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Pengaruh Model Self Organized Learning Environment dan Model Kooperatif STAD terhadap Kompetensi Pengetahuan ditinjau dari Kemandirian Belajar pada Materi Fluida Dinamis Adi Setiawan; Pujayanto Pujayanto; Ahmad Fauzi
Jurnal Penelitian Pendidikan IPA Vol 9 No 10 (2023): October
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v9i10.4522

Abstract

This study aims to investigate the differences in the effect of using Self-Organized Learning Environment and STAD cooperative learning models supported by the Sigil module on knowledge competency in terms of learning independence, and to investigate the differences in the effect of different categories of student learning independence on student knowledge competency. This study aim also to investigate interaction between learning independence with Self-Organized Learning Environment model and STAD cooperative learning model on student knowledge competency. The type of this research is a quasi-experiment. Using the cluster random sampling technique, class XI MIPA 1 was chosen as the experimental class, and class XI MIPA 3 as the control class. Data were collected using documentation, test, and questionnaire distribution methods. Data were analyzed using a two-way ANOVA technique followed by multiple comparison tests using Scheffe's method. The results of the study indicate that there is no difference in the effect of Self-Organized Learning Environment and STAD cooperative learning models supported by the Sigil module on students’ knowledge competency, and there is a difference in the effect between categories of student learning independence on knowledge competence. This study also proves that there is no interaction effect of the use of learning models and learning independence on knowledge competency.
Bahasa Inggris Destriana Kurniawati; Ahmad Fauzi; Rini Budiharti; Fairusy F Haryani
Jurnal Penelitian Pendidikan IPA Vol 9 No 10 (2023): October
Publisher : Postgraduate, University of Mataram

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.29303/jppipa.v9i10.5107

Abstract

The research aims to find out whether or not there are: differences in the impact of the use of learning models discovery learning and problem-based learning supported by media Moodle on cognitive abilities; differences in the influence of students with high and low science process skills on cognitional capabilities; and interactions between learning models discovery learning and problem-based learning with the level of skills of science processes against cognitives on sound wave materials with the research subject being students of class XI SMAN 1 Surakarta teaching 2022–2023. The method used is the experimental method with a 2x2 factorial design. The data collection techniques used are the science process skills lift and the cognitive ability test of the learners. The data obtained was then analyzed using a two-way ANAVA test with cell frequencies not equal to the conclusion. It can be concluded that: there are differences in the impact of the use of discovery learning and problem-based learning supported by Moodle on cognitive abilities (Fobs = 18.606 > F0.05;1;67 = 3.98); there is a difference in the influence of learners who have high science process skills and low science process abilities on cognition abilities (Fobs = 15.65 > F0.05;1;67 = 3.98); and there is no interaction between the influences of learning models using discovery learning and problem-based learning in cognition (Fobs = 3.514 < F0.05;1;67 = 3.98).
Training Evaluation For Scientific-Based Electronic Module Development Using Sigil Software In MGMP Physics Teacher Surakarta Shofi Hikmatuz Zahroh; Widha Sunarno; Pujayanto Pujayanto; Elvin Yusliana Ekawati; Ahmad Fauzi
SEMAR (Jurnal Ilmu Pengetahuan, Teknologi, dan Seni bagi Masyarakat) Vol 14, No 2 (2025): November
Publisher : LPPM UNS

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20961/semar.v14i2.98679

Abstract

Professional and skilled teachers in e-learning-based instructions are needed to support the implementation of instructions that corresponds to the dynamics of the development of science and technology. For this reason, training is necessary for sustainability, both at school and outside of school. E-learning-related training requires no small amount of funds. That can be a problem in the professional development of the MGMP Physics teacher in Surakarta. To overcome these problems, the Physics Education Study Program FKIP UNS with the Physics Teacher Association (MGMP) Surakarta held training to develop scientific-based physics electronics modules using sigil software on several topics, that is (1) Elasticity and Hooke's Law (2) Temperature, Heat, and Heat Transfer, (3) Rotational Dynamics, (4) Static Fluids, (5) Dynamic Fluids, and (6) Kinetic Theory Gas. This training has four activities, that is (1) the explanation of the material about the nature of scientific-based electronic modules, (2) the introduction of the sigil and the procedures for its use, (3) training and practice to develop scientific-based electronic modules using Sigil software, and (4) discussion of the results of the electronic module development.
Development of Electronic Physics Modules with a Scientific Approach Using the Lectora Inspire Application in Static Fluid Materials Atika Sella Wulandari Pasha; Suharno Suharno; Ahmad Fauzi
Jurnal Materi dan Pembelajaran Fisika Vol 14, No 1 (2024): Jurnal Materi dan Pembelajaran Fisika
Publisher : Universitas Sebelas Maret

