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Titlebook: Architecture and Mathematics from Antiquity to the Future; Volume I: Antiquity Kim Williams,Michael J. Ostwald Book 2015 Springer Internat

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期刊全稱Architecture and Mathematics from Antiquity to the Future
期刊簡(jiǎn)稱Volume I: Antiquity
影響因子2023Kim Williams,Michael J. Ostwald
視頻videohttp://file.papertrans.cn/162/161288/161288.mp4
發(fā)行地址The most complete anthology addressing a broad panorama of topics regarding relationships between architecture and mathematics.Represents the state of the art of multidisciplinary scholarship in archi
圖書封面Titlebook: Architecture and Mathematics from Antiquity to the Future; Volume I: Antiquity  Kim Williams,Michael J. Ostwald Book 2015 Springer Internat
影響因子.Every age and every culture has relied on the incorporation of mathematics in their works of architecture to imbue the built environment with meaning and order. Mathematics is also central to the production of architecture, to its methods of measurement, fabrication and analysis. This two-volume edited collection presents a detailed portrait of the ways in which two seemingly different disciplines are interconnected. Over almost 100 chapters it illustrates and examines the relationship between architecture and mathematics. Contributors of these chapters come from a wide range of disciplines and backgrounds: architects, mathematicians, historians, theoreticians, scientists and educators. Through this work, architecture may be seen and understood in a new light, by professionals as well as non-professionals..Volume I covers architecture from antiquity through Egyptian, Mayan, Greek, Roman, Medieval, Inkan, Gothic and early Renaissance eras and styles. The themes that are covered range from symbolism and proportion to measurement and structural stability. From Europe to Africa, Asia and South America, the chapters span different countries, cultures and practices.
Pindex Book 2015
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Information Levels and Barriersn reserved for art and architecture. In this paper I will show several examples of the existence of three levels of interaction between mathematics and art: the presence of a mathematical substrate in various archaeological and artistic relics from antiquity; the conscious or unconscious application
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Information Levels and Barriersns; the Romans, masters of engineering; and the Middle Ages. In the years immediately preceding the Renaissance, the qualitative view of neo-Platonic metaphysics slowly gave way to a more quantitative view of reality that would eventually allow science to progress at a steady pace. This transition w
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Information Levels and Barriers term “function” as purely meeting the primary task, but for past eras a structure not only had to be of material usefulness but also psychologically beneficial and intellectually fruitful. In Pre-Industrial Revolution religious structures geometry was an important tool, as was the choice of forms a
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https://doi.org/10.1007/978-3-319-28755-3 Maya civilization rose to a cultural florescence between the years 600 and 800 ., and died out between 800 and 900 .. In order to gain an interpretative perspective on the fractal analysis of complex geometry and mathematics of Mesoamerican architecture, this paper contemplates two procedures to de
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https://doi.org/10.1007/978-3-319-28755-3 pyramids and buildings. The intention of this project is to look at Teotihuacan as an organized urban center in order to see what geometric systems are present in the layout of the area. As Teotihuacan was developed over a long period of time, did the builders and city planners have an overall geom
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Information Levels and Barriersd measures related to binary and decimal series. The Harappa culture’s use of kiln-fired bricks provides a link between the “frozen” geometry unearthed by archaeologists and the earliest written geometry, a guide to constructing Vedic brick altars. The Sulbasutras and the Sathapatha Brahmana contain
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