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Utilization of Microsoft Power Point Applications as Physics Learning Media Interactive On Diode Material Abdin Abdin; Kasman Kasman; Asrun Safiuddin; La Ode Rusman
Prisma Sains : Jurnal Pengkajian Ilmu dan Pembelajaran Matematika dan IPA IKIP Mataram Vol 11, No 1: January 2023
Publisher : IKIP Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.33394/j-ps.v11i1.6605

Abstract

This study aims to provide new innovations in the use of Microsoft Power Point applications as interactive physics learning media on diode material. In addition, it motivates physics teachers to use technology in the implementation of learning in class. The target of this research is in the form of products resulting from the use of the Microsoft PowerPoint application as an interactive physics learning medium on diode material. This research method is research and development using a development model consisting of five stages, namely: (1) preliminary investigation; (2) design (3) realization/construction (realization/construction); (4) test, evaluation, and revision (test, evaluation, and revision); (5) implementation (implementation). The results of this study are the creation of interactive physics learning media through power point applications with the plomp model known as 5 stages, namely the initial investigation stage, design, realization/construction, test evaluation and revision and implementation. Power point interactive learning media is generally declared feasible to use after going through several trials carried out with material expert tests, media expert tests by looking at the results of the assessment of the two validators with a value obtained of 77.50 including the valid category for material experts and media experts obtaining a score of 78.46 is included in the valid category. It can also be seen that the effectiveness of learning media through the ability of student learning outcomes with a pretest score of 64.00 and a posttest score of 84.00 shows a significant increase in student learning outcomes.
Development of Case Method-Based Learning Tools to Enhance Learning Outcomes in Engineering Physics Course Erniwati Erniwati; Wa Ode Nirwana Sari Halidun; Kasman Kasman; Abdin Abdin; Muhammad Sirih
Jurnal Pendidikan Fisika Indonesia Vol. 22 No. 1 (2026)
Publisher : Universitas Negeri Semarang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15294/jpfi.v22i1.6341

Abstract

This study aims to develop a learning tool using the case method in an engineering physics course. The 4D (define, design, develop, disseminate) development model is used as the methodology. The development model is used to determine the feasibility and effectiveness of learning tools in improving the learning outcome. The validation sheet, questionnaire, and written test sheet were used as the data collection techniques. The validation sheet consists of construction and content validation. The questionnaire is used to collect descriptive data on the practical teaching materials test, and the written test sheet consists of a pretest and a post-test, which are used to determine learning outcomes improvement. The validation test results showed that the case-based learning tools in the engineering physics course were categorized as very valid. The practicality of case-based learning tools is evaluated through an analysis of lecturer and student responses. The results showed that the practical case-based learning tools were rated as very practical. Effectiveness can be determined from the N-gain score from the pretest and posttest. The result showed that the N-gain score was in the medium range, indicating improvement in the learning outcome. According to the results above, the development of learning tools using the case method has been declared feasible and effective for application in the engineering physics course.