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Journal articles on the topic 'Typesetting'

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1

Kosek, Jiri. "Typesetting XML." Zpravodaj Československého sdružení uživatelů TeXu 13, no. 1 (2003): 3–6. http://dx.doi.org/10.5300/2003-1/3.

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Brezina, Petr. "Parallel typesetting." Zpravodaj Československého sdružení uživatelů TeXu 18, no. 4 (2008): 212–26. http://dx.doi.org/10.5300/2008-4/212.

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3

de Almeida, Pedro. "Typesetting APL dialects." ACM SIGAPL APL Quote Quad 34, no. 2 (2004): 28–31. http://dx.doi.org/10.1145/1088529.1088534.

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4

Šebela, Karel. "Musical Composition Typesetting." Zpravodaj Československého sdružení uživatelů TeXu, no. 1 (2023): 39–47. http://dx.doi.org/10.5300/2023-1-2/39.

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5

Thompson, Graham. "A Manual Job in a Machine Age: The Long Wait for Mechanized Typesetting." Book History 27, no. 2 (2024): 309–45. https://doi.org/10.1353/bh.2024.a947330.

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Abstract: The core technological processes of the nineteenth-century print industry—papermaking, printing, and typesetting—evolved at conspicuously different rates. While papermaking and printing mechanized in the first half of the century, commentators even toward the end of the century were perplexed that typesetting still relied on methods dating back to the origins of moveable type. This article examines why mechanical typesetting proved so elusive and argues that innovation often foundered because typesetting was complex in ways that papermaking and printing were not. Little economic or processual benefit accrued from the machines that did emerge because they did not achieve what successful mechanized typesetting required: the combination of the discreet physical and mental processes to complete the job of setting, justifying, and distributing type. Typesetting persistently defied the integration of human and machine so noticeable elsewhere in nineteenth-century industrialization more generally and in mass-produced and mass-consumed cultural forms more specifically. Only when the possibility of integration finally arrived in the 1890s following a series of engineering developments did the barriers to machine diffusion fall away. Within in a relatively short space of time typesetting humanized technology and technologized the human to the extent that it was no longer the un-mechanized poor relation to mechanized papermaking and printing.
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6

Striz, Pavel. "Selected Problems from the Book Typesetting: The Case of Stageplay Typesetting." Zpravodaj Československého sdružení uživatelů TeXu 19, no. 1-2 (2009): 37–89. http://dx.doi.org/10.5300/2009-1-2/37.

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7

Ren, Xiao Guang, Yu Hua Tang, and Xin Hai Xu. "Format Optimization for Periodical Snapshot Output in CFD Simulation." Applied Mechanics and Materials 457-458 (October 2013): 910–18. http://dx.doi.org/10.4028/www.scientific.net/amm.457-458.910.

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Computational Fluid Dynamics (CFD) simulation often needs to periodically output the intermediate results to files in the form of snapshots for visualization or restart, which seriously impacts the performance. Traditional CFD simulation takes ASCII format with typesetting in the snapshot output process, which results in precision loss of the data in the snapshot array and more storage space occupancy than the original binary format. In this paper, we propose the binary non-typesetting format optimization for the snapshot output in CFD simulation, aiming at eliminating the impact of ASCII format. In our optimization method, the snapshot array is output in binary format without typesetting. On one hand, it reserves the original binary precision in the output files, while the ASCII format always has precision loss, which seriously impacts the accuracy of CFD simulation; On the other hand, non-typesetting provide the opportunity of output the snapshot as a continuous memory block, which will signally improve the efficiency of the output. We design the multiply output mode framework for CFD applications through the combination of ASCII typesetting format and binary non-typesetting format. We implement this multiply output mode framework in the open source CFD software OpenFOAM. Experimental results on Tianhe-2 supercomputer demonstrate that our binary non-typesetting format optimization technique can achieve good optimization effect for the periodical snapshot output in CFD application.
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8

Sofroniou, Nick, and Graeme D. Hutcheson. "Technical typesetting using LaTeX." Behavior Research Methods, Instruments, & Computers 26, no. 3 (1994): 369–71. http://dx.doi.org/10.3758/bf03204648.

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9

Talandova, Petra. "Typesetting Possibilities for Tables." Zpravodaj Československého sdružení uživatelů TeXu 18, no. 3 (2008): 151–60. http://dx.doi.org/10.5300/2008-3/151.

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10

Zyka, Vit. "Documents preparation for typesetting." Zpravodaj Československého sdružení uživatelů TeXu 18, no. 4 (2008): 178–99. http://dx.doi.org/10.5300/2008-4/178.