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20961/jmpf.v14i1.86700

Abstract

This research aims to scientifically develop a Physics-based electronic module approach using the Lectora Inspire application on Static Fluid material, knowing the feasibility of the electronic module being developed. The type of research used is R&amp;D (Research and Development), with development procedures using the ADDIE model. However, the procedures carried out only reached the third stage: analysis, design, and Development. The data used in this research are qualitative and quantitative data obtained from research subjects. The analysis stage is carried out by analyzing the needs of teachers and students in Physics learning activities. The design stage is the design of compiling electronic modules according to the results of the needs analysis. The development stage was validated by two expert lecturers as expert validators, three teacher validators (users), and trials by students consisting of 3 students in one-on-one trials, nine students in small group trials, and 96 students in field trials. Product feasibility is obtained based on validation results from expert validators, teacher validators (users), and student trials. The data collection techniques used were documentation and questionnaires, which were analyzed based on Azwar's opinion. Based on the results of the research and discussion, it can be concluded that the results of expert validation obtained an average score of 110, teacher validation of 108.6 from a maximum score of 116, and the average score of one-on-one trial results was 21.33, the average of small group trials was 22.11, and the average of field trials was 23.05 so that The developed electronic module meets criteria very good. Hence, it is very suitable for use in high school learning.
Remidiasi Menggunakan Model Kooperatif STAD Pada Materi Momentum Dan Impuls Kelas X SMA Al Islam 1 Surakarta Tri Muzaeni; Ahmad Fauzi; Dwi Teguh Rahardjo
Jurnal Materi dan Pembelajaran Fisika Vol 13, No 1 (2023): Jurnal Materi dan Pembelajaran Fisika
Publisher : Universitas Sebelas Maret

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20961/jmpf.v13i1.67635

Abstract

The purpose of this study was to: find out that Remediation of Physics learning using the STAD (Student Teams Achievments Divisions) cooperative learning model can improve the cognitive abilities of students of class X MIA 3 on Momentum and Impulse material.This research is a quasi-experimental study using one class. This study uses a one-group pretest-posttest model. The data analysis technique uses quantitative techniques. Quantitative analysis is used to test the proposed hypothesis. The submission of the hypothesis in this study uses the t-test statistic (1 tail) to show an increase in students' cognitive physics abilities after the action.Based on the results of data analysis and discussion obtained from the research, it can be concluded that: Remediation of Physics Learning Using the STAD Cooperative Learning Model can improve the cognitive of class X MIA 3 SMA Al Islam 1 Surakarta on Momentum and Impulse material. Based on the hypothesis test that t count is greater than t table, namely tcount = 9.495&gt; ttable = 1.68830 which indicates that there is an increase in students' physical cognitive abilities. The amount of increase based on the gain index is 0.58 which is included in the medium category.
Computational Thinking and Scientific Modules: Effectiveness on Students' Cognitive Learning Outcomes and Critical Thinking Skills Silvia Yuni Safitri; Suharno Suharno; Ahmad Fauzi
Jurnal Materi dan Pembelajaran Fisika Vol 14, No 1 (2024): Jurnal Materi dan Pembelajaran Fisika
Publisher : Universitas Sebelas Maret

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20961/jmpf.v14i1.86266

Abstract

The purpose of the research is to find out whether or not 1) there were different effects using learning modules with Computational Thinking (CT) and scientific approaches, 2) different effects on students’ critical thinking ability in the high and low categories, 3) interaction between the effects using learning modules with CT and scientific approaches in the level of students’ critical thinking ability on cognitive learning outcomes in temperature and heat subject. This research method was quasi-experimental with a quantitative approach. The design used a non-equivalent post-test-only control group design and a 2x2 factorial design pattern.  The population was students of XI MIPA SMA Negeri 1 Kartasura in the academic year of 2021/2022. The sample was chosen using a cluster random sampling technique. Two classes were used as the samples: 36 students of XI MIPA 2 as the first experiment class and 36 students of XI MIPA 4 as the second experiment class—the data collecting technique used documentation, test, and questionnaire techniques. Data were analyzed using non-parametric test statistics, and the method was the Mann-Whitney test. The conclusions of the research results are: 1) there are no effects of using learning modules with CT and scientific approaches on cognitive learning outcomes, 2) there are no effects on student’s critical thinking ability in the high and low categories towards cognitive learning outcomes, 3) there is no interaction between the effects of using learning modules and students’ critical thinking ability on cognitive learning outcomes in temperature and heat subject. This study shows the effectiveness of applying learning modules with CT and scientific approaches to students' critical thinking skills on cognitive learning outcomes on Temperature and Heat material.
Newton's Law Learning Transformation: Interactive Android Application with Adobe Flash Professional CS6 Mochammad Irsyadul Haj; Ahmad Fauzi; Sri Budiawanti
Jurnal Materi dan Pembelajaran Fisika Vol 14, No 1 (2024): Jurnal Materi dan Pembelajaran Fisika
Publisher : Universitas Sebelas Maret

