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1Academic Journal
المؤلفون: Paola Alzate, Maria Clara Shiroma, Katherin Castro-Rios
المصدر: Scientia Agropecuaria, Vol 15, Iss 2, Pp 235-249 (2024)
مصطلحات موضوعية: fungos na cannabis, riscos da contaminação, controle biológico, produção da cannabis, análise bibliométrica, tree of science, Agriculture, Agriculture (General), S1-972
وصف الملف: electronic resource
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2Academic Journal
المصدر: International Journal of Production Management and Engineering, Vol 12, Iss 1, Pp 1-18 (2024)
مصطلحات موضوعية: maritime transport, industry 4.0, foreign trade, optimization, tree of science, Industrial engineering. Management engineering, T55.4-60.8, Management information systems, T58.6-58.62
وصف الملف: electronic resource
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3Academic Journal
المصدر: Apuntes del Cenes; Vol. 42 No. 76 (2023); 173-198 ; Apuntes del Cenes; Vol. 42 Núm. 76 (2023); 173-198 ; 2256-5779 ; 0120-3053
مصطلحات موضوعية: Fintech, start up, SLR PRISMA, Tree of Science (ToS), Financial markets, Tecnological revolution, Tree of Science, Mercados financieros, Revolución tecnológica, Star up
وصف الملف: application/pdf; text/xml
Relation: https://revistas.uptc.edu.co/index.php/cenes/article/view/15964/13472; https://revistas.uptc.edu.co/index.php/cenes/article/view/15964/13874; https://revistas.uptc.edu.co/index.php/cenes/article/view/15964; https://repositorio.uptc.edu.co/handle/001/12094
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4Academic Journal
المؤلفون: Alzate, Paola, Clara Shiroma, Maria, Castro-Rios, Katherin
المصدر: Scientia Agropecuaria; Vol. 15 Núm. 2 (2024): Abril - Junio; 235-249 ; Scientia Agropecuaria; Vol. 15 No. 2 (2024): Abril - Junio; 235-249 ; 2306-6741 ; 2077-9917
مصطلحات موضوعية: Fungos na Cannabis, Riscos da contaminação, controle biológico, produção da cannabis, Análise bibliométrica, Tree of science, Fungi in cannabis, Risks of contamination, biological control, Cannabis production, Bibliometric analysis
وصف الملف: application/pdf
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5Academic Journal
المصدر: Clío América; Vol. 18 No. 35 (2024): january - june 2024 Thematic Volume - Scientometic Articles Guest Editor - PhD. Sebastian Robledo Giraldo; 140-157 ; Clío América; Vol. 18 Núm. 35 (2024): enero - junio 2024 Volumen Temático - Artículos Cienciométricos. Editor Invitado - PhD. Sebastián Robledo Giraldo; 140-157 ; 2389-7848 ; 1909-941X
مصطلحات موضوعية: Sustainable tourism, bibliometric, heritage site, Tree of Science, turismo sostenible, bibliometría, sitio patrimonial, árbol de la ciencia
وصف الملف: application/pdf; text/html
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6Academic Journal
المؤلفون: Quintero-Arango, Luis Fernando, Betancur-Arias, Juan Diego, Machado, Cristiano, Rojas-Quiceno, Guillermo
المصدر: Clío América; Vol. 18 No. 35 (2024): january - june 2024 Thematic Volume - Scientometic Articles Guest Editor - PhD. Sebastian Robledo Giraldo; 87-105 ; Clío América; Vol. 18 Núm. 35 (2024): enero - junio 2024 Volumen Temático - Artículos Cienciométricos. Editor Invitado - PhD. Sebastián Robledo Giraldo; 87-105 ; 2389-7848 ; 1909-941X
مصطلحات موضوعية: marketing emprendedor, rendimiento organizacional, análisis cienciométrico, adaptación al mercado, árbol de la ciencia, Entrepreneurial Marketing, Organizational Performance, Scientometric Analysis, Market Adaptation, Tree of Science
وصف الملف: application/pdf; text/html
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7Academic Journal
المصدر: Criterio Libre; Vol. 22 Núm. 40 (2024): Celebrando 20 años de Criterio Libre; 1-24 ; 2323-0886 ; 1900-0642 ; 10.18041/1900-0642/criteriolibre.v22i40
مصطلحات موضوعية: Branding, desempeño financiero, bibliometría, árbol de la ciencia, financial performance, bibliometrics, Tree of Science
