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Session organisers: Agata Ulanowska, Karina Grömer, Joanne Dyer and Ina Vanden Berghe
Nearly ten years have passed, since E. Andersson Strand, K.M. Frei, M. Gleba, U. Mannering, M.-L. Nosch and I. Skals published the paper ‘Old Textiles – New Possibilities’ (EJA 13.2, 2010), in which they presented a comprehensive overview of integrated, multidisciplinary approaches to studies on ancient textiles. Now, such approaches have become standard in textile archaeology, and new, emerging technologies are making their contributions felt.
In this session we aim to update this first overview by Andersson Strand et al., by presenting the current state-of-the-art, and by highlighting these new methods, as well as new possibilities in textile research. We welcome papers referring to a wide geo-chronological framework, starting from c. 4th millennium BCE to c. 500 CE, and covering a large area, from Europe and the Mediterranean, to the Near East and Asia.
We are particularly interested in all papers discussing the following aspects of textile archaeology:
– Human modifications of fibrous plants and woolly animals (e.g. analyses of archaeobotanical and archaeozoological data, patterns of transmission of plants and animals);
– Research on raw materials (e.g. conventional and improved analytical tools like SEM, wool quality measurements, isotopic tracing, proteomics, sheep DNA, metal thread analysis, processing of fibres, etc.);
– Textile analysis (e.g. splicing vs. spinning, textile imprints, composition of fabrics, creation of pattern types, etc.);
– Dyes and dye-stuffs (e.g. identification of dye-stuffs and composition of dyes; destructive and non-destructive methods);
– Research on textile tools (e.g. use-wear, geometry of tools vs. their functionality);
– Socio-economic background of textile production (e.g. craft specialization, production modes, patterns of transmission of skills);
– Big data in textile archaeology (e.g. statistical methods; critical evaluation of data and methods);
– Multidisciplinary research projects in textile archaeology; integrating data from different disciplines into interpretations and narratives.
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Ekonomi, İdari ve Sosyal Bilimler Araştırmaları, 2022
Metaverse, fiziksel gerçekliği dijital sanallıkla birleştiren çok kullanıcılı bir evrendir. Metaverse terimi ilk olarak 1992’de yayınlanan Neal Stevenson’ın bilim kurgu romanı Snow Crash’te ortaya çıkmıştır. Romanda kullanıcıların gözlük ve kulaklık aracılığıyla birbirine bağlanabileceği paralel bir sanal gerçeklik (Virtual Reality – VR) evreni temsil edilmiştir. Metaverse’de her türlü insan-bilgisayar etkileşimini (Human-Computer Interface - HCI) gerçekleştirmek için yeni arayüzler kullanılmaktadır. Metaverse, sanal gerçeklik, artırılmış gerçeklik (Augmented Reality – AR) ve üç boyutlu (3D – Three Dimensional) teknolojilerin yakınsamasına dayanmaktadır. Bu ortamda insanlar arkadaşları ile gezebilir, konsere gidebilir, oyun oynayabilir ve konferanslara katılabilir.
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Tamkang Journal of Mathematics, 2015
In this paper, by using the theory of generalized convexity functions we introduce and prove monotonicity of sequences of the forms $$ \left\{\left(\prod\limits_{k=1}^nf\left({a_k\over a_n}\right)\right)^{1/n}\right\},\quad \left\{\left(\prod\limits_{k=1}^nf\left({\varphi(k)\over\varphi(n)}\right)\right)^{1/\varphi(n)}\right\}, $$ $$ \left\{{1\over n}\sum_{k=1}^nf\left({a_n\over a_k}\right)\right\}\quad\text{or}\quad \left\{{1\over\varphi(n)}\sum_{k=1}^nf\left({\varphi(n)\over\varphi(k)}\right)\right\}, $$ where $f$ belongs to the classes of $AG$-convex (concave), $HA$-convex (concave), or $HG$-convex (concave) functions defined on suitable intervals, $\{a_n\}$ is a given sequence and $\varphi$ is a given function that satisfy some preset conditions. As a consequence, we obtain some generalizations of Alzer type inequalities.
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Journal of the American College of Cardiology, 2012
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Diversity, 2021
The continental shelf of Brazil is home to a wide range of lobster species, with varying body size, color, habitat preference, and geographic and bathymetric distribution. Spiny lobsters (Panulirus) and slipper lobsters (Scyllaridae) are exploited for export and for the domestic market. Deep sea lobsters (Nephropidae and Polychelidae) have no commercial potential, and little is known about their biology. In this review, we identified 24 lobster species from benthic ecosystems off Brazil (Palinuridae 25%, Scyllaridae 29%, Nephropidae 25%, Polychelidae 17%, Enoplometopidae 4%). We designed a simplified theoretical scheme to understand the role of lobsters in the ecosystem, based on available evidence of distribution, biodiversity, life cycle, connectivity, and abundance. Finally, we propose a theoretical scheme of trophic top-down control, with interactions between a large decapod (spiny lobster), a demersal predator (red snapper), an apex predator (small tuna), benthic invertebrates ...
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XI Coloquio Internacional Educação e Conteiporaneadade, 2018
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Revista de Ciências Agrárias, 2021
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鄧紹光, 2014
How do the churches meditate the value of the family? What value of the family do the churches meditate?
2014年5月15日刊於網上版《時代論壇》:https://christiantimes.org.hk/Common/Reader/News/ShowNews.jsp?Nid=83377&Pid=0&Version=0&Cid=150&Charset=big5_hkscs
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Legume Research- An International Journal, 2024
Background: Phosphatidyl ethanolamine binding protein (PEBP) plays an important role in the formation of flowers. To identify the PEBP gene family of alfalfa in blossom, the PEBP gene family was selected from the transcriptome database of alfalfa with bioinformatics analysis, for their protein properties, functional domains, evolutionary relationships and expression patterns. Methods: A BLASTP search using Arabidopsis PEBP sequences as a query was performed against alfalfa proteome with a minimum identity of 75% and E-value of 1E-5. BLASTP search resulted in 17 protein candidates. Finally, we obtained a consensus list of ten proteins from the HMMER and BLASTP search. Redundant sequences were removed using CD-HIT which resulted in a total of nine PEBP candidates in alfalfa. Result: The results showed that there was a total of nine PEBP candidates in alfalfa, which could be divided into three sub-gene families, such as TFL1-like, MFT-like and FT-like groups. Chromosomal location analyses showed that nine PEBP members are distributed on five of the eight alfalfa chromosomes with chromosome 7 having the largest number of PEBP members (four members) while only three alfalfa PEBP proteins were annotated as MsFTa1, MsFTa2 and MsFTc. In addition, the motifs of this gene family were conservative with few differences in the number and types of conservative motifs. MsFTa1 and MsFTa2 are two strong candidates for florigen in alfalfa, while MsG0480024000.01 is a candidate which functions as a floral repressory.
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Peritoneal Dialysis International, 2012
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