each yarn in the RVE was modelled as a transversely isotropic material (containing fibres and resin) using the concentric cylinders model (CCIVI). A second volumetric averaging which took into account the volume fraction of each constituent (warp yarn, weft yarn and resin), was performed. The model was validated favorably against experimental available data. A parametric study was conducted in order to investigate the effects of various geometrical and mechanical parameters on the elastic properties of these composites. ln the structural analysis, a 3D Timoshenko airbeam with a homogeneous orthotropic woven fabric (OWF) was addressed. The model took into account the geometrical nonlinearities and the inflation pressure follower force effect. The analytical equilibrium equations were performed using the total Lagrangian form of the virtual work principle. As these equations were nonlinear, in a first approach, a linearization was performed at the prestressed reference configuration to obtain the equations devoted to linearized problems. As example, the bending problem was investigated. Four cases of boundary conditions were treated and the deflections and rotations results improved the existing models in the case of isotropic fabric. The wrinkling load in every case was also proposed. In a second approach, the nonlinear equilibrium equations of the 3DTimoshenko airbeam were discretized by the finite element method. Two finite element solutions were then investigated : finite element solutions for linearized problems which were obtained by the means of the linearization around the prestressed reference configuration of the nonlinear equations and nonlinear finite element solutions which were performed by the use of an optimization algorithm based on the Qua.si-Newton method. As an example, the bending problem of a cantilever inflated beam under concentrated load was considered and the deflection results improve the theoretical models. As these beams are made from fabric, the beam models were validated through their comparison with a 3D thin-shell finite element model. The influence of the material effective properties and the inflation pressure on the beam response was also investigated through a parametric study. The finite element solutions for linearized problems were found to be close to the theoretical linearized results. On the other hand, the results for the nonlinear finite element model were shown to be close to the results for the linearized finite element model in the case of high mechanical properties and the non linear finite element model was used to improve the linearized model when the mechanical properties of the fabric are low

Bücher zum Thema "Tents":

1

Berry, Lynne. Duck tents. New York: Henry Holt and Co., 2009.

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Oliver, George S. The tents. Grand Rapids, MI: ColorHouse Graphics, 2009.

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Oliver, George S. The tents. Bloomington, IN: AuthorHouse, 2007.

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Mount, Gail. Pitching tents. Huntsville, Tex: Texas Review Press, 2005.

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Hyman, Frieda Clark. Tents of Kedar. Jerusalem: Gefen Pub. House, 1995.

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Adler, Frances Payne. Raising the tents. Corvallis, Or: CALYX Books, 1993.

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Vita, Steven. The heart of tents. Chicago: Throne Pub., 1991.

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Blair, Eric. Tents of the righteous. Kibworth Beauchamp: Matador, 2014.

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Salzman, Philip Carl. Black tents of Baluchistan. Washington, DC: Smithsonian Institution Press, 2000.

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Raswan. Black Tents. Taylor & Francis Group, 2015.

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Buchteile zum Thema "Tents":

1

Sucharov, Mira. „Tents“. In Borders and Belonging: A Memoir, 147–55. Cham: Springer International Publishing, 2020. http://dx.doi.org/10.1007/978-3-030-53732-6_12.

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Russ-Bovelino, Andreas. „Oxygen Tents“. In Caramel, 39. Vienna: Springer Vienna, 2012. http://dx.doi.org/10.1007/978-3-7091-0512-2_6.

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Ostriker, Alicia. „18. Entering the Tents“. In Dwelling in Possibility, herausgegeben von Yopie Prins und Maeera Shreiber, 263–72. Ithaca, NY: Cornell University Press, 2018. http://dx.doi.org/10.7591/9781501718175-020.

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Cochran, Judith. „Life in the Tents“. In Routledge Library Editions: Egypt, Vol10:48—Vol10:84. London: Routledge, 2021. http://dx.doi.org/10.4324/9780203079140-134.

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„Texts or Tents?“ In Ways of Meeting and the Theology of Religions, 177–96. Routledge, 2016. http://dx.doi.org/10.4324/9781315547602-8.

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Mullett, Margaret. „Tents in Space, Space in Tents“. In Spatialities of Byzantine Culture from the Human Body to the Universe, 460–81. BRILL, 2022. http://dx.doi.org/10.1163/9789004523005_027.

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„Con tents“. In Kill for Peace, vii. University of Texas Press, 2013. http://dx.doi.org/10.7560/745421-toc.

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„LOVE IN THE DESERT“. In Black Tents, 58–64. Routledge, 2015. http://dx.doi.org/10.4324/9781315828725-10.