وصف الملف: application/pdf
Relation: https://revistas.unilibre.edu.co/index.php/criteriolibre/article/view/11784/11488; https://revistas.unilibre.edu.co/index.php/criteriolibre/article/view/11784
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8Academic Journal
المصدر: Pesquisas em Geociências; v. 50 n. 4 (2023): Pesquisas em Geociências; e136152 ; 1807-9806 ; 1518-2398
مصطلحات موضوعية: Condutividade hidráulica, fluxo, morfologia costeira, VOSviewer, Tree of Science, Morfodinâmica, Geomorfologia, Geociências, Praias arenosas, Hydraulic conductivity, Flow, Coastal Morphology
وصف الملف: application/pdf
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9Academic Journal
المؤلفون: Retamozo Chavez, William, Ravelo Méndez, Rasine
المصدر: Journal of Infrastructure, Policy and Development; Vol 8, No 14 (Published); 8165 ; 2572-7931 ; 2572-7923
مصطلحات موضوعية: governability, governance, scientometric analysis, biblioshiny, tree of science
وصف الملف: application/pdf
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10Academic Journal
المصدر: Ciencia y Academia; Núm. 5 (2024): (enero-diciembre) ; 2744-838X
مصطلحات موضوعية: Armed conflict, Education, Entrepreneurship, Political inequities, Peace, Tree of Science, Review, Conflicto armado, Educación, Emprendimiento, Inequidades políticas, Paz, Revisión
وصف الملف: application/pdf
Relation: https://revistas.ucatolicaluisamigo.edu.co/index.php/CYA/article/view/4513/4233; https://revistas.ucatolicaluisamigo.edu.co/index.php/CYA/article/view/4513
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11Dissertation/ Thesis
المؤلفون: Cardenas Torres, Mauricio Andrés
المساهمون: Alzate Buitrago, Alejandro
مصطلحات موضوعية: Deformación de las rocas, Fracturas, Geología, Geotecnia, Grietas, Ingeniería civil, Propiedades elástica de las rocas, Tree of Science (ToS), Web of Science, Rock deformation, Fractures, Geology, Geotechnics, Cracks, Civil engineering, Elastic properties of rocks
جغرافية الموضوع: Pereira
وصف الملف: PDF
Relation: Berthelot, J. M., & Robert, J. L. (n.d.). Damage evaluation of concrete test specimens related to failure analysis.; Birch, F. (1960). The Velocity of Compressional Waves in Rocks to 10 Kilobars, Part 11. In Journal of Geophysical Research (Vol. 65, Issue 4).; Botter, C., Cardozo, N., Hardy, S., Lecomte, I., Paton, G., & Escalona, A. (2016). Seismic characterisation of fault damage in 3D using mechanical and seismic modelling. Marine and Petroleum Geology, 77, 973–990. https://doi.org/10.1016/j.marpetgeo.2016.08.002; Czarny, R., Malinowski, M., Chamarczuk, M., Ćwiękała, M., Olechowski, S., Isakow, Z., & Sierodzki, P. (2021). Dispersive seismic waves in a coal seam around the roadway in the presence of excavation damaged zone. International Journal of Rock Mechanics and Mining Sciences, 148. https://doi.org/10.1016/j.ijrmms.2021.104937; David, E. C., & Zimmerman, R. W. (2012). Pore structure model for elastic wave velocities in fluid-saturated sandstones. Journal of Geophysical Research: Solid Earth, 117(7). https://doi.org/10.1029/2012JB009195; Evans, J. P., Forster, C. B., & Goddard, J. V. (1997). of fault-related rocks, and implications for hydraulic structure of fault zones. In Journal of Structural Geology (Vol. 19, Issue 11).; Feng, X. T., Pan, P. Z., & Zhou, H. (2006). Simulation of the rock microfracturing process under uniaxial compression using an elasto-plastic cellular automaton. International Journal of Rock Mechanics and Mining Sciences, 43(7), 1091–1108. https://doi.org/10.1016/j.ijrmms.2006.02.006; Glubokovskikh, S., Gurevich, B., & Saxena, N. (2016). A dual-porosity scheme for fluid/solid substitution. Geophysical Prospecting, 64(4), 1112–1121. https://doi.org/10.1111/1365-2478.12389; Gómez Barreiro, J., Wenk, H. R., & Vogel, S. (2015). Texture and elastic anisotropy of a mylonitic