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11

Eyre, Timothy. "Typesetting Japanese with pTeX." Zpravodaj Československého sdružení uživatelů TeXu 20, no. 3 (2010): 152–73. http://dx.doi.org/10.5300/2010-3/152.

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12

Hohti, Aarno. "Typesetting APL with TeX." ACM SIGAPL APL Quote Quad 18, no. 3 (1988): 13–16. http://dx.doi.org/10.1145/44164.44166.

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13

Zurek, Jerome. "Use PCs for Typesetting." Journalism Educator 40, no. 1 (1985): 16–19. http://dx.doi.org/10.1177/107769588504000105.

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14

Van der Laan, Kees. "Typesetting Bridge via TeX." Cahiers GUTenberg, no. 5 (1990): 49–61. http://dx.doi.org/10.5802/cg.58.

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15

Dickey, Leroy J. "Typesetting APL using TROFF." ACM SIGAPL APL Quote Quad 17, no. 4 (1987): 494–97. http://dx.doi.org/10.1145/384282.28379.

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16

Feurer, T., Joshua C. Vaughan, T. Hornung, and Keith A. Nelson. "Typesetting of terahertz waveforms." Optics Letters 29, no. 15 (2004): 1802. http://dx.doi.org/10.1364/ol.29.001802.

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17

Burger, Elsie, Johan Dempers, Stef Steiner, and Richard Shepherd. "Henssge nomogram typesetting error." Forensic Science, Medicine, and Pathology 9, no. 4 (2013): 615–17. http://dx.doi.org/10.1007/s12024-013-9488-5.

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18

Přichystal, Jan, and Jiří Rybička. "Line-breaking algorithm enhancement in inverse typesetting paradigma." Acta Universitatis Agriculturae et Silviculturae Mendelianae Brunensis 55, no. 3 (2007): 117–22. http://dx.doi.org/10.11118/actaun200755030117.

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High quality text preparing using computer desktop publishing systems usually uses line-breaking algorithm which cannot make provision for line heights and typeset paragraph accurately when composition width, page break, line index or other object appears. This article deals with enhancing of line-breaking algorithm based on optimum-fit algorithm. This algorithm is enhanced with calculation of immediate typesetting width and thus solves problem of forced change. Line-breaking algorithm enhancement causes expansion potentialities of high-quality typesetting in cases that have not been yet covered with present typesetting systems.
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19

Howland, John E. "Typesetting APL using a Macintosh." ACM SIGAPL APL Quote Quad 16, no. 4 (1986): 301–5. http://dx.doi.org/10.1145/22008.22052.

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20

Horak, Karel. "Math typesetting in Czech texts." Zpravodaj Československého sdružení uživatelů TeXu 11, no. 1-3 (2001): 136–48. http://dx.doi.org/10.5300/2001-1-3/136.

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21

Prichystal, Jan, and Jiri Rybicka. "Web interface for document typesetting." Zpravodaj Československého sdružení uživatelů TeXu 14, no. 3-4 (2004): 190–95. http://dx.doi.org/10.5300/2004-3-4/190.

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22

Jakubcik, Ondrej. "Typesetting chemical formulas in TEX." Zpravodaj Československého sdružení uživatelů TeXu 16, no. 1 (2006): 2–10. http://dx.doi.org/10.5300/2006-1/2.

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23

Brezina, Petr. "Typesetting of a trilingual book." Zpravodaj Československého sdružení uživatelů TeXu 18, no. 4 (2008): 227–36. http://dx.doi.org/10.5300/2008-4/227.

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24

Sustek, Jan. "Typesetting Paragraphs into Text Regions." Zpravodaj Československého sdružení uživatelů TeXu 19, no. 3 (2009): 124–37. http://dx.doi.org/10.5300/2009-3/124.

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25

Hoenig, Alan. "Typesetting Pointed Hebrew by Computer." Hebrew Studies 44, no. 1 (2003): 171–84. http://dx.doi.org/10.1353/hbr.2003.0021.

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26

Dobrowolski, Andrew E. "Typesetting SGML documents using TeX." Cahiers GUTenberg, no. 10-11 (1991): 185–96. http://dx.doi.org/10.5802/cg.97.

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27

Kuznetsov, Sergey. "Using Bellman Optimality Principle for the Generative Autoencoder Architecture for the Problems of the Attribute Data Typesetting and Semantic Description in Data Management." Differential Equations and Control Processes, no. 2 (2024): 171–82. https://doi.org/10.21638/11701/spbu35.2024.207.

