Auswahl der wissenschaftlichen Literatur zum Thema „Geometry proofing“

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Zeitschriftenartikel zum Thema "Geometry proofing"

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Wei, Liu, Affas Huda, and Osmond David. "A Study on the Investigation of Students' Reasoning Skills in Secondary Geometry Proofing." International Journal of Social Science and Human Research 08, no. 03 (2025): 1515–23. https://doi.org/10.5281/zenodo.15030157.

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Geometry reasoning is an ability that helps students build their thinking skills in logic structures, deductive reasoning,analytical reasoning, and problem-solving. Geometric proof is a key indicator to develop those skills. However, writing proofs ischallenging for students, especially those unwilling to work hard. This case study used a mixed method to explore Year 10 students'geometry reasoning abilities in proving geometric questions and aims to find effective strategies for teaching proof. Data werecollected through tests, demonstrated in percentages, and van Hiele’s model rubric wa
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Wang, ChangXian, Mingji Chen, Kai Yao, Xiaolei Zhu, and Daining Fang. "Fire protection design for composite lattice sandwich structure." Science and Engineering of Composite Materials 24, no. 6 (2017): 919–27. http://dx.doi.org/10.1515/secm-2015-0525.

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AbstractComposite lattice structures are of considerable mechanical property and multifunctional design flexibility. However, the relatively low operating temperature of polymer composite prevents its application in high temperature or fire-proofing structures. Here, we propose a type of lightweight composite lattice sandwich structure that is capable of fire proofing as well as load bearing. In our design, the composite lattice sandwich structure is filled with heat insulation materials to interdict the thermal radiation and convection between its two facesheets. The top facesheet of the stru
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Richert, Claire, Hélène Boisgontier, and Frédéric Grelot. "Economic assessment of precautionary measures against floods: insights from a non-contextual approach." Natural Hazards and Earth System Sciences 19, no. 11 (2019): 2525–39. http://dx.doi.org/10.5194/nhess-19-2525-2019.

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Abstract. To limit the losses due to floods, public authorities can try to foster the adoption of private measures aimed at reducing the vulnerability of dwellings. However, the efficacy and cost-efficiency of such measures to reduce material losses are not well-known. In particular, the influence of building and flood characteristics on these variables has not been thoroughly studied. A better understanding of this topic would help identify the measures that are relevant to implement in specific contexts. To address this gap, we examined the effect of building and flood characteristics on the
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Taghavi Zenouz, Parmida. "Bermed Structures’ Thermal Function on Kish Island." European Journal of Architecture and Urban Planning 2, no. 2 (2023): 15–19. http://dx.doi.org/10.24018/ejarch.2023.2.2.28.

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Bermed plans which are categorized as subterranean provide overall cooling and daylight accessibility of the building all-sided. The factuality of bermed structures are investigated closely for deriving particular data for discussion, from the influential role of outdoor temperature to the maintenance and sound proofing, proportionate perspective and natural damages regarding contemporary buildings. The angular space in bermed constructions leaned upward to cover the roof so that it can support the whole building. Such a feature lets the sun radiate from the south and heat inside. Besides, the
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Niazi, Fawad S., and Paul W. Mayne. "Axial pile response of bidirectional O-cell loading from modified analytical elastic solution and downhole shear wave velocity." Canadian Geotechnical Journal 51, no. 11 (2014): 1284–302. http://dx.doi.org/10.1139/cgj-2013-0220.

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The Osterberg cell (O-cell) type of bidirectional pile load testing is a modern full-scale proofing method in the realm of performance-based pile design. It is done at considerable cost, not possible on small- to medium-size projects. An economical approach of utilizing the flexible and approximate analytical solution proposed by Randolph has frequently been adopted in the past for evaluating pile settlements under static, unidirectional, top-down axial compression loading. To extend this solution for O-cell loadings, the following adaptations are warranted: (i) appropriate modifications to ha
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Storodubtseva, T. N., A. A. Aksomitny, and V. A. Saldaev. "The Study of Soundproofing Properties of Wood Polymer-Sand Composite." Solid State Phenomena 284 (October 2018): 993–98. http://dx.doi.org/10.4028/www.scientific.net/ssp.284.993.

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The development of woodworking and furniture industry in the past twentieth century was largely due to the launch of the production of a large group of artificial materials, now classified as wood-polymer composites. Diversity and renewability of the resource base, convenience and cost-effectiveness of wood-polymer composites (WPC) are the main prerequisites for the development of this group of materials. Fillers in thermoplastic wood-polymer composites may be present in a variety of forms. At this stage industrial WPCs are manufactured mainly from small fractions - wood flour and sawdust. Thi
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Popikov, P., Anton Pozdnyakov, and Sergey Malyukov. "JUSTIFICATION OF PARAMETERS OF AUGER WORKING BODIES FOREST FIRE PROOFING MACHINES." Actual directions of scientific researches of the XXI century: theory and practice 8, no. 2 (2020): 17–23. http://dx.doi.org/10.34220/2308-8877-2020-8-2-17-23.

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The paper provides an overview of the research of the working processes of the screw working bodies of technological machines. It is shown that at present such an issue in the theory of auger working bodies as the number of auger turns is necessary, what position of the auger spiral should be in relation to the center, etc. is not completely solved, the solution of these issues can provide increased productivity. In modern conditions, caused by global climatic changes in the world, the requirements for the conditions for the protection of forest zones have increased, which makes it necessary t
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He, Jiajie, Zhiling Zhou, Chuanxin Zhang, et al. "Ultrasparse and omnidirectional acoustic ventilated meta-barrier." Applied Physics Letters 120, no. 19 (2022): 191701. http://dx.doi.org/10.1063/5.0091302.