anorthosite from the Morin Shear Zone (Quebec, Canada). Journal of Structural Geology, 71, 100–111. https://doi.org/10.1016/j.jsg.2014.07.021; Gong, F., Di, B., Zeng, L., Wei, J., Cheng, J., & Gao, L. (2021). The elastic properties and anisotropy of artificial compacted clay samples. Geophysics, 86(1), MR1–MR15. https://doi.org/10.1190/geo2019-0608.1; Guo, J., Han, T., Fu, L. Y., Xu, D., & Fang, X. (2019). Effective Elastic Properties of Rocks With Transversely Isotropic Background Permeated by Aligned Penny-Shaped Cracks. Journal of Geophysical Research: Solid Earth, 124(1), 400–424. https://doi.org/10.1029/2018JB016412; Hamiel, Y., Lyakhovsky, V., Stanchits, S., Dresen, G., & Ben-Zion, Y. (2009). Brittle deformation and damage-induced seismic wave anisotropy in rocks. Geophysical Journal International, 178(2), 901–909. https://doi.org/10.1111/j.1365-246X.2009.04200.x; Hill H H, B. R. (1932). 138,330; 1932 b. In Dokl., Akad. Nauk, SSSR (Vol. 129).; Hossain, M. M., Arns, J. Y., Liang, Z., Chen, Z., & Arns, C. H. (2019). Humidity Effects on Effective Elastic Properties of Rock: An Integrated Experimental and Numerical Study. Journal of Geophysical Research: Solid Earth, 124(8), 7771–7791. https://doi.org/10.1029/2019JB017672; Jésus, J., Sobrinho, S., De Figueiredo, J. J. S., Lima, R. L., Santos, L. K., & Nascimento, M. J. (2018). STUDY OF ELASTIC PROPERTIES AS FUNCTION OF TEMPERATURE IN ANISOTROPIC CRACKED MEDIA: AN ULTRASONIC APPROACH 326 ELASTIC PROPERTIES AS FUNCTION OF TEMPERATURE. In Revista Brasileira de Geofísica (Vol. 36, Issue 3). www.scielo.br/rbg; Kenigsberg, A. R., Rivière, J., Marone, C., & Saffer, D. M. (2020). A method for determining absolute ultrasonic velocities and elastic properties of experimental shear zones. International Journal of Rock Mechanics and Mining Sciences, 130. https://doi.org/10.1016/j.ijrmms.2020.104306; Khajehpour Tadavani, S., Poduska, K. M., Malcolm, A. E., & Melnikov, A. (2020). A non-linear elastic approach to study the effect of ambient humidity on sandstone. 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Effective elastic properties and S-wave anisotropy for rocks containing any oriented penny-shaped cracks in transversely isotropic background. Geophysics, 88(3), MR65–MR81. https://doi.org/10.1190/geo2022-0388.1; Li, T., Wang, R., Wang, Z., & Wang, Y. (2016). Experimental study on the effects of fractures on elastic wave propagation in synthetic layered rocks. Geophysics, 81(4), D441–D451. https://doi.org/10.1190/GEO2015-0661.1; Li, W., Rezakhani, R., Jin, C., Zhou, X., & Cusatis, G. (2017). A multiscale framework for the simulation of the anisotropic mechanical behavior of shale. International Journal for Numerical and Analytical Methods in Geomechanics, 41(14), 1494–1522. https://doi.org/10.1002/nag.2684; Liu, C., Pollard, D. D., & Shi, B. (2013). Analytical solutions and numerical tests of elastic and failure behaviors of close-packed lattice for brittle rocks and crystals. Journal of Geophysical Research: Solid Earth, 118(1), 71–82. https://doi.org/10.1029/2012JB009615; Liu, E. (2005). Effects of fracture aperture and roughness on hydraulic and mechanical properties of rocks: Implication of seismic characterization of fractured reservoirs. Journal of Geophysics and Engineering, 2(1), 38–47. https://doi.org/10.1088/1742-2132/2/1/006; Lyakhovsky, V., & Ben-zion, Y. (2008). Scaling relations of earthquakes and aseismic deformation in a damage rheology model. Geophysical Journal International, 172(2), 651–662. https://doi.org/10.1111/j.1365-246X.2007.03652.x; Markov, A., Ronquillo Jarillo, G., & Markov, M. (2014). Elastic properties of rocks containing oriented systems of ellipsoidal inclusions. Journal of Applied Geophysics, 103, 114–120. https://doi.org/10.1016/j.jappgeo.2014.01.010; Mavko, G. (1990). Introduction to Rock