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A Gap Study between Employers’ Expectations in Thailand and Current Competence of Master’s Degree Students in Industrial Engineering under Industry 4.0


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Abdel-Basset, M., Mohamed, M., Smarandache, F., 2018. An Extension of Neutrosophic AHP–SWOT Analysis for Strategic Planning and Decision-Making, Symmetry, 10(4), 116.10.3390/sym10040116Search in Google Scholar

Bonekamp, L., Sure, M., 2015. Consequences of Industry 4.0 on Human Labour and Work Organisation, Journal of Business and Media Psychology, 6(1), 33-40.Search in Google Scholar

Chouhan, S., Mehra, P., Dasot, A., 2017. India’s Readiness for Industry 4.0 – A Focus on Automotive Sector, Confederation of Indian Industry (CII), Grant Thornton-An instinct for growth.Search in Google Scholar

Coskun, S., Gençay, E., Kayikci, Y., 2019. Adapting Engineering Education to Industry 4.0 Vision, Technologies, 7(10), 1-13, DOI: 10.3390/technologies701001010.3390/technologies7010010Search in Google Scholar

Dumitrescu, A., Lima, R., Chattinnawat, W., Savu, T., 2019. Industry 4.0 competencies’ gap analysis. Industry 4.0, 4(3), 138-141.Search in Google Scholar

Galankashi, M. R., Helmi, S. A., Hashemzahi, P., 2016. Supplier Selection in Automobile Industry: A Mixed Balanced Scorecard–fuzzy AHP Approach. Alexandria Engineering Journal, 55(1), 93-100.10.1016/j.aej.2016.01.005Search in Google Scholar

Horvat, D., Stahlecker, T., Zenker, A., Lerch, C., Mladineo, M., 2018. A Conceptual Approach to Analysing Manufacturing Companies’ profiles Concerning Industry 4.0 in Emerging Economies, Procedia Manufacturing, 17, 419-426.10.1016/j.promfg.2018.10.065Search in Google Scholar

Kádárová, J., Kováč, J., Durkáčová, M., Kádárb., G, 2014. Education in Industrial Engineering in Slovakia, Procedia - Social and Behavioral Sciences, 143, 156-162.10.1016/j.sbspro.2014.07.379Search in Google Scholar

Lee, Y.C., Wang, Y.C., Chien, C.H., Wu, C.H., Lu, S.C., Tsai, S.B., Dong, W., 2016. Applying Revised Gap Analysis Model in Measuring Hotel Service Quality, SpringerPlus, 5(1), 1191.10.1186/s40064-016-2823-z496334027516929Search in Google Scholar

Leyh, C., Schäffer, T., Bley, K., Forstenhäusler, S., 2016. SIMMI 4.0 – A Maturity Model for Classifying the Enterprise-wide IT and Software Landscape Focusing on Industry 4.0, Proceedings Of The 2016 Federated Conference on Computer Science and Information Systems, 8, 1297–1302, DOI: 10.15439/2016f47810.15439/2016F478Search in Google Scholar

Lima, R.M., Mesquita, D., Sousa, R.M., Monteiro, M.T.T., Cunha, J., 2019. Curriculum analysis process: Analysing fourteen industrial engineering programs.Search in Google Scholar

Luthra, S., Mangla, S.K., 2018. Evaluating Challenges to Industry 4.0 Initiatives for Supply Chain Sustainability in Emerging Economies, Process Safety and Environmental Protection, 117, 168-179.10.1016/j.psep.2018.04.018Search in Google Scholar

Machado, C.G., Winroth, M., Carlsson, D., Almström, P., Centerholt, V., Hallin, M., 2019. Industry 4.0 Readiness in Manufacturing Companies: Challenges and Enablers Towards Increased Digitalization, Procedia CIRP, 81, 1113-1118, DOI: 10.1016/j.procir.2019.03.26210.1016/j.procir.2019.03.262Search in Google Scholar