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Sound barriers, aiming to block the noise propagation, have attracted substantial interest in diverse scenarios such as architectural design, transportation development, and aircraft/automotive engineering. However, conventional sound-proofing barriers in the bulky configuration simultaneously impede the free airflow, which is highly required in the applications calling for ventilation. Although the advances in acoustic metamaterials have opened new routes for designing air-permeable barriers, a well-ventilated and omnidirectional sound barrier with deep-subwavelength thickness remains challen
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Puzach, S. V., T. Yu Eremina, and F. A. Portnov. "Building structures of thermal power plants: analysis of fire resistance limits." Pozharovzryvobezopasnost/Fire and Explosion Safety 31, no. 5 (2022): 33–42. http://dx.doi.org/10.22227/0869-7493.2022.31.05.33-42.

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Introduction. The author analyzes real-life fire resistance limits of metal structures for one building of a thermal power plant. Experimental and computational methods were applied to identify the fire resistance limits of building structures. The temperature setting of the research, conducted to solve the problem, was the same as that of a real fire.Research goal and objectives. The purpose of the analysis is to identify the fire resistance limits of structures comprising the building of a thermal power plant using the method of heat-mass exchange analysis that takes account of conditions of
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Dreißigacker, Volker. "Thermal Battery for Electric Vehicles: High-Temperature Heating System for Solid Media Based Thermal Energy Storages." Applied Sciences 11, no. 21 (2021): 10500. http://dx.doi.org/10.3390/app112110500.

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Thermal energy storage systems open up high potentials for improvements in efficiency and flexibility for power plant and industrial applications. Transferring such technologies as basis for thermal management concepts in battery-electric vehicles allow alternative ways for heating the interior and avoid range limitations during cold seasons. The idea of such concepts is to generate heat electrically (power-to-heat) parallel of charging the battery, store it efficiently and discharge heat at a defined temperature level. The successful application of such concepts requires two central prerequis
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Buchteile zum Thema "Geometry proofing"

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Rahm, Philippe. "The Anthropocene Style." In Advances in Media, Entertainment, and the Arts. IGI Global, 2017. http://dx.doi.org/10.4018/978-1-5225-0666-9.ch014.

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Our study for a new Anthropocene style is to re-evaluate the domestic space today, to rethink their decorative style to meet the new thermal regulations and to invent the architectural language of the interior in the era of the Anthropocene. The ambition is to offer a new style in the History of Decorative Arts after the Regency Style, Louis XV style, the Empire style or Louis Philippe Style among others, to invent the Anthropocene style of today. Using elegant, innovative, discounting art of interior design and decoration to meet the contemporary challenges in sustainable development, reducti
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Konferenzberichte zum Thema "Geometry proofing"

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Cheldelin, Brent, Kosuke Ishii, Gene Wiggs, and Narendra Soman. "Geometry-Based Similarity Assessment: A Method for Mistake-Proofing the Assembly of Complex Products." In ASME 2005 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. ASMEDC, 2005. http://dx.doi.org/10.1115/detc2005-84406.

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Mixed model production is the assembly of multiple products on a common assembly line (see Fig. 1). Companies are moving to mixed-model production environments to: 1) reduce production investment, 2) provide increased customization and respond to globalization, 3) reduce response time and variability (order → delivery), and 4) reduce risk and uncertainty. This transition to a more chaotic production environment increases the chance of using incorrect parts as the number of “similar” parts increases dramatically. Many companies do not have systems in place to identify and prevent usage of the w
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Cheldelin, Brent, and Kosuke Ishii. "Mixed-Model Assembly Quality: An Approach to Prevent Human Errors." In ASME 2004 International Mechanical Engineering Congress and Exposition. ASMEDC, 2004. http://dx.doi.org/10.1115/imece2004-62279.

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Mixed-model production is the manufacture of similar products on a single assembly line (see Fig. 1). This assembly technique is gaining popularity in a multitude of production environments. Benefits of this include: reduced investment costs, reduced fluctuation in production due to customer demand, and smaller production facilities. For some world-class manufacturers, mixed-model production also causes increased commonality amongst products on each assembly line thus leading to reduced inventory levels and number of stock-keeping units (SKU). However, a systematic approach is lacking in most
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Fang, Xiangfan, Fan Zhang, and Hongli Xu. "Resistance Rivet and Insert Welding - A Flexible Manufacturing Technique for the Aluminum/FRPs-Steel Multi-Material Body Structures." In WCX SAE World Congress Experience. SAE International, 2024. http://dx.doi.org/10.4271/2024-01-2071.

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<div class="section abstract"><div class="htmlview paragraph">Automotive body structures are being increasingly made in multi-material system consisting of steel, aluminum (Al) and fiber-reinforced plastics (FRP). Therefore, many joining techniques such as self-piercing riveting (SPR) and adhesive bonding have been developed. On the other hand, OEMs want to minimize the number of joining techniques to reduce the manufacturing complexity. Amount all joining methods, resistance spot welding (RSW) is the most advanced and cost-effective one for body-in-white.</div><div class=
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