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20961/jmpf.v14i1.72586

Abstract

This study describes the product specifications and user assessment of Android-based physics learning media using Adobe Flash Professional CS6 with a scientific approach to Newton's Law material that is well-criteria in language, material, and media. This research and development uses a qualitative descriptive analysis approach developed by Branch (2009). Data analysis uses analysis techniques developed by Azwar (2007). The procedure for making this learning media is to Analyze, Design, and Develop. The results of this study are in the form of a learning media with (1) Physics learning media made is an android application-based learning media with the extension Application Package (.apk) with minimum specifications OS (Operating System) android v 7.0 Nougat, Snapdragon 435 chipset and CPU Octa-core Max 1.40GHz, with a minimum of having 2 GB RAM, 2 GB ROM, and 480 x 800 resolution. Physics learning media based on the material and lesson plans of Newton's Law material with a scientific approach. Physics learning media contains Learning, Material, Evaluation, and Settings pages with features such as simulation, movie clips, video, UI, scrolling text, swipe gallery, drag and drop, sound, and without internet (offline). (2) The physics learning media made has a validation value on the basha aspect of 43, the material of 71, and media 71, so the learning media validation value is 185 with a very good category. The physics learning media has an assessment response value from 3 teachers, namely 100% of teachers stated very well, and the assessment response value from 30 students, namely, 23% of students stated in the good category and 77% stated in the very good category. This research can be the basis for developing interactive android application with Adobe Flash Professional CS6 for Newton's Law material.
Pengembangan Alat Peraga Fisika dengan Waterflow Sensor pada Materi Asas Kontinuitas untuk Siswa SMA Kelas XI Khairunnisa Arief Nurfajrihana; Daru Wahyuningsih; Ahmad Fauzi
Jurnal Materi dan Pembelajaran Fisika Vol 12, No 1 (2022): Jurnal Materi dan Pembelajaran Fisika
Publisher : Universitas Sebelas Maret

Show Abstract | Download Original | Original Source | Check in Google Scholar | Full PDF (2294.698 KB) | DOI: 10.20961/jmpf.v12i1.60299

Abstract

Penelitian ini bertujuan untuk: (1) mengembangkan alat peraga asas kontinuitas dengan sensor waterflow untuk siswa SMA yang memenuhi kriteria baik, (2) menjelaskan spesifikasi alat peraga asas kontinuitas dengan sensor waterflow untuk siswa SMA yang telah dikembangkan. Metode penelitian ini adalah Research and Development (R&amp;D) dengan model pengembangan 4D yang hanya dilakukan hingga tahap ketiga (tahap pengembangan). Kesimpulan hasil penelitian ini adalah: (1) penelitian ini telah berhasil mengembangkan alat peraga fisika menggunakan sensor waterflow pada materi asas kontinuitas untuk siswa SMA kelas XI yang memenuhi kriteria sangat baik, dengan rata-rata penilaian validasi 89% dan uji coba lapang 91%, (2) spesifikasi alat peraga yang dikembangkan antara lain: (a) memiliki ukuran sebelum dirangkai (48*30*28) cm dan ukuran (90* 30*70) cm setelah dirangkai, (b) menggunakan bahan yang aman bagi peserta didik, (c) alat peraga menggunakan 2 buah sensor waterflow YF-S201 serta venturimeter dengan 2 jenis luas pipa penampang, (d) berguna untuk pembuktian asas kontinuitas berdasarkan pengukuran debit air oleh waterflow sensor dan dilengkapi dengan venturimeter, (e) alat peraga ini ditujukan sebagai pendukung pembelajaran dalam rangka memperoleh pengalaman belajar langsung pada materi asas kontinuitas Fisika SMA kelas XI.
Does Using Sigil E-Modules Impact High School Students' Knowledge and Curiosity? A Quantitative Analysis Ernawati Ernawati; Rini Budiharti; Ahmad Fauzi
Jurnal Materi dan Pembelajaran Fisika Vol 14, No 1 (2024): Jurnal Materi dan Pembelajaran Fisika
Publisher : Universitas Sebelas Maret

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20961/jmpf.v14i1.86256

Abstract

This classroom action research has a purpose : (1)  Implementing the sigil e-module to increase the knowledge competence of class XI MIPA 5 students at SMA Negeri Kebakkramat for the 2021/2022 Academic Year on temperature, heat, and heat transfer, (2)  Implementing the sigil e-module to increase the curiosity of class XI MIPA 5 students at SMA Negeri Kebakkramat for the 2021/2022 academic year on temperature, heat, and heat transfer. The research model used is the model developed by Kemmis and Mc. Taggart went through two cycles. Data collection techniques in this study used observation, questionnaires, tests, interviews, and document review with data analysis techniques in the form of quantitative and qualitative analysis. The results of the study show that the application of a scientific-based sigil e-module to the material temperature, heat, and heat transfer can increase the competence of knowledge and curiosity of class XI MIPA 5 students at SMA Negeri Kebakkramat 2021/2022 Academic Year. The percentage of knowledge competence mastery increased from 33.33% in the pre-cycle to 69.44% in cycle I and increased again to 80.56% in cycle II. The achievement percentage of students' curiosity in the very good and good category increased from 15.38% in the pre-cycle to 80.56% in cycle I and again to 94.44% in cycle II. This research can be the basis for developing Sigil e-module to Temperature, Heat, and Heat Transfer material.