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Application Of Inverted Pendulum in Laplace Transformation of Mathematics Physics Trisonia Fitria; Wipsar Sunu Brams Dwandaru; Warsono; R. Yosi Aprian Sari; Dian Puspita Eka Putri; Adiella Zakky Juneid
Jurnal Penelitian Pendidikan IPA Vol 9 No 7 (2023): July
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v9i7.2953

Abstract

The Laplace transform is a technique used to convert differential equations into algebra, it is often used for the analysis of dynamic systems and inverted pendulum systems. An inverted pendulum is a mechanism that moves objects from one place to another and shows the function of its activity while walking. This system is widely used in various fields, for example in the fields of robotics, industry, technology and organics. In an inverted pendulum there is an inverted pendulum dynamic system with a reading and driving force. The type of research used is pure research with quantitative methods, the aim is to develop science that aims to find new theories and develop existing theories in natural science. The results of the study show that using the Laplace transform can make it easier to find solutions regarding the inverted pendulum system for a variety of conditions, both in the initial conditions and when given an additional force or load, so it is concluded the application of the Laplace transform is useful for understanding how an inverted pendulum system will react to various forces, loads and initial conditions, which can be used to predict how the system will operate in the real world.
PERKEMBANGAN PENELITIAN PENDEKATAN STEAM PADA PEMBELAJARAN FISIKA DI INDONESIA: A SYSTEMATIC LITERATURE REVIEW Trisonia Fitria; Heru Kuswanto; Wipsar Sunu Brams Dwandaru; Jumadi Jumadi; Dian Puspita Eka Putri; Adiella Zakky Juneid
EDUSAINS Vol 15, No 1 (2023): EDUSAINS
Publisher : Faculty of Education and Teacher Training, UIN (State Islamic University) Syarif Hidayatul

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.15408/es.v15i1.29929

Abstract

The impact of the STEAM approach in education can help students have 21st Century skills. This study aims to review the development of STEAM approach research on physics learning in Indonesia. Systematic literature review research with the content analysis method was used to review articles published from 2018-2022. The analysis techniques carried out are identification, screening and analysis. Assessment of article inclusion and quality is done to avoid bias in research. There were 28 articles that were in accordance with the focus of this study. The results of the study are the most widely used type of experimental research, the subject of research is at the junior high school level students grade VII and VIII with a sample number of 20-45 students. Test research instruments are widely used by examining light and optical materials. The variable that is often measured is creative thinking skills. Learning media integrated with the PjBL-STEAM model is the most widely used choice. Therefore, research variables that have not been measured are representation skills and higher-order thinking skills aspects of problem solving and physical materials that have never been used for testing are rigid body equilibrium, work and energy, temperature and heat, newton's laws, electromagnetic, electrical and parabolic motion, so further study is needed on its implementation with the STEAM approach.ABSTRAKDampak pendekatan STEAM dalam pendidikan dapat membantu siswa memiliki keterampilan Abad ke-21. Penelitian ini bertujuan meninjau perkembangan penelitian pendekatan STEAM pada pembelajaran fisika di Indonesia. Penelitian systematic literature review dengan metode konten analisis digunakan meninjau artikel yang terbit dari tahun 2018-2022. Teknik analisis yang dilakukan adalah identifikasi, screening dan analisis. Penilaian inklusi dan kualitas artikel dilakukan untuk menghindari bias pada penilitian. Didapatlah 28 artikel yang memiliki kesesuaian dengan fokus penelitian ini. Hasil penelitian adalah jenis penelitian eksperimen paling banyak digunakan, subjek penelitiannya pada siswa tingkat SMP kelas VII dan VIII dengan jumlah sampelnya 20-45 siswa. Instrumen penelitian tes banyak digunakan dengan meneliti materi cahaya dan optik. Variabel yang sering diukur adalah keterampilan berpikir kreatif. Media pembelajaran yang terintegrasi model PjBL-STEAM menjadi pilihan paling banyak digunakan. Oleh karena itu, variabel penelitian yang belum diukur adalah keterampilan representasi dan keterampilan berpikir tingkat tinggi aspek pemecahan masalah dan materi fisika yang belum pernah digunakan untuk pengujian adalah kesetimbangan benda tegar, usaha dan energi, suhu dan kalor, hukum newton, elektromagnetik, kelistrikan dan gerak parabola, sehingga hal tersebut diperlukannya kajian lebih lanjut mengenai implementasinya dengan pendekatan STEAM.
A Systematic Literature Review: Implementasi Computational Thinking pada Pembelajaran Fisika di Indonesia Ulil Khasanah; Supahar Supahar; Trisonia Fitria; Nia Hani Prasasti; Effendi Malik
Jurnal Penelitian Pendidikan IPA Vol 11 No 3 (2025): March
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v11i3.6675

Abstract

The implementation of computational thinking in learning can help students have 21st century skills. This research aims to review the implementation of computational thinking in physics learning in Indonesia. Systematic literature review research using content analysis methods was used to review articles published from 2019 to 2023. The analysis techniques used were planning, conducting and reporting. Of the 170 articles, there are 20 articles that match the focus of this research. The results of the research are the type of experimental research that is most widely used with test instruments. The research subjects were high school students. Physics materials that are often used in research are kinematics and energy and work. Computational thinking is widely integrated with learning media. The media often used by researchers is scratch. This research needs to be studied further with other inclusion criteria so that there are more references regarding the implementation of computational thinking, especially in physics learning