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The publication presents the problems of identifying data types (typesetting) and semantic description of the attributes when managing structured data and master data (Master Data Management). A formal definition of the generalized attribute typesetting problem is given, which allows generation of the additional data types. This problem allows using the discrete Bellman optimality principle under special criteria of the target function. A unified architecture of the deep generative neural network addressing simultaneously the generalized attribute typesetting and semantic description generation problems is proposed. The architecture is based on the generative adversarial autoencoder architecture (AAE) using the mechanisms of soft-attention, and long-term memory (SCRN). The effectiveness of such implementation, in particular, is achieved through the application of the principles of dynamic programming within each epoch of the network training.
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28

Köksal, Semen. "Scientific word, Version 1.0." Journal of Applied Mathematics and Stochastic Analysis 6, no. 3 (1993): 277–80. http://dx.doi.org/10.1155/s1048953393000231.

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Scientific Word is the first fully integrated mathematical word processor in the Windows 3.1 environment, which uses the TEX typesetting language for output. It runs as a Microsoft Windows application program and has two-way interface to TEX. The Scientific Word is an object-oriented WYSIWYG word processor for virtually all users who need typesetting scientific books, manuals and papers. It includes automatic equation numbering, spell checking, and LATEX and DVI previewer.
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29

Bossard, Antoine. "On typesetting an English–Japanese book." TUGboat 42, no. 2 (2021): 147–51. http://dx.doi.org/10.47397/tb/42-2/tb131bossard-engjpn.

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30

Gehani, N. "Tutorial: Unix Document Formatting and Typesetting." IEEE Software 3, no. 5 (1986): 15–24. http://dx.doi.org/10.1109/ms.1986.234393.

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31

Zyka, Vit. "Using pdfTeX V: current typesetting position." Zpravodaj Československého sdružení uživatelů TeXu 17, no. 2 (2007): 67–72. http://dx.doi.org/10.5300/2007-2/67.

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32

Jiang, Jiang. "Chinese TeX Typesetting: Past and Present." Zpravodaj Československého sdružení uživatelů TeXu 20, no. 3 (2010): 215–19. http://dx.doi.org/10.5300/2010-3/215.

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33

Myhill, Martin. "Publishing TEXnical INFORMATION: typesetting by database." Program 24, no. 3 (1990): 281–89. http://dx.doi.org/10.1108/eb047063.

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34

Bentley, Jon L., and Brian W. Kernighan. "GRAP—a language for typesetting graphs." Communications of the ACM 29, no. 8 (1986): 782–92. http://dx.doi.org/10.1145/6424.6429.

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35

Böttinger, Lea C., Frederic Hüftlein, and Johannes Stökl. "Correction to: Mate attraction, chemical defense, and competition avoidance in the parasitoid wasp Leptopilina pacifica." Chemoecology 31, no. 1 (2021): 77. http://dx.doi.org/10.1007/s00049-020-00336-y.

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36

Marcuzzi, Elisabetta, Roberta Angioni, Barbara Molon, and Bianca Calì. "Correction: Marcuzzi, E., et al. Chemokines and Chemokine Receptors: Orchestrating Tumor Metastasization. Int. J. Mol. Sci. 2019, 20, 96." International Journal of Molecular Sciences 20, no. 11 (2019): 2651. http://dx.doi.org/10.3390/ijms20112651.

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37

Brezina, Petr. "Some tips and tricks for TEX typesetting." Zpravodaj Československého sdružení uživatelů TeXu 16, no. 1 (2006): 10–25. http://dx.doi.org/10.5300/2006-1/10.

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38

Hoftich, Michal. "Responsive Design and Automatic Typesetting with LuaLaTeX." Zpravodaj Československého sdružení uživatelů TeXu, no. 1 (2024): 28–38. https://doi.org/10.5300/2024-1-4/28.

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39

Lee, Shao-Lun. "A decision support system for luggage typesetting." Expert Systems with Applications 35, no. 4 (2008): 1620–27. http://dx.doi.org/10.1016/j.eswa.2007.08.096.

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40

Foxley, Eric. "Music—A language for typesetting music scores." Software: Practice and Experience 17, no. 8 (1987): 485–502. http://dx.doi.org/10.1002/spe.4380170802.

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41

Haltiwanger, John. "Subtext: A proposed processual grammar for a multi-output pre-format." Cahiers GUTenberg 2011, no. 56 (2022): 140–46. http://dx.doi.org/10.60028/cahiers.v2011i56.42.

