Impacto de la impresión 3D en la productividad de la empresa Arte Costa S.A.S. de Barranquilla
datacite.rights | http://purl.org/coar/access_right/c_f1cf | |
dc.contributor.advisor | Armando Zapata, Emilio | |
dc.contributor.advisor | Urdaneta, Shirley María | |
dc.contributor.author | Rojas Sánchez, Elías Antonio | |
dc.contributor.author | Trujillo Rojas, Ervin Alfonso | |
dc.contributor.author | Lamadrid Camacho, Laura Vanessa | |
dc.date.accessioned | 2025-08-29T16:41:16Z | |
dc.date.available | 2025-08-29T16:41:16Z | |
dc.date.issued | 2025 | |
dc.description.abstract | La presente investigación tuvo como propósito evaluar el impacto de la impresión 3D en la productividad de la empresa Arte Costa S.A.S., ubicada en Barranquilla, con el fin de explorar cómo las tecnologías emergentes pueden contribuir a modernizar procesos productivos en sectores tradicionalmente artesanales. Para ello, se plantearon como variables de estudio la impresión 3D (variable independiente), entendida como una tecnología emergente de manufactura aditiva, y la productividad (variable dependiente), definida como el nivel de eficiencia alcanzado en los procesos de producción en relación con el uso de tiempo, materiales y recursos humanos. | spa |
dc.description.abstract | The purpose of this research was to evaluate the impact of 3D printing on the productivity of Arte Costa S.A.S., a company located in Barranquilla, in order to explore how emerging technologies can contribute to modernizing production processes in traditionally artisanal sectors. To this end, the study variables were 3D printing (independent variable), understood as an emerging additive manufacturing technology, and productivity (dependent variable), defined as the level of efficiency achieved in production processes in relation to the use of time, materials, and human resources. | eng |
dc.format.mimetype | ||
dc.identifier.uri | https://hdl.handle.net/20.500.12442/16894 | |
dc.language.iso | spa | |
dc.publisher | Ediciones Universidad Simón Bolívar | spa |
dc.publisher | Facultad de Administración y Negocios | spa |
dc.rights | Attribution-NonCommercial-NoDerivatives 4.0 International | eng |
dc.rights.accessrights | info:eu-repo/semantics/embargoedAccess | |
dc.rights.uri | http://creativecommons.org/licenses/by-nc-nd/4.0/ | |
dc.subject | Impresión 3D | spa |
dc.subject | Productividad | spa |
dc.subject | Personalización | spa |
dc.subject | Industria mobiliaria | spa |
dc.subject.keywords | 3D printing | eng |
dc.subject.keywords | Productivity | eng |
dc.subject.keywords | Customization | eng |
dc.subject.keywords | Furniture industry | eng |
dc.title | Impacto de la impresión 3D en la productividad de la empresa Arte Costa S.A.S. de Barranquilla | spa |
dc.type.driver | info:eu-repo/semantics/masterThesis | |
dc.type.spa | Trabajo de grado máster | |
dcterms.references | Álvarez Pinilla, A. (2015). La medición de la eficiencia y la productividad. Difusora Larousse - Ediciones Pirámide. https://elibro.net/es/lc/unisimon/titulos/49047 | spa |
dcterms.references | Business Wire. (2025). World Furniture Outlook 2025. https://www.businesswire.com/ | eng |
dcterms.references | Cámara de Comercio de Barranquilla. (2023). Estudio Económico y Social del Atlántico 2023. Barranquilla, Colombia. | spa |
dcterms.references | CEPAL. (2021). Datos y hechos sobre la transformación digital. https://www.cepal.org/ | spa |
dcterms.references | Corte Certo. (2025). Industria 4.0 en el Sector del Mobiliario: El Futuro de la Personalización y Eficiencia en la Producción. https://cortecerto.com/ | spa |
