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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2c2479ddae2366a3501bd67e81848a3a0/droessler",         
         "tags" : [
            "algorithm","algorithmen","communication","computer","macht","politik","science"
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         "intraHash" : "c2479ddae2366a3501bd67e81848a3a0",
         "interHash" : "be0a94e5352aa7c8d26aa7014a9122fe",
         "label" : "Algorithmic Regimes: Methods, Interactions, and Politics",
         "user" : "droessler",
         "description" : "",
         "date" : "2024-07-08 17:00:27",
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         "publisher":"Amsterdam University Press",
         "year": "2024", 
         "url": "http://www.jstor.org/stable/jj.11895528", 
         
         "author": [ 
            "Juliane Jarke","Bianca Prietl","Simon Egbert","Yana Boeva","Hendrik Heuer","Maike Arnold"
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         "authors": [
         	
            	{"first" : "Juliane",	"last" : "Jarke"},
            	{"first" : "Bianca",	"last" : "Prietl"},
            	{"first" : "Simon",	"last" : "Egbert"},
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            	{"first" : "Hendrik",	"last" : "Heuer"},
            	{"first" : "Maike",	"last" : "Arnold"}
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         "abstract": "Algorithms have risen to become one, if not the central technology for producing, circulating, and evaluating knowledge in multiple societal arenas. In this book, scholars from the social sciences, humanities, and computer science argue that this shift has, and will continue to have, profound implications for how knowledge is produced and what and whose knowledge is valued and deemed valid. To attend to this fundamental change, the authors propose the concept of algorithmic regimes and demonstrate how they transform the epistemological, methodological, and political foundations of knowledge production, sensemaking, and decision-making in contemporary societies. Across sixteen chapters, the volume offers a diverse collection of contributions along three perspectives on algorithmic regimes: the methods necessary to research and design algorithmic regimes, the ways in which algorithmic regimes reconfigure sociotechnical interactions, and the politics engrained in algorithmic regimes.",
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         "label" : "Application\u2011based principles of islamic geometric patterns; state\u2011of\u2011the\u2011art, and future trends in computer science/technologies: a review",
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         "journal": "Heritage Science","publisher":"Springer Open",
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         "author": [ 
            "Mohammadreza Ranjazmay Azari","Mohammadreza Bemanian","Mohammadjavad Mahdavinejad","Axel Körner","Jan Knippers"
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         "authors": [
         	
            	{"first" : "Mohammadreza",	"last" : "Ranjazmay Azari"},
            	{"first" : "Mohammadreza",	"last" : "Bemanian"},
            	{"first" : "Mohammadjavad",	"last" : "Mahdavinejad"},
            	{"first" : "Axel",	"last" : "Körner"},
            	{"first" : "Jan",	"last" : "Knippers"}
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         "volume": "((2023) 11:22","abstract": "Currently, there is a tendency to use Islamic Geometric Patterns (IGPs) as important identities and cultural elements of building design in the Middle East. Despite high demand, lack of information about the potential of IGPs principles have led to formal inspiration in the design of existing buildings. Many research studies have been carried out on the principles of IGPs. However, comprehensive studies relating to new possibilities, such as structure-based, sustainablebased, and aesthetic-based purposes, developed by computer science and related technologies, are relatively rare. This article reviews the state-of-the-art knowledge of IGPs, provides a survey of the main principles, presents the status quo, and identifies gaps in recent research directions. Finally, future prospects are discussed by focussing on different aspects of the principles in accordance with collected evidence obtained during the review process.",
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         "author": [ 
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            	{"first" : "Mohammadreza",	"last" : "Ranjazmay Azari"},
            	{"first" : "Mohammadreza",	"last" : "Bemanian"},
            	{"first" : "Mohammadjavad",	"last" : "Mahdavinejad"},
            	{"first" : "Axel",	"last" : "Körner"},
            	{"first" : "Jan",	"last" : "Knippers"}
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         "volume": "((2023) 11:22","abstract": "Currently, there is a tendency to use Islamic Geometric Patterns (IGPs) as important identities and cultural elements of building design in the Middle East. Despite high demand, lack of information about the potential of IGPs principles have led to formal inspiration in the design of existing buildings. Many research studies have been carried out on the principles of IGPs. However, comprehensive studies relating to new possibilities, such as structure-based, sustainablebased, and aesthetic-based purposes, developed by computer science and related technologies, are relatively rare. This article reviews the state-of-the-art knowledge of IGPs, provides a survey of the main principles, presents the status quo, and identifies gaps in recent research directions. Finally, future prospects are discussed by focussing on different aspects of the principles in accordance with collected evidence obtained during the review process.",
         "language" : "eng",
         