McKinsey & Company, 2016. Industry 4.0 at McKinsey’s model factories, Retrieved from https://capability-center.mckinsey.com/files/mccn/2017-03/digital_4.0model_factories_brochure_2.pdfSearch in Google Scholar

Muhisn, Z.A.A., Omar, M., Ahmad, M., Muhisn, S.A., 2015. Team Leader Selection by Using an Analytic Hierarchy Process (AHP) Technique, JSW, 10(10), 1216-1227.10.17706//jsw.10.10.1216-1227Search in Google Scholar

Nick, G., Szaller, Á., Bergmann, J., Várgedő, T., 2019. Industry 4.0 Readiness in Hungary: Model, and the First Results in Connection to Data Application, IFAC PaperOnLine, 52(13), 289-294.10.1016/j.ifacol.2019.11.185Search in Google Scholar

Patacsil, F.F., Tablatin, C.L.S., 2017. Exploring the Importance of Soft and Hard Skills as Perceived by IT Internship Students and Industry: A gap Analysis. Journal of Technology and Science Education, 7(3), 347-368.10.3926/jotse.271Search in Google Scholar

Pawar, S.S., Rathod, R.R., 2019. A Decision Support System Using Analytical Hierarchy Process for Student-Teacher-Industry Expectation Perspective: In Computing, Communication and Signal Processing, Springer, Singapore, 523-534.10.1007/978-981-13-1513-8_54Search in Google Scholar

Petruni, A., Giagloglou, E., Douglas, E., Geng, J., Leva, M.C., Demichela, M., 2019. Applying Analytic Hierarchy Process (AHP) to Choose a Human Factors Technique: Choosing the Suitable Human Reliability Analysis Technique for the Automotive Industry, Safety Science, 119, 229-239.10.1016/j.ssci.2017.05.007Search in Google Scholar

Pimentel, C., Silva, H., Dias, M.F., Amorim, M., 2016. Transversal entrepreneurial competencies for youth employability –a GAP analysis. Proceedings of 2100 Projects Association Join Conferences 5.Search in Google Scholar

Pinzone, M., Fantini, P., Perini, S., Garavaglia, S., Taisch, M, Miragliotta, G., 2017. Jobs and skills in Industry 4.0: An exploratory research. In IFIP International Conference on Advances in Production Management System, Springer, Cham, 282-288.10.1007/978-3-319-66923-6_33Search in Google Scholar

Ramadi, E., Ramadi, S., Nasr, K., 2016. Engineering Graduates’ skill Sets in the MENA Region: a Gap Analysis of Industry Expectations and Satisfaction, European Journal of Engineering Education, 41(1), 34-52.10.1080/03043797.2015.1012707Search in Google Scholar

Sadeghpour, F., Far, M.G., Khah, A.R., Amiri, M.A.A., 2017. Marketing Strategic Planning and Choosing the Right Strategy using AHP Technique (Case Study: Ghavamin Bank Mazandaran), Dutch Journal of Finance and Management, 1(2), 45.10.29333/djfm/5821Search in Google Scholar

Schumacher, A., Erol, S. & Sihn, W., 2016. A Maturity Model for Assessing Industry 4.0 Readiness and Maturity of Manufacturing Enterprises, procedia CIRP 52, 161-166, DOI: 10.1016/j.procir.2016.07.04010.1016/j.procir.2016.07.040Search in Google Scholar

Schumacher, A., Nemeth, T., Sihn, W., 2019. Roadmapping Towards Industrial Digitalization based on an Industry 4.0 Maturity Model for Manufacturing Enterprises, Procedia CIRP, 79, 409-414.10.1016/j.procir.2019.02.110Search in Google Scholar

VDMA’s IMPULS-Stiftung, 2015. Industrie 4.0-readiness, Retrieved from https://industrie40.vdma.org/documents/4214230/5356229/Industrie%204.0%20Readiness%20Study%20English.pdf/f6de92c1-74ed-4790-b6a4-74b30b1e83f0Search in Google Scholar