dcterms.references | La Nota Económica. (2022). Sector de muebles sigue creciendo en Colombia. https://lanotaeconomica.com.co/movidas-empresarial/sector-de-mueblessigue-creciendo-en-colombia | spa |
dcterms.references | Llanos Henríquez, A. (2011). Historia económica y comercial de Barranquilla. Editorial Universidad del Norte. | spa |
dcterms.references | Revista El Mueble y la Madera. (2018). Impacto del aumento de costos de producción en el sector mobiliario. Revista El Mueble y la Madera, 45(3), 12- 18. | spa |
dcterms.references | Spherical Insights & Consulting. (2024). Top 10 Global Furniture Industry Trends in 2024. https://www.sphericalinsights.com/ | eng |
dcterms.references | Statista. (2025). Furniture - Colombia | Statista Market Forecast. https://www.statista.com/ | eng |
dcterms.references | Universidad Simón Bolívar. (2025). Informe de investigación: Innovación y competitividad empresarial en el sector mobiliario. Barranquilla, Colombia. | spa |
dcterms.references | WMStrategy. (2025). Colombia: Furniture Industry - Analysis, Size, Trends. https://www.wm-strategy.com/ | eng |
dcterms.references | World Furniture Online. (2020). Furniture Outlook for Latin America and the Caribbean. https://www.worldfurnitureonline.com/ | eng |
dcterms.references | Concepto.de. (2024). Productividad: Concepto, tipos, factores y ejemplos. https://concepto.de/productividad/ | spa |
dcterms.references | Economipedia. (2024). Producción: Qué es, tipos y ejemplos. https://economipedia.com/definiciones/produccion.html | spa |
dcterms.references | Fontalvo Herrera, T., De La Hoz Granadillo, E., & Morelos Gómez, J. (2018). La productividad y sus factores: Incidencia en el mejoramiento organizacional. Dimensión Empresarial, 16(1), 47–62. https://doi.org/10.15665/dem.v16i1.1375 | spa |
dcterms.references | Psicología y Mente. (2024). Las 4 diferencias entre producción y productividad. https://psicologiaymente.com/organizaciones/diferenciasproduccion-productividad | spa |
dcterms.references | Ramírez Méndez, G. G., Magaña Medina, D. E., & Ojeda López, R. N. (2022). Productividad, aspectos que benefician a la organización. | spa |
dcterms.references | INTECH3D. (2021). ¿Cómo se aplica la impresión 3D en el sector mobiliario? https://intech3d.es/aplicacion-impresion3d-sector-mobiliario/ | spa |
dcterms.references | InnovaciónDigital360. (2024). Industria 4.0: qué es, en qué consiste y ejemplos. https://www.innovaciondigital360.com/industria-4-0/industria-4-0- que-es-en-que-consiste-y-ejemplos/ | spa |
dcterms.references | ProleanTech. (2024). ¿Qué es la impresión 3D? Proceso, tipos y aplicaciones. https://proleantech.com/es/what-is-3d-printing/ | spa |
dcterms.references | Salvador. (2021). Industria 4.0 y crisis sanitaria: el sector de muebles y mobiliario. https://www.salvadormachines.com/es/industria-4-0-y-crisissanitaria-el-sector-de-muebles-y-mobiliario | spa |
dcterms.references | SAP. (2024). ¿Qué es la industria 4.0? https://www.sap.com/latinamerica/products/scm/industry-4-0/what-isindustry-4-0.html | spa |
dcterms.references | Ahmet. (2024). Examination of Industry 4.0 Awareness, Perceptions, and Actions of Employees in Furniture and Board Businesses. https://fpj.kglmeridian.com/ | eng |
dcterms.references | Dusan, et al. (2024). Industry 4.0 technologies in a brazilian furniture industry. https://doi.org/10.5902/1983465974934 | eng |