Physics.; O’Connell, R. J., & Budiansky, B. (1974). Seismic velocities in dry and saturated cracked solids. Journal of Geophysical Research, 79(35), 5412–5426. https://doi.org/10.1029/JB079i035p05412; Ostrovsky, L., Lebedev, A., Riviere, J., Shokouhi, P., Wu, C., Stuber Geesey, M. A., & Johnson, P. A. (2019). Long-Time Relaxation Induced by Dynamic Forcing in Geomaterials. Journal of Geophysical Research: Solid Earth, 124(5), 5003–5013. https://doi.org/10.1029/2018JB017076; Pan, P., Feng, X., & Zhou, H. (2008). Research on the effect of loading conditions on the strength and deformation behaviors of rocks. In International Journal of Modern Physics B (Vol. 22). www.worldscientific.com; Pimienta, L., Fortin, J., & Guéguen, Y. (2017). New method for measuring compressibility and poroelasticity coefficients in porous and permeable rocks. Journal of Geophysical Research: Solid Earth, 122(4), 2670–2689. https://doi.org/10.1002/2016JB013791; Pouragha, M., Eghbalian, M., & Wan, R. (2020). Micromechanical correlation between elasticity and strength characteristics of anisotropic rocks. International Journal of Rock Mechanics and Mining Sciences, 125. https://doi.org/10.1016/j.ijrmms.2019.104154; Prada, M., Galvez, P., Ampuero, J. P., Sallarès, V., Sánchez-Linares, C., Macías, J., & Peter, D. (2021). The Influence of Depth-Varying Elastic Properties of the Upper Plate on Megathrust Earthquake Rupture Dynamics and Tsunamigenesis. Journal of Geophysical Research: Solid Earth, 126(11). https://doi.org/10.1029/2021JB022328; Rivière, J., Pimienta, L., Scuderi, M., Candela, T., Shokouhi, P., Fortin, J., Schubnel, A., Marone, C., & Johnson, P. A. (2016). Frequency, pressure, and strain dependence of nonlinear elasticity in Berea Sandstone. Geophysical Research Letters, 43(7), 3226–3236. https://doi.org/10.1002/2016GL068061; Roche, V., Homberg, C., David, C., & Rocher, M. (2014). Normal faults, layering and elastic properties of rocks. Tectonophysics, 622, 96–109. https://doi.org/10.1016/j.tecto.2014.03.006; Rozhko, A. Y. (2020). Effects of pore fluids on quasi-static shear modulus caused by pore-scale interfacial phenomena. Geophysical Prospecting, 68(2), 631–656. https://doi.org/10.1111/1365-2478.12864; Rudnicki, J. W. (n.d.). Conditions for compaction and shear bands in a transversely isotropic material q. www.elsevier.com/locate/ijsolstr; Sayers, C. M. (2012). The effect of kerogen on the elastic anisotropy of organic-rich shales. Geophysics, 78(2), D65–D74. https://doi.org/10.1190/GEO2012-0309.1; Sayers, C. M., & den Boer, L. D. (2018). The Elastic Properties of Clay in Shales. Journal of Geophysical Research: Solid Earth, 123(7), 5965–5974. https://doi.org/10.1029/2018JB015600; Sayers, C. M., & Kachanov, M. (1995). Microcrack-induced elastic wave anisotropy of brittle rocks. In Journal Of Geophysical Research: Vol. tOO (Issue B3).; Segall, P., & Fitzgerald, S. D. (1998). A note on induced stress changes in hydrocarbon and geothermal reservoirs. In Tectonophysics (Vol. 289).; Shen, L. W., & Playter, T. (2021). Determining the transverse isotropic rocks’ static elastic moduli with cylindrical plugs: Shortfalls, challenges, and expected outcomes. Geophysics, 86(3), W31–W46. https://doi.org/10.1190/geo2020-0439.1; Singh, R., Rai, C., & Sondergeld, C. (n.d.). Pressure dependence of elastic wave velocities in sandstones. http://library.seg.org/; Sirdesai, N. N., Gupta, T., Singh, T. N., & Ranjith, P. G. (2018). Studying the acoustic emission response of an Indian monumental sandstone under varying temperatures and strains. Construction and Building Materials, 168, 346–361. https://doi.org/10.1016/j.conbuildmat.2018.02.180; Suleymanov, V., El-Husseiny, A., Glatz, G., & Dvorkin, J. (2023). Rock physics and machine learning comparison: elastic properties prediction and scale dependency. Frontiers in Earth Science, 