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„“THE COMMANDER OF OUR CAMEL-SADDLES”“. In Black Tents, 65–71. Routledge, 2015. http://dx.doi.org/10.4324/9781315828725-11.

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„DEATH IN THE DESERT“. In Black Tents, 72–81. Routledge, 2015. http://dx.doi.org/10.4324/9781315828725-12.

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Konferenzberichte zum Thema "Tents":

1

Muench, Paul L., David Bednarz und Nicholas A. Krupansky. „Sequence risk and bond tents“. In Unmanned Systems Technology XXIII, herausgegeben von Paul L. Muench, Hoa G. Nguyen und Brian K. Skibba. SPIE, 2021. http://dx.doi.org/10.1117/12.2588341.

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Yang, Hao, Yingni Jiang, Jingbo Liu und Zhengguo Gong. „Research Status of Thermal Environment of Tents“. In 6th International Conference on Electronic, Mechanical, Information and Management Society. Paris, France: Atlantis Press, 2016. http://dx.doi.org/10.2991/emim-16.2016.266.

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Imam, Ayman, und Mohammad Alamoudi. „Mina: the city of tents origination and development“. In International Conference Virtual City and Territory. Roma: Centre de Política de Sòl i Valoracions, 2014. http://dx.doi.org/10.5821/ctv.8014.

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The city of Mina in Saudi Arabia, or “tent city” as it is known, is one of the most important annual assembly areas for Muslims from all over the world to perform the fifth pillar of Islam, the pilgrimage (Hajj). During early times, only few thousand pilgrims used to come to perform the Hajj. Recently, Because of the improvements in the social, economic and security-related spheres on the local regional and international planes, the number of pilgrims gradually began to increase. However, during the last few Hajj seasons, the number of pilgrims has reached nearly two millions. This vast number of pilgrims in a limited geographic area always creates a variety of problems that open different issues and topics to investigate. In response of this increase, the local authorities of Makkah has developed and urbanized Mina during the years before, the most of those developments were in last two decades. The objective of this paper is to document the history of the urban development of Mina during the past until now especially last tow decades. The paper will be divided into three parts: the first explains the origination and goals of the Hajj and what are the devotional works the pilgrims perform during the week of Hajj. The second shows the urban development that occurred in Mina and what were the main factors and reasons those have influenced on these developments. And the third will be a general discussion about the current situation of Mina and its unique urban form.
4

Liu, Jingbo, Yingni Jiang und Xiao Ma. „A Shading-technology to Improve the Thermal Environment of Tents“. In 2016 6th International Conference on Mechatronics, Computer and Education Informationization (MCEI 2016). Paris, France: Atlantis Press, 2016. http://dx.doi.org/10.2991/mcei-16.2016.199.

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5

Findeisen, Elena, Rachel Harwini Harbantomo Tjokropranoto, Jeroen Rijnenberg, Jos Lenssen und Angele Reinders. „Integration of flexible photovoltaic modules on top of inflatable tents“. In 2016 IEEE 43rd Photovoltaic Specialists Conference (PVSC). IEEE, 2016. http://dx.doi.org/10.1109/pvsc.2016.7750144.

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6

Yang, Qian, Xiong Zhong, Xiangfei Lv, Xiuguo Xiao und Ziquan Li. „The Formation of Cantor Set Based on Tents Mapping and Baker Mapping“. In 2011 International Conference on Computational and Information Sciences (ICCIS). IEEE, 2011. http://dx.doi.org/10.1109/iccis.2011.17.

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7

Yang, Baoqing, Yi Qin, Jinming Zhang und Zhihua Luo. „The Mechanical Properties and Wearability of the Jacquard Fabrics with Differential Density for Tents“. In 2015 Asia-Pacific Energy Equipment Engineering Research Conference. Paris, France: Atlantis Press, 2015. http://dx.doi.org/10.2991/ap3er-15.2015.55.

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8

St. Laurent, Brandyce S. „Cow-baited tents as a tool to monitor and control malaria vectors in Cambodia“. In 2016 International Congress of Entomology. Entomological Society of America, 2016. http://dx.doi.org/10.1603/ice.2016.115477.

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9

Cretskens, Pieter, Gustaaf Melis und Koen Lenie. „Dismantling of Alpha Contaminated Obsolete Installations and Glove Boxes on the IRMM Site in Geel (Belgium)“. In The 11th International Conference on Environmental Remediation and Radioactive Waste Management. ASMEDC, 2007. http://dx.doi.org/10.1115/icem2007-7134.