dcterms.references | Červený, et al. (2022). The Potential of Smart Factories and Innovative Industry 4.0 Technologies. https://www.mdpi.com/1999-4907/13/12/2171 | eng |
dcterms.references | Červený, et al. (2022). Industry 4.0 as an Opportunity and Challenge for the Furniture Industry. https://www.mdpi.com/2071-1050/14/20/13325 | eng |
dcterms.references | Ratnasingam, et al. (2020). Assessing the Awareness and Readiness of the Malaysian Furniture Industry for Industry 4.0. https://www.researchgate.net/... | eng |
dcterms.references | Nguyen, et al. (2024). Design and Simulation Industrial Wood Furniture Manufacturing Plants. https://www.scopus.com/... | eng |
dcterms.references | Acosta, et al. (2021). Towards Industry Improvement in Manufacturing with DMAIC. https://www.scopus.com/... | eng |
dcterms.references | Chadge, R.B., et al. (2020). Critical Success Factors for Improving the Performance of Furniture Clusters in the Context of Industry 4.0. https://www.scopus.com/... | eng |
dcterms.references | Akbar, et al. (2020). The Industrial Revolution 4.0 and Entrepreneurial Orientation... Malaysian Furniture Industry. https://www.scopus.com/... | eng |
dcterms.references | Bambura, et al. (2020). Utilizing Computer Simulation to Optimize Furniture Production System. https://www.webofscience.com/... | eng |
dcterms.references | Jegatheswaran Ratnasingam, et al. (2019). Extent of Automation and the Readiness for Industry 4.0... Malaysian Furniture Manufacturers. https://bioresources.cnr.ncsu.edu/... | eng |
dcterms.references | Aiman A.F., et al. (2020). Design and Structural Analysis of 3D-Printed Modular Furniture Joints. https://www.scopus.com/... | eng |
dcterms.references | Buschmann, et al. (2024). Additive Manufacturing of Wood Composite Parts.... https://www.scopus.com/... | eng |
dcterms.references | Młody, M., & Ratajczak-Mrozek, M. (2023). Industry 4.0 Technologies and Managers' Decision-Making. https://www.scopus.com/... | eng |
dcterms.references | Zielenbach, et al. (2023). Customer Perspective On The Purchase and Use Of Sustainable And Innovative Furniture.... https://www.scopus.com/... | eng |
dcterms.references | Antonio Cimino, et al. (2019). Integrating multiple industry 4.0 approaches.... https://www.sciencedirect.com/... | eng |
dcterms.references | Šál, Jiří; Dědič, Martin. (2020). Application of Modeling Processes and 3D Print on Casting Molds for Concrete Furniture. https://www.scopus.com/... | eng |
dcterms.references | Suvanjumrat, C., et al. (2024). Large-scale screw-extrusion 3D printing for parawood/PLA furniture production. https://www.webofscience.com/... | eng |
dcterms.references | William de Paula Ferreira, et al. (2022). Extending the lean value stream mapping.... https://www.sciencedirect.com/... | eng |
dcterms.references | Yang, S., & Du, P. (2022). The Application of 3D Printing Technology in Furniture Design. https://www.webofscience.com/... | eng |
dcterms.references | Jarza, L., et al. (2023). Additive Technologies and Their Applications in Furniture Design and Manufacturing. https://www.webofscience.com/... | eng |
dcterms.references | Antonio Jimeno-Morenilla, et al. (2021). Technology enablers for Industry 4.0 in traditional manufacturing sectors. https://www.sciencedirect.com/... | eng |
dcterms.references | BCN3D. (2023). Impresoras 3D en la industria de la manufactura, casos de éxito. https://www.bcn3d.com/es/... | spa |
dcterms.references | Cámara Navarra. (2021). El impacto de la impresión 3D en los procesos de producción. https://ticnegocios.camaranavarra.com/... | spa |