         "doi" : "https://doi.org/10.1186/s40494-022-00852-w",
         
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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/220ed412086ede754668bc27dda71570d/droessler",         
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         "series": "Springer eBooks. Professional and Applied Computing","publisher":"Apress","address":"New York",
         "year": "2019", 
         "url": "http://dx.doi.org/10.1007/978-1-4842-5149-2", 
         
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            "Thomas Mailund"
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         "authors": [
         	
            	{"first" : "Thomas",	"last" : "Mailund"}
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         "isbn" : "9781484251492",
         
         "language" : "Englisch",
         
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         "label" : "More Math Into LaTeX",
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         "year": "2016", 
         "url": "http://swbplus.bsz-bw.de/bsz461145707cov.htm", 
         
         "author": [ 
            "George Grätzer"
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            	{"first" : "George",	"last" : "Grätzer"}
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         "note": "Online-Ressource (XXX, 609 p. 76 illus., 23 illus. in color, online resource)",
         "isbn" : "9783319237961",
         
         "language" : "Englisch",
         
         "bibtexKey": "graetzer2016latex"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/236138236e3de8aa8bcfa69cf20c19819/raphei",         
         "tags" : [
            "-","Computer","Digital","Information","Libraries","Networks,","Physics","Science","Social","Society,","and"
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         "intraHash" : "36138236e3de8aa8bcfa69cf20c19819",
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         "label" : "Choosing Collaboration Partners. How Scientific Success in Physics Depends on Network Positions",
         "user" : "raphei",
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         "journal": "arXiv:1608.03251 [physics]",
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         "url": "http://arxiv.org/abs/1608.03251", 
         
         "author": [ 
            "Raphael H. Heiberger","Oliver J. Wieczorek"
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         "authors": [
         	
            	{"first" : "Raphael H.",	"last" : "Heiberger"},
            	{"first" : "Oliver J.",	"last" : "Wieczorek"}
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         "note": "arXiv: 1608.03251","abstract": "Physics is one of the most successful endeavors in science. Being a prototypic big science it also reflects the growing tendency for scientific collaborations. Utilizing 250,000 papers from ArXiv.org a prepublishing platform prevalent in Physics we construct large coauthorship networks to investigate how individual network positions influence scientific success. In this context, success is seen as getting a paper published in high impact journals of physical subdisciplines as compared to not getting it published at all or in rather peripheral journals only. To control the nested levels of authors and papers, and to consider the time elapsing between working paper and prominent journal publication we employ multilevel eventhistory models with various network measures as covariates. Our results show that the maintenance of even a moderate number of persistent ties is crucial for scientific success. Also, even with low volumes of social capital Physicists who occupy brokerage positions enhance their chances of articles in high impact journals significantly. Surprisingly, inter(sub)disciplinary collaborations decrease the probability of getting a paper published in specialized journals for almost all positions.",
         "file" : "arXiv\\:1608.03251 PDF:C\\:\\\\Users\\\\ac135138\\\\Zotero\\\\storage\\\\CPZJRZMV\\\\Heiberger und Wieczorek - 2016 - Choosing Collaboration Partners. How Scientific Su.pdf:application/pdf;arXiv.org Snapshot:C\\:\\\\Users\\\\ac135138\\\\Zotero\\\\storage\\\\32EMMUVF\\\\1608.html:text/html",
         
         "urldate" : "2017-07-03",
         
         "bibtexKey": "heiberger_choosing_2016"

