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AbstractThe paper presents technical application of TeX high-level, descriptive markup language for processing geological dataset from soil laboratory. Geotechnical measurements included equivalent soil cohesion, absolute and absolute deformation index, soil compressibility coefficient by time of immersion depth, exposure time to compressive strength to samples and physical and mechanical properties (humidity, density). Dataset was received from laboratory based experimental tests of the physical and mechanical properties of soils. Data were converted to csv table and processed by LaTeX. Methodology is based on LaTeX packages: {tikz}, {tikz-3dplot}, {tikzpicture}, {pgfplot}, {filecontetns}, {spy} for 3D plotting showing correlation in variables and descriptive statistical analysis based on the data array processing. Results demonstrated LaTeX scripts and graphics: 2D and 3D scatterplots, ternaries, bar charts, boxplots, zooming techniques detailing fragment of the plot, flowchart. Research novelty consists in technical approach of TeX language application for geo- logical data processing and graphical visualization. Engineering graphics by TeX was demonstrated with screenshots of the codes used for plotting.
Résistance et comportement des matériaux, geotechnical modelling, 2d modelling, soil compression, Matériaux céramiques et poudres, data analysis, rupture matériaux, computer science, Contrôle des matériaux, Mécanique des roches, Bodenverdichtung, Datenvisualisierung, data visualization, tex, Geotechnische Modellierung, Hydrogéologie, markup language, latex, Méthodes mathématiques et quantitatives, Sciences de la terre et du cosmos, Datenanalyse, 3d modelling, Disciplines auxiliaires de l'ingénieur, Sciences exactes et naturelles, 3D-Modellierung, plotting, LaTeX, Mécanique des sols, Déformation, Sciences de l'ingénieur, 2D modelling; 3D modelling; Data analysis; Data visualization; Geotechnical modelling; LaTeX; Markup language; Plotting; Soil compression; TeX, Physique interne des matériaux, TeX, 2D-Modellierung, Géologie, Résistance des matériaux, QA75.5-76.95, Programmation et méthodes de simulation, Méthodologie de la recherche scientifique, Méthodes quantitatives de gestion, 3D modelling, Sémantique des langages de programmation, Plotten, Matériaux composites, Electronic computers. Computer science, Connaissance des matériaux, Programmation du calcul numérique, Auszeichnungssprache, 2D modelling, data modeling
Résistance et comportement des matériaux, geotechnical modelling, 2d modelling, soil compression, Matériaux céramiques et poudres, data analysis, rupture matériaux, computer science, Contrôle des matériaux, Mécanique des roches, Bodenverdichtung, Datenvisualisierung, data visualization, tex, Geotechnische Modellierung, Hydrogéologie, markup language, latex, Méthodes mathématiques et quantitatives, Sciences de la terre et du cosmos, Datenanalyse, 3d modelling, Disciplines auxiliaires de l'ingénieur, Sciences exactes et naturelles, 3D-Modellierung, plotting, LaTeX, Mécanique des sols, Déformation, Sciences de l'ingénieur, 2D modelling; 3D modelling; Data analysis; Data visualization; Geotechnical modelling; LaTeX; Markup language; Plotting; Soil compression; TeX, Physique interne des matériaux, TeX, 2D-Modellierung, Géologie, Résistance des matériaux, QA75.5-76.95, Programmation et méthodes de simulation, Méthodologie de la recherche scientifique, Méthodes quantitatives de gestion, 3D modelling, Sémantique des langages de programmation, Plotten, Matériaux composites, Electronic computers. Computer science, Connaissance des matériaux, Programmation du calcul numérique, Auszeichnungssprache, 2D modelling, data modeling
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