dcterms.references | Ciencias Sin Límites. (2023). Avances en la impresión 3D en la ingeniería. https://cienciasinlimites.org/... | spa |
dcterms.references | IFEMA. (2021). La importancia de la impresión 3D en la industria 4.0. https://www.ifema.es/... | spa |
dcterms.references | Instituto Politécnico Nacional. (2023). Propuesta para el uso de las impresoras 3D en la reducción de costos.... http://hdl.handle.net/... | spa |
dcterms.references | Marcillo Parrales, K. G., Mero Lino, E. A., & Ortiz Hernández, M. M. (2021). Impresión 3D como eje de desarrollo en la industria 4.0. https://dialnet.unirioja.es/... | spa |
dcterms.references | Universitat Politècnica de Catalunya. (2023). Aplicaciones nuevas y futuras de la impresión 3D. https://upcommons.upc.edu/... | spa |
dcterms.references | Universitat Politècnica de València. (2023). Realidad virtual e impresión 3D aplicada al diseño y construcción de mobiliario. http://hdl.handle.net/... | spa |
dcterms.references | Universidad Nacional de Ingeniería. (2023). Tecnologías para la productividad y competitividad con impresoras 3D. https://repositorio.uni.edu.pe/... | spa |
dcterms.references | Zhang, Y., Li, X., & Wang, J. (2021). Model guided DLP 3D printing for solid and hollow structure. | eng |
dcterms.references | Lu, Y. (2017). Industry 4.0: A survey on technologies, applications and open research issues. Journal of Industrial Information Integration, 6, 1–10. https://doi.org/10.1016/j.jii.2017.04.005 | eng |
dcterms.references | Wamba, S. F., Gunasekaran, A., Akter, S., Ren, S. J., Dubey, R., & Childe, S. J. (2017). Big data analytics and firm performance: Effects of dynamic capabilities. Journal of Business Research, 70, 356–365. https://doi.org/10.1016/j.jbusres.2016.08.009 | eng |
dcterms.references | Jandyal, A., Chaturvedi, I., Wazir, I., Raina, A., & Haq, M. I. U. (2022). 3D printing – A review of processes, materials and applications in Industry 4.0. Sustainable Operations and Computers, 3, 33–42. https://doi.org/10.1016/j.susoc.2021.09.004 | eng |
dcterms.references | Fernández Franco, S., Graña, J. M., Rikap, C., & Robert, V. (2022). Industria 4.0 como sistema tecnológico: Los desafíos de la política pública. Gobierno de Argentina. https://www.argentina.gob.ar/sites/default/files/2021/03/37_- _industria_4.0.pdf | spa |
dcterms.references | Hernández, R., Fernández, C., & Baptista, P. (2014). Metodología de la investigación (6.ª ed.). México: McGraw-Hill. | spa |
dcterms.references | Kagermann, H., Wahlster, W., & Helbig, J. (2013). Recommendations for implementing the strategic initiative INDUSTRIE 4.0: Securing the future of German manufacturing industry. acatech – National Academy of Science and Engineering. https://www.acatech.de/wpcontent/uploads/2018/03/Final_report Industrie_4.0_accessible.pdf | eng |
dcterms.references | Teixeira, J. E., & Tavares-Lehmann, A. T. C. P. (2022). Industry 4.0 in the European Union: Policies and national strategies. Technological Forecasting and Social Change, 182, 121664. https://doi.org/10.1016/j.techfore.2022.121664 | eng |
dcterms.references | Lasi, H., Fettke, P., Kemper, H.G., Feld, T. and Hoffmann, M. (2014) Industry 4.0. Business & Information Systems Engineering, 6, 239-242. https://doi.org/10.1007/s12599-014-0334-4 | eng |
dcterms.references | Guijarro Gil, M. J., Ávila-Gutiérrez, M. J., Martín-Gómez, A. M., & Lama-Ruiz, J. R. (2024). De la Industria 4.0 a la Industria 5.0: un estudio y perspectiva de la evolución tecnológica. https://doi.org/10.61547/2403007 | spa |
