Coordination of The Apprenticeship Industrial Program with The Siakama Application

Henny Yustisia - Universitas Negeri Padang,25171,Indonesia
Laras Oktavia Andreas - Universitas Negeri Padang,25171,Indonesia
Risma Apdeni - Universitas Negeri Padang,25171,Indonesia
Bambang Heriyadi - Universitas Negeri Padang,25171,Indonesia
Jusmita Weriza - Universitas Eka Sakti, Padang, 25115, Indonesia


Citation Format:



DOI: http://dx.doi.org/10.62527/joiv.8.1.2245

Abstract


This research aims to examine the implementation of the SIAKAMA application in the Apprenticeship Industrial Program. This program was created as a SIAKAMA application to overcome hurdles during the monitoring and evaluation stages. At the monitoring stage, supervising lecturers and field supervisors can use the SIAKAMA application to monitor all Apprenticeship Industrial program student activities in the field, resulting in a good and smooth communication and coordination system. At the evaluation stage, the supervising lecturer and field supervisors in the SIAKAMA application can conduct assessments based on student activities in the field, including daily evaluations and final assessments after the Apprenticeship Industrial Program has been finished. This study employs a quantitative descriptive technique, the Research & Development method, and the 4D development model. A sample of Apprenticeship Industrial Program students from five departments of the Faculty of Engineering, Padang State University, was used in this study. The SIAKAMA application was found to be valid with a value of 0.876, practical with a value of 78.67, and effective with a value of 81.22% after data analysis using SPSS 25. This suggests that implementing the SIAKAMA application to enhance the work competency of Apprenticeship Industrial Program students is viable. The Apprenticeship Industrial Program model represents a modification of the Three Set of Actor development model, yet it hasn't been incorporated with the Industrial Revolution 4.0. Engaging in this Program enables students to acquire 4C skills, including Creativity and Innovation, Critical Thinking and Problem Solving, Communication, and Collaboration.


Keywords


Application; Apprenticeship Industrial Program; SIAKAMA; Student

Full Text:

PDF

References


Arina Hidayati, “Relevansi kompetensi lulusan sekolah menengah kejuruan dengan kebutuhan dunia usaha dan industri naskah publikasi,” 2015.

K. Ristekdikti, “Pengaturan Pendidikan Teknologi dan Kejuruan di Indonesia.” 2018.

U. H. I. ( U. ) F. UNP, Panduan Pengalaman Lapangan Industry. Padang, 2016.

T. K. Tee et al., “Design and Technology Teacher in TVET : A View on Thinking Style and Inventive Problem-Solving Skill,” J. Tech. Educ. Train., vol. 12 NO. 1 (, no. May, 2020.

A. P. Azodo, “Relatedness Of Student’ Work Industrial ExperienceTo The Prpfesional Skills And Competence Development In Engineering Career At Nigerian Universities,” vol. 8, no. 1, pp. 89–96, 2018.

H. Yustisia, “Curriculum Analysis of Prerequisite Course at Industrial Field Praktice ( IFP) ( Case Study : Competency Compliance ),” 2017, no. 08, pp. 9–11.

E. Kramer-Simpson, “Moving From Student to Professional : Industry Mentors and Academic Internship Coordinators Supporting Intern Learning in the Workplace,” 2018.

J. Zinth, “Work-Based Learning MODEL POLICY COMPONENTS,” 2018.

C. D. Russ-eft, “The SAGE Handbook of Workplace Learning Towards a Meta-Theory of Learning and Performance,” pp. 120–131, 2019.

H. Yustisia, “Pengembangan Model Program Pengalaman Industri Berbasis Revolusi Industri 4.0,” Universitas Negeri Padang, 2021.

I. Ahmad and D. Jenderal, “Proses Pembelajaran Digital dalam Era Revolusi Industri 4 . 0 Era Disrupsi Teknologi,” pp. 1–13, 2018.

S. Mutereko and V. Wedekind, “Work integrated learning for engineering qualifications : a spanner in the works ?,” vol. 9080, no. March, 2016.

N. Jalinus, H. Yustisia, and R. E. Wulansari, “Siakama Application to Enhance the Work Competency of Students in the Industrial Field Experience Program,” SAR J. - Sci. Res., vol. 6, no. 1, pp. 9–17, 2023.

T. L. Mccuen, “Industry Experience : An Important Requirement for Construction Faculty,” 2005.

T. T. Kiong, Y. M. Heong, W. B. Othman, J. B. M. Yunos, R. Bin Hassan, and M. M. B. Mohamad, “The Level of Marzano Higher Order Thinking Skillsamong Technical Education Students,” Int. J. Soc. Sci. Humanit., pp. 121–125, 2011.

H. Yustisia, N. Jalinus, F. Rizal, and Fadhillah, “A new approach of students’ industrial field experience program in the digital age,” J. Tech. Educ. Train., vol. 13, no. 1, pp. 167–175, 2021.

S. Thiagarajan, Instructional Development for Training Teachers of Exceptional Children, no. Mc. Indiana Univ., Bloomington. Center for Innovation in Teaching the Handicapped., 1974.

P. D. Sugiyono, Metode Penelitian Kombinasi (Mix Methods). Bandung, 2015.

S. Ramadhan, D. Mardapi, Z. K. Prasetyo, and H. B. Utomo, “The development of an instrument to measure the higher order thinking skill in physics,” Eur. J. Educ. Res., vol. 8, no. 3, pp. 743–751, 2019.

D. E. Bailey, “A Virtual Factory Teching System in Support of Manufacture Education,” J. Eng. Educ., vol. 87, 1998.

M. A. Chadd, J. & Anderson, “Career and Technical Education Research,” Illinois Work. Learn. programs Mentor. Knowl. Train., 2005.

V. L. Golich, S. Haynes, and S. Kreidler, “Using Public Private Partnerships to Accelerate Student Success Vicki L. Golich, Sandra Haynes, and Steve Kreidler,” vol. 29, no. 3, 2018.

A. Educator and F. Cs, “Preparing 21st Century Students for a Global Society An Educator ’ s Guide to the ‘ Four Cs ’ able of Contents,” 2010.

S. Zubaidah and U. N. Malang, “MENGENAL 4C : LEARNING AND INNOVATION SKILLS UNTUK MENGHADAPI,” no. October 2018, pp. 0–18, 2019.

M. ol. Narayanan, Fukami, “Determinants of Internship Effectiveness : An Exploratory Model,” vol. 9, no. 1, pp. 61–80, 2010.

P. D. Joseph Bishop, “Framework for 21st Century Learning,” A. 85701 Tucson, Ed. 177 N. Church Avenue, Suite 305, 2011.

L. Sugiyarti, A. Arif, and U. N. Jakarta, “Pembelajaran abad 21 di sd,” pp. 439–444, 2018.

Sukartono, “Revolusi Industri 4.0 dan Dampaknya terhadap Pendidikan di Indonesia,” FIP PGSD Univ. Muhammadiyah Surakarta, pp. 1–21, 2018.

H. Yustisia, Buku Petunjuk Aplikasi Sistem Akademik Mahasiswa (SIAKAMA) pada Program Pengalaman Lapangan Industri ( PLI ). Padang, 2022.

S. Blicblau, T. L. Nelson, and K. Dini, “Effects on Students of Working in Industry,” IJAC, vol. VOL. 8, no. no.4, pp. 32–36, 2015