11. https://doi.org/10.3389/feart.2023.1095252; The determination of the elastic field of an ellipsoidal inclusion, and related problems. (n.d.). http://rspa.royalsocietypublishing.org/; Wals, J. B. (1965). The Effect of Cracks on the Uniaxial Elastic Compression of Rocks. In •ANUA•Y (Vol. 70, Issue 2).; Wang, M., Yu, Z., Jin, Y., & Shao, J. (2020). Modeling of damage and cracking in heterogeneous rock-like materials by phase-field method. https://www.sciencedirect.com/science/article/pii/S0093641320301403; Wang, Y., Zhao, L., Han, D. H., Mitra, A., Li, H., & Aldin, S. (2021). Anisotropic dynamic and static mechanical properties of organic-rich shale: The influence of stress. Geophysics, 86(2), C51–C63. https://doi.org/10.1190/geo2020-0010.1; Wang, Z., & Gelius, L. J. (2010). Electric and elastic properties of rock samples: A unified measurement approach. Petroleum Geoscience, 16(2), 171–183. https://doi.org/10.1144/1354-079309-013; Xu, D., Han, T., Liu, S., & Fu, L. Y. (2020). Effects of randomly orienting penny-shaped cracks on the elastic properties of transversely isotropic rocks. Geophysics, 85(6), MR325–MR340. https://doi.org/10.1190/geo2019-0678.1; Xu, S., Ben-Zion, Y., Ampuero, J. P., & Lyakhovsky, V. (2015). Dynamic Ruptures on a Frictional Interface with Off-Fault Brittle Damage: Feedback Mechanisms and Effects on Slip and Near-Fault Motion. Pure and Applied Geophysics, 172(5), 1243–1267. https://doi.org/10.1007/s00024-014-0923-7; Yan, F., & Han, D. H. (2018). Application of the power mean to modeling the elastic properties of reservoir rocks. Journal of Geophysics and Engineering, 15(6), 2686–2694. https://doi.org/10.1088/1742-2140/aae3be; Yu, D., Liu, E., Xiang, B., He, Y., Luo, F., & He, C. (2023). A micro–macro constitutive model for rock considering breakage effects. International Journal of Mining Science and Technology, 33(2), 173–184. https://doi.org/10.1016/j.ijmst.2022.09.027; Zamiran, S., Rafieepour, S., & Ostadhassan, M. (2018). A geomechanical study of Bakken Formation considering the anisotropic behavior of shale layers. Journal of Petroleum Science and Engineering, 165, 567–574. https://doi.org/10.1016/j.petrol.2018.02.059; Zhao, J., Qin, X., Wang, J., & He, M. (2020). Effect of mg(Ii) and na(i) doping on the electronic structure and mechanical properties of kaolinite. Minerals, 10(4). https://doi.org/10.3390/min10040368; https://hdl.handle.net/10901/30484
الاتاحة: https://hdl.handle.net/10901/30484
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12Academic Journal
المصدر: Informador Técnico, Vol 86, Iss 1, Pp 46-68 (2022)
مصطلحات موضوعية: bibliometrix, covid-19, formación mixta, sistemas de enseñanza, tree of science, tic, Engineering (General). Civil engineering (General), TA1-2040, Technology (General), T1-995
وصف الملف: electronic resource
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13Academic Journal
المؤلفون: Echeverri-Rubio, Alejandro, Vieira-Salazar, Jaime Andrés, Ramírez-Cardona, Adriana, Mejía-Franco, Natalia
المصدر: Clío América; Vol. 17 No. 34 (2023): july- december 2023 ; Clío América; Vol. 17 Núm. 34 (2023): julio - diciembre 2023 ; 2389-7848 ; 1909-941X
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14Academic Journal
المؤلفون: Martínez-Pinzón, César Aníbal
المصدر: Interfaces; Vol. 6 Núm. 2 (2023) ; 2619-4465 ; 2619-4473
مصطلحات موضوعية: Medición de Activos Intangibles, Análisis Cienciométrico, Capital Intelectual, Reputación Corporativa, Innovación Tecnológica en AI, Árbol de la Ciencia, Intangible Assets Measurement, Scientometric Analysis, Intellectual Capital, Corporate Reputation, Technological Innovation in IA, Tree of Science
وصف الملف: application/pdf
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15Academic Journal
المؤلفون: Morales Sánchez, Viviana Andrea, Zuluaga-García, Joohan Andrés, Aguirre Salazar, Juan David, Aristizábal-Buitrago, Diomer, Ruiz Montilla, Ana Marcela