dcterms.references | Baines, T. S., Lightfoot, H. W., Benedettini, O., & Kay, J. M. (2009). The servitization of manufacturing: A review of literature and reflection on future challenges. Journal of Manufacturing Technology Management, 20(5), 547– 567. | eng |
dcterms.references | Montagna, P., & Liotta, G. (2016). 3D CAD/CAM/CAE for industrial production. International Journal of Computer Integrated Manufacturing, 29(6), 615–626. | eng |
dcterms.references | Oropallo, W., & Piegl, L. (2016). Ten challenges in 3D printing. Engineering with Computers, 32(1), 135–148. | eng |
dcterms.references | Sanders, E. B.-N., & Stappers, P. J. (2008). Co-creation and the new landscapes of design. CoDesign, 4(1), 5–18. | eng |
dcterms.references | Buswell, R. A., Soar, R. C., Gibb, A. G. F., & Thorpe, T. (2007). Freeform construction: Megascale rapid manufacturing for construction. Automation in Construction, 16(2), 224–231. https://doi.org/10.1016/j.autcon.2006.05.002 | eng |
dcterms.references | Gibson, I., Rosen, D. W., & Stucker, B. (2021). Additive Manufacturing Technologies: 3D Printing, Rapid Prototyping, and Direct Digital Manufacturing (3rd ed.). Springer. https://link.springer.com/book/10.1007/978-1-4419-1120-9 | eng |
dcterms.references | Khoshnevis, B. (2004). Automated construction by contour crafting—related robotics and information technologies. Automation in Construction, 13(1), 5– 19.https://doi.org/10.1016/j.autcon.2003.08.012 | eng |
dcterms.references | Murphy, S., Atala, A. 3D bioprinting of tissues and organs. Nat Biotechnol 32, 773–785 (2014). https://doi.org/10.1038/nbt.2958 | eng |
dcterms.references | Ngo, T. D., Kashani, A., Imbalzano, G., Nguyen, K. T. Q., & Hui, D. (2018). Additive manufacturing (3D printing): A review of materials, methods, applications and challenges. Composites Part B: Engineering, 143, 172–196. https://doi.org/10.1016/j.compositesb.2018.02.012 | eng |
dcterms.references | Ozbolat, I. T., & Hospodiuk, M. (2016). Current advances and future perspectives in extrusionbased bioprinting. Biomaterials, 76, 321–343. https://doi.org/10.1016/j.biomaterials.2015.10.076 | eng |
dcterms.references | Rayna, T., & Striukova, L. (2016). From rapid prototyping to home fabrication: How 3D printing is changing business model innovation. Technological Forecasting and Social Change, 102, 214–224. https://doi.org/10.1016/j.techfore.2015.07.023 | eng |
dcterms.references | Berman, B. (2012). 3-D printing: The new industrial revolution. Business Horizons, 55(2), 155–162. https://doi.org/10.1016/j.bushor.2011.11.003 | eng |
dcterms.references | Carro, R., & González, E. (2012). Indicadores de productividad empresarial. Universidad Nacional de Colombia. Carro, R. González, D. Productividad y competitividad - Studocu | spa |
dcterms.references | Coelli, T., Rao, D. S. P., O’Donnell, C. J., & Battese, G. E. (2005). An Introduction to Efficiency and Productivity Analysis. Springer. An Introduction to Efficiency and Productivity Analysis - SpringerLink | eng |
dcterms.references | Ford, S., & Despeisse, M (2016). Additive manufacturing and sustainability: An exploratory study of the advantages and challenges. Journal of Cleaner Production, 137, 1573–1587. https://doi.org/10.1016/j.jclepro.2016.04.150 | eng |
dcterms.references | Gebler, M., Schoot Uiterkamp, A. J. M., & Visser, C. (2014). A global sustainability perspective on 3D printing technologies. Energy Policy, 74, 158–167. https://doi.org/10.1016/j.enpol.2014.08.033 | eng |