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         "id"   : "https://puma.ub.uni-stuttgart.de/bibtex/2ead877cc7a1fc6b6eee378ade55950d0/mariawirzberger",         
         "tags" : [
            "cognition","computer","interdisciplinary","myown","science"
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         "intraHash" : "ead877cc7a1fc6b6eee378ade55950d0",
         "interHash" : "f16d76cfd6bb65c078e08079104303e1",
         "label" : "Computer Science meets Cognition: Möglichkeiten und Herausforderungen interdisziplinärer Kognitionsforschung",
         "user" : "mariawirzberger",
         "description" : "",
         "date" : "2020-03-20 16:22:37",
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         "count" : 1,
         "pub-type": "inproceedings",
         "booktitle": "INFORMATIK 2017, Lecture Notes in Informatics (LNI)","publisher":"Gesellschaft für Informatik","address":"Bonn",
         "year": "2017", 
         "url": "", 
         
         "author": [ 
            "Maria Wirzberger","Martina Truschzinski","Ren\\´e Schmidt","Maria Barlag"
         ],
         "authors": [
         	
            	{"first" : "Maria",	"last" : "Wirzberger"},
            	{"first" : "Martina",	"last" : "Truschzinski"},
            	{"first" : "Ren\\´e",	"last" : "Schmidt"},
            	{"first" : "Maria",	"last" : "Barlag"}
         ],
         
         "editor": [ 
            "Maximilian Eibl","Martin Gaedke"
         ],
         "editors": [
         	
            	{"first" : "Maximilian",	"last" : "Eibl"},
            	{"first" : "Martin",	"last" : "Gaedke"}
         ],
         "pages": "2273--2277",
         "doi" : "doi:10.18420/in2017_227",
         
         "bibtexKey": "Wirzberger2017CSCOG"

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         "label" : "On Remote and Virtual Experiments in eLearning in Statistical Mechanics and Thermodynamics",
         "user" : "thomasrichter",
         "description" : "",
         "date" : "2016-03-10 09:18:49",
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         "booktitle": "Pervasive Computing and Communications Workshops, 2007. PerCom Workshops '07. Fifth Annual IEEE International Conference on","address":"New York",
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         "url": "http://ieeexplore.ieee.org/xpl/articleDetails.jsp?arnumber=4144816", 
         
         "author": [ 
            "Sabina Jeschke","Thomas Richter","Christian Thomsen","Harald Scheel"
         ],
         "authors": [
         	
            	{"first" : "Sabina",	"last" : "Jeschke"},
            	{"first" : "Thomas",	"last" : "Richter"},
            	{"first" : "Christian",	"last" : "Thomsen"},
            	{"first" : "Harald",	"last" : "Scheel"}
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         "abstract": "The science of physics is based on theories and models\nas well as experiments: the former structure relations\nand simplify reality to a degree such that predictions on\nphysical phenomena can be derived by means of math-\nematics. The latter allow verification or falsification of\nthese predictions. Computer sciences allow a new access to\nthis relationship, especially well-suited for education: New\nTechnologies provide simulations for the model, virtual\ninstruments for running and evaluating real experiments\nand mathematical toolkits to solve equations derived from\nthe theory analytically and to compare the outcome of all\nthree methods. We will demonstrate this approach on two\nexamples: Ferromagnetism and thermodynamics.",
         "doi" : "10.1109/PERCOMW.2007.87",
         
         "bibtexKey": "jeschke2007remote"

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         "label" : "On Remote and Virtual Experiments in eLearning in Statistical Mechanics and Thermodynamics",
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         "author": [ 
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         "authors": [
         	
            	{"first" : "Sabina",	"last" : "Jeschke"},
            	{"first" : "Thomas",	"last" : "Richter"},
            	{"first" : "Christian",	"last" : "Thomsen"},
            	{"first" : "Harald",	"last" : "Scheel"}
         ],
         "abstract": "The science of physics is based on theories and models\r\nas well as experiments: the former structure relations\r\nand simplify reality to a degree such that predictions on\r\nphysical phenomena can be derived by means of math-\r\nematics. The latter allow verification or falsification of\r\nthese predictions. Computer sciences allow a new access to\r\nthis relationship, especially well-suited for education: New\r\nTechnologies provide simulations for the model, virtual\r\ninstruments for running and evaluating real experiments\r\nand mathematical toolkits to solve equations derived from\r\nthe theory analytically and to compare the outcome of all\r\nthree methods. We will demonstrate this approach on two\r\nexamples: Ferromagnetism and thermodynamics.",
         "doi" : "10.1109/PERCOMW.2007.87",
         
         "bibtexKey": "Jeschke2007b"

      }
	  
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}