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At the Institute for Reference Materials and Measurements (European commission, Joint Research Centre, IRMM) a dismantling campaign of obsolete installations and glove boxes has been carried out in 2005. There were various reasons for their removal. Some large installations did not meet modern safety standards, other installations were worn out and expected to cause a radioactive contamination risk in the future. The main goal was to create as less waste as possible by extensive contamination checks and by decontamination if necessary. For the glove boxes, decontamination was not possible. A controlled area was set up around the installation to be dismantled in order to prevent spreading of contamination from dust and dirt. This was only possible for the “minor” contaminated installations. The dismantling campaign of the glove boxes was carried out by using tents of two types depending the contamination inside the glove boxes. The most common glove boxes were dismantled in a tent constructed with hard surfaced polycarbonate plates (ventilated cell). For glove boxes with higher contamination, the same principle was used but with a second “glove box tent” inside (ventilated glove tent). The purpose of this project was to learn from the experience of this campaign which gave the ability to make estimates of future radioactive waste or classic waste that could be expected from dismantled installations.
10

Lu, Shengnan, Dimiter Zlatanov, Xilun Ding, Rezia Molfino und Matteo Zoppi. „A Novel Deployable Mechanism With Two Decoupled Degrees of Freedom“. In ASME 2013 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/detc2013-13187.

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This paper presents a novel deployable mechanism. Unlike most deployable structures, which have one degree of freedom, the proposed device can be deployed and compacted independently in two directions. This widens the range of its potential applications, including flexible industrial fixtures and deployable tents. The mechanism’s basic deployable unit is assembled by combining a scissor linkage and a Sarrus linkage. The kinematic properties of the two component linkages and the combined unit are analyzed. The new deployable mechanism is obtained by linking the deployable units. The Mobility and kinematics are analyzed. The relationship between the degree of overconstraint and the number of deployable units is derived. The magnification ratio is calculated as a function of the geometry of the link and the number of deployable units. Finally, kinematic simulations are performed to validate the proposed design and analysis.

Berichte der Organisationen zum Thema "Tents":

1

Cheng, Yung-Sung. Characterization of Emissions from Heaters Burning Leaded Diesel Fuel in Unvented Tents. Fort Belvoir, VA: Defense Technical Information Center, Juni 1999. http://dx.doi.org/10.21236/ada373464.

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2

Davis, Stephen C., und Jennifer L. Kalberer. Fire Resistant Composite Closed Cell Foam and Nonwoven Textiles for Tents and Shelters. Fort Belvoir, VA: Defense Technical Information Center, Januar 2006. http://dx.doi.org/10.21236/ada459819.

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3

Lammers, Peter J., Jay D. Harmon, Lyle T. Rossiter und Mark S. Honeyman. Demonstrating Farrowing Alternatives for Small-Farms: Insulated Tents for Sows and Pigs, Year One. Ames (Iowa): Iowa State University, Januar 2014. http://dx.doi.org/10.31274/ans_air-180814-1205.

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4

Lammers, Peter J., Jay D. Harmon, Lyle T. Rossiter und Mark S. Honeyman. Demonstrating Farrowing Alternatives for Small-Farms: Insulated Tents for Sows and Pigs, Project Summary. Ames (Iowa): Iowa State University, Januar 2015. http://dx.doi.org/10.31274/ans_air-180814-270.

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5

Carlson, Damian, Jennifer De Lurio, Andrew Furman, Randy Hulshizer und Marcus Lynch. PCORI COVID-19 Scan: Negative-Pressure Tents, Reusable Silicone Respirators (July 23-August 5, 2020). Patient-Centered Outcomes Research Institute (PCORI), August 2020. http://dx.doi.org/10.25302/bcs6.2020.8.

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6

Mak, K. S. Adaptive Tests. Fort Belvoir, VA: Defense Technical Information Center, August 1988. http://dx.doi.org/10.21236/ada199446.

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7

Brown K. A., J. W. Glenn, A. Musolino, A. Stevens und R. Thern. AGS Shield Tests. Office of Scientific and Technical Information (OSTI), November 1988. http://dx.doi.org/10.2172/1131575.

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8

Heer, T. STK Bladestore Tests. Office of Scientific and Technical Information (OSTI), November 2003. http://dx.doi.org/10.2172/15013634.

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9

Poirier, M. R., P. R. Burket und M. R. Duignan. MST Filterability Tests. Office of Scientific and Technical Information (OSTI), März 2015. http://dx.doi.org/10.2172/1177887.

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10

Allwein, Gerard, und Ira S. Moskowitz. Double Rail Tests. Fort Belvoir, VA: Defense Technical Information Center, Juli 2009. http://dx.doi.org/10.21236/ada505365.

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