dcterms.references | Kamble, S. S., Gunasekaran, A., & Gawankar, S. A. (2018). Sustainable Industry 4.0 framework: A systematic literature review identifying the current trends and future perspectives. Process Safety and Environmental Protection, 117, 408–425. https://doi.org/10.1016/j.psep.2018.05.009 | eng |
dcterms.references | Ngo, T. D., Kashani, A., Imbalzano, G., Nguyen, K. T. Q., & Hui, D. (2018). Additive manufacturing (3D printing): A review of materials, methods, applications and challenges. Composites Part B: Engineering, 143, 172–196. https://doi.org/10.1016/j.compositesb.2018.02.012 | eng |
dcterms.references | Rayna, T., & Striukova, L. (2016). From rapid prototyping to home fabrication: How 3D printing is changing business model innovation. Technological Forecasting and Social Change, 102, 214–224. https://doi.org/10.1016/j.techfore.2015.07.023 | eng |
dcterms.references | Sumanth, D. J. (1996). Total Productivity Management (TPM). St. Lucie Press. https://doi.org/10.4324/9780367804596 | eng |
dcterms.references | Charles Knight. https://library.si.edu/digitallibrary/book/oneconomyofmac00babb | spa |
dcterms.references | Bloom, N., Sadun, R., & Van Reenen, J. (2019). Management as a Technology? American Economic Review, 109(5), 1038–1085. https://doi.org/10.1257/aer.20180277 | spa |
dcterms.references | Brynjolfsson, E., & McAfee, A. (2014). The Second Machine Age: Work, Progress, and Prosperity in a Time of Brilliant Technologies. W.W. Norton & Company. https://books.google.com.co/books?hl=es&lr=&id=WiKwAgAAQBAJ&oi=fnd &pg=PA1&dq=Brynjolfsson,+E.,+%26+McAfee,+A.+(2014).+The+Second+ Machine+Age:+Work,+Progress,+and+Prosperity+in+a+Time+of+Brilliant+T echnologies.+W.W.+Norton+%26+Company.&ots=4-XwQl-u8d&sig=g4xAbmt7HJB9k9IwTVcRdepvPk#v=onepage&q=Brynjolfsson%2C%20E.%2C% 20%26%20McAfee%2C%20A.%20(2014).%20The%20Second%20Machine %20Age%3A%20Work%2C%20Progress%2C%20and%20Prosperity%20in %20a%20Time%20of%20Brilliant%20Technologies.%20W.W.%20Norton% 20%26%20Company.&f=false | eng |
dcterms.references | George, D., & Mallery, P. (2003). SPSS for Windows step by step: A simple guide and reference (4th ed.). Allyn & Bacon. | eng |
dcterms.references | Hulten, C. R. (2001). Total Factor Productivity: A Short Biography. NBER Working Paper No. 7471. https://doi.org/10.3386/w7471 | eng |
dcterms.references | Drucker, P. F. (1999). Management Challenges for the 21st Century. HarperBusiness. | eng |
dcterms.references | https://doi.org/10.4324/9780080942384 | spa |
dcterms.references | Drucker, P. F. (1966). The Effective Executive. New York: Harper & Row. https://dtleadership.my/wp-content/uploads/2019/05/Drucker-2006-TheEffective-Executive-The-Definitive-Guide-to-Getting-the-Right-ThingsDone.pdf | eng |
dcterms.references | Keynes, J. M. (1936). The General Theory of Employment, Interest and Money. London: Macmillan. https://www.marxists.org/reference/subject/economics/keynes/generaltheory/ | eng |
dcterms.references | Krugman, P. (1994). The Age of Diminished Expectations. Cambridge, MA: MIT Press. https://mitpress.mit.edu/9780262611343/the-age-of-diminishedexpectations/ | eng |
dcterms.references | OECD (2001). Measuring Productivity: OECD Manual. Paris: OECD Publishing. https://www.oecd.org/publications/measuring-productivity9789264194519-en.htm | eng |
dcterms.references | OECD (2019). Green Growth Indicators 2019. Paris: OECD Publishing. https://www.oecd.org/env/green-growth-indicators-2019-9789264307438- en.htm | eng |