المصدر: Interfaces; Vol. 5 Núm. 2 (2022) ; 2619-4465 ; 2619-4473
مصطلحات موضوعية: Pectina, biodegradables, polímeros, Tree of Science, seguridad ambiental, Pectin, biodegradable, polymers, environmental safety
وصف الملف: application/pdf
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16Academic Journal
المؤلفون: Alexis-Tahta, Joaquin
المصدر: Interfaces; Vol. 6 Núm. 1 (2023) ; 2619-4465 ; 2619-4473
مصطلحات موضوعية: Inteligencia Artificial, Administración, Revisión, Tree of Science, Aprendizaje de maquinaria, Aprendizaje profundo, Administración de cadenas de abastecimiento, Recursos humanos, Cienciometría, Artificial Intelligence, Management, Review, Machine Learning, Deep Learning, Big Data, Supply Chain Management, Human Resources, Scientometrics
وصف الملف: application/pdf
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17Academic Journal
المصدر: Interfaces; Vol. 5 Núm. 2 (2022) ; 2619-4465 ; 2619-4473
مصطلحات موضوعية: Huertas, Caseras, Comunitarias, tree of science, sostenibilidad, Orchards, Homemade, Community, sustainability
وصف الملف: application/pdf
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18Academic Journal
المؤلفون: Ruiz-Montilla, Ana Marcela, Franco-Gómez, Roby Esneyder, Morales-Sánchez, Viviana Andrea, Zuluaga-Buritica, Mary Luna
المصدر: Interfaces; Vol. 5 Núm. 2 (2022) ; 2619-4465 ; 2619-4473
مصطلحات موضوعية: Parabenos, agua, contaminantes emergentes, Tree of Science, cienciometría, Parabens, water, emerging pollutans, scientometrics
وصف الملف: application/pdf
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19Academic Journal
المؤلفون: Kelly Andrea Aguirre, Diego Paredes Cuervo
المصدر: Sustainability; Volume 15; Issue 9; Pages: 7164
مصطلحات موضوعية: water governance, water safety, water supply, water management, scientometrics, literature review, Tree of Science
جغرافية الموضوع: agris
وصف الملف: application/pdf
Relation: Sustainable Water Management; https://dx.doi.org/10.3390/su15097164
الاتاحة: https://doi.org/10.3390/su15097164
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20Academic Journal
المؤلفون: Erazo Muñoz, Pablo Andrés, Corredor Reyes, Karen Dayana, Corrales Otalvaro, Lauren Melissa
المصدر: Revista Perspectiva Empresarial; Vol. 10 No. 1 (2023): january -June; 132-149 ; Revista Perspectiva Empresarial; Vol. 10 Núm. 1 (2023): enero-junio; 132-149 ; Revista Perspectiva Empresarial; v. 10 n. 1 (2023): janeiro -junho; 132-149 ; 2389-8194 ; 2389-8186
مصطلحات موضوعية: Work motivation, Bibliometric analysis, Self-determination theory, Tree of science, motivación laboral, análisis bibliométrico, teoría de la autodeterminación, árbol de la ciencia, motivação para o trabalho, análise bibliométrica, teoria da autodeterminação, árvore da ciência
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Relation: https://revistas.ceipa.edu.co/index.php/perspectiva-empresarial/article/view/822/1140; https://revistas.ceipa.edu.co/index.php/perspectiva-empresarial/article/view/822/1149; https://revistas.ceipa.edu.co/index.php/perspectiva-empresarial/article/view/822/1188; Acevedo, J.P., Robledo, S. y Sepúlveda, M.Z. (2020). Subáreas de internacionalización de emprendimientos: una revisión bibliográfica. Económicas CUC, 42(1), 249-268. https://doi.org/10.17981/econcuc.42.1.2021.Org.7; Arenas, C.Z. et al. (2020). La vigilancia científica como apoyo a la gestión educativa: un análisis bibliométrico de la formación en Gestión de la Producción Industrial. Rutas de formación: Prácticas y Experiencias, 10, 60-75. https://doi.org/10.24236/24631388.n.2020.3396; Aria, M. and Cuccurullo, C. (2017). bibliometrix: An R-tool for comprehensive science mapping analysis. Journal of Informetrics, 11(4), 959-975. https://doi.org/10.1016/j.joi.2017.08.007; Aria, M., Misuraca, M. and Spano, M. (2020). 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