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42

Thompson, Steve W., David Rogerson, Alan Ruddock, and Andrew Barnes. "Correction to: The Effectiveness of Two Methods of Prescribing Load on Maximal Strength Development: A Systematic Review." Sports Medicine 50, no. 5 (2020): 939–41. http://dx.doi.org/10.1007/s40279-019-01253-z.

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43

Gardner, Ron, and Eve Gardner. "Indexing The Canadian Encyclopedia second edition." Indexer: The International Journal of Indexing: Volume 16, Issue 2 16, no. 2 (1988): 87–91. http://dx.doi.org/10.3828/indexer.1988.16.2.6.

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The index to the second edition of The Canadian Encyclopedia was prepared on an ibm pc-xt personal computer using the ibm Professional Editor, custom programs written in ibm Pascal, and TEX1 a high quality typesetting program developed by Donald E. Knuth of Stanford University in California. The entries were chosen and keyed in by the indexer, and then alphabetized, formatted, and typeset by the computer. An unusual data entry format together with good typesetting software made possible the delivery to the printer of the 372 page camera ready index less than two weeks after the indexer received the final pages of text. TEX (which rhymes with ‘blecchhh’ not the letter ‘X’) provides fully automatic pagination.
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44

Zou, Lijuan. "Application of Commonly Used Artificial Intelligence Tools in Field of Publishing." Computer Life 12, no. 3 (2024): 7–11. http://dx.doi.org/10.54097/zjkvwm72.

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With the rapid development of technology, artificial intelligence (AI) has penetrated various industries, including the publishing industry. This article provides a detailed introduction to the current application status of commonly used AI tools in the field of publishing. Among them, the automated typesetting technology represented by Fangzheng Academic Publishing Cloud Service Platform has shown a dual leap in efficiency and quality compared to traditional typesetting methods, and has brought comprehensive innovations in intelligence, personalization, and cost control; Intelligent editing, represented by Grammarly, Heima Proofreading Software, and Shanfeng Software, has demonstrated their respective advantages in efficiency, accuracy, personalization, and technological innovation, providing strong support and assistance for editors. It is an indispensable and important tool in the field of publishing.
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45

Murray, Caroline. "Indexing in an XML context." Indexer: The International Journal of Indexing: Volume 24, Issue 2 24, no. 2 (2004): 66–67. http://dx.doi.org/10.3828/indexer.2004.24.2.5.

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46

Vitetta, Luis, Emma Saltzman, Michael Thomsen, Tessa Nikov, and Sean Hall. "Correction: Vitetta, L.; et al. Adjuvant Probiotics and the Intestinal Microbiome: Enhancing Vaccines and Immunotherapy Outcomes. Vaccines 2017, 5, 50." Vaccines 6, no. 2 (2018): 26. http://dx.doi.org/10.3390/vaccines6020026.

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47

Wang, Yifan, and Jae Bum Yang. "A case study of gameplay elements in Memphis style on advertising layout." Korea Institute of Design Research Society 7, no. 3 (2022): 132–48. http://dx.doi.org/10.46248/kidrs.2022.3.132.

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In the 1980s, Italy established a design group called Memphis. Under the call of opposing functionalism, the design abandoned the tenets and values of Modernist Aesthetics, integrated into a variety of styles, including decorative art and pop art, and finally became one of the representatives of postmodern design. Conclusion Combined with the manifestation of its visual modeling, advertising typesetting design was discussed to draw the conclusion that its design has humanistic, open and reflective design thinking. In line with the current consumption development, it also meets the emotional needs of the public, promotes the better application of Memphis style gameplay element concept in advertising typesetting design, new Ideas to Promote the Development of Advertising. Open up design possibilities and new ideas.
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48

Hala, Tomas. "Markup Style for Fast Typesetting of Bibliographic References." Zpravodaj Československého sdružení uživatelů TeXu 18, no. 3 (2008): 142–50. http://dx.doi.org/10.5300/2008-3/142.

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49

Vieth, Ulrik. "Experiences Typesetting OpenType Math with LuaLaTeX and XeLaTeX." Zpravodaj Československého sdružení uživatelů TeXu 21, no. 2-4 (2011): 116–26. http://dx.doi.org/10.5300/2011-2-4/116.

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50

Vieth, Ulrik. "Experiences typesetting OpenType math with LuaLaTeX and XeLaTeX." Cahiers GUTenberg 2011, no. 56 (2022): 116–26. http://dx.doi.org/10.60028/cahiers.v2011i56.39.

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