dcterms.references | Porter, M. E. (1985). Competitive Advantage: Creating and Sustaining Superior Performance. Free Press. https://www.hbs.edu/faculty/Pages/item.aspx?num=193 | eng |
dcterms.references | Smith, A. (1776). An Inquiry into the Nature and Causes of the Wealth of Nations. London: W. Strahan. http://gesd.free.fr/smith76bis.pdf | eng |
dcterms.references | Solow, R. M. (1957). Technical Change and the Aggregate Production Function. Review of Economics and Statistics, 39(3), 312–320. http://www.piketty.pse.ens.fr/files/Solow1957.pdf | eng |
dcterms.references | Cronbach, L. J. (1951). Coefficient alpha and the internal structure of tests. Psychometrika, 16(3), 297–334. https://doi.org/10.1007/BF02310555 | eng |
dcterms.references | Syverson, C. (2011). What Determines Productivity? Journal of Economic Literature, 49(2), 326–365. https://doi.org/10.1257/jel.49.2.326 | eng |
dcterms.references | Taylor, F. W. (1911). The Principles of Scientific Management. New York: Harper & Brothers. http://www.jstor.org/stable/1806906. Accessed 4 June 2025. | eng |
dcterms.references | UNDP (2020). Human Development Report 2020: The Next Frontier – Human Development and the Anthropocene. United Nations Development Programme. https://hdr.undp.org | eng |
dcterms.references | Dormer, P. (1997). The Culture of Craft: Status and Future. Manchester University Press. https://manchesteruniversitypress.co.uk/9780719046186/ | eng |
dcterms.references | Giedion, S. (1948). Mechanization Takes Command: A Contribution to Anonymous History. Oxford University Press. http://biopolitics.kom.uni.st/Siegfried%20Giedion/Mechanization%20Takes% 20Command_%20A%20Contribution%20to%20Anonymous%20History%20 (143)/Mechanization%20Takes%20Command_%20A%20Contributio%20- %20Siegfried%20Giedion.pdf | eng |
dcterms.references | Gómez, M., Moreno, S., & Ramírez, L. (2016). Sostenibilidad en la industria del mueble: prácticas empresariales y desempeño ambiental. Revista de Ingeniería y Desarrollo, 34(2), 45–56. https://ww2.ufps.edu.co/public/archivos/oferta_academica/c1e305df1bcc230 76a4f3fd71ac0834e.pdf | spa |
dcterms.references | OECD. (2017). Enhancing the Competitiveness of SMEs in the Furniture Sector. Paris: OECD Publishing. https://www.oecd.org https://www.oecd.org/en/publications/enhancing-smecompetitiveness_9789264192560-en.html | eng |
dcterms.references | OECD. (2021). E-commerce in the time of COVID-19. OECD Policy Responses. https://www.oecd.org/coronavirus/policy-responses/ecommerce-in-the-time-of-covid-19-3a2b78e8/ | eng |
dcterms.references | UNIDO. (2019). Industrial Upgrading and Modernization Programme for the Furniture Sector. Vienna: United Nations Industrial Development Organization. https://www.unido.org | eng |
dcterms.references | Verganti, R. (2009). Design-Driven Innovation: Changing the Rules of Competition by Radically Innovating What Things Mean. Harvard Business Press. | eng |
dcterms.references | https://www.researchgate.net/publication/235700886_Design_Driven_Innov ation_Changing_the_Rules_of_Competition_by_Radically_Innovating_What _Things_Mean | eng |
dcterms.references | World Economic Forum (WEF). (2022). The Future of Manufacturing in the Age of AI and Digitalization. https://www.weforum.org | eng |
oaire.version | info:eu-repo/semantics/acceptedVersion | |
sb.investigacion | Competitividad e Innovación | spa |
sb.programa | Maestría en Administración de Empresas e Innovación | spa |
sb.sede | Sede Barranquilla | spa |
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