cover
Contact Name
Ratnawulan
Contact Email
ratnawulan@fmipa.unp.ac.id
Phone
+628126641581
Journal Mail Official
fisikapendidikan@unp.ac.id
Editorial Address
Departement of Physics, Faculty of Mathematics and Natural Science, Universitas Negeri Padang Jl. Prof Dr. Hamka Air Tawar Padang 25131
Location
Kota padang,
Sumatera barat
INDONESIA
Pillar of Physics Education : Jurnal Berkala Ilmiah Pendidikan Fisika
ISSN : 23379618     EISSN : 26848880     DOI : https://doi.org/10.24036/11030171074
Core Subject : Science, Education,
Pillar of Physics Education: International Journal on Physics Education is an open-access and peer-reviewed journal, published by Universitas Negeri Padang, which is dedicated to intercharge for the results of high-quality in all aspect of physics education. The editors welcome submissions of papers describing recent theoretical and experimental research related to: (1) learning outcome of physics, (2) Learning materials of physics, (3) Learning and teaching theories and models of physics, (4) Learning and teaching strategies and methods of physics, (5) Learning assessment and evaluation of physics, (6) The use of ict and media in learning of physics, (7) Learning management of physics, (8) Research and development in learning of physics, (9) Experimental methods in learning of physics, (10) Action research of learning of physics. The Pillar of Physics Education follows the open access policy that allows the published articles freely available online without any subscription. Submitted papers must written in English for initial review stage by editors and further review process by minimum two international reviewers.
Arjuna Subject : Umum - Umum
Articles 10 Documents
Search results for , issue "Vol 14, No 4 (2021)" : 10 Documents clear
DIFFICULTY ANALYSIS OF STUDENTS OF CLASS X SMAN 3 SUNGAI PENUH IN SOLVING PHYSICS PROBLEMS IN THE FORM OF GRAPHIC IN STRAIGHT MOTION MATERIAL Korry Nilyani; - Ratnawulan; - Gusnedi; Renol Afrizon
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12133171074

Abstract

This study aims to determine the difficulties of students in solving physics problems in the form of graphs and profiles of students' difficulties in the material of straight motion. This research method is qualitative research. The population in this study were students of class X Science at the state senior high school 3 Sungai Penuh who had studied the material of straight motion. The sampling technique used is Simple Random Sampling, from this technique one trial class was selected, namely X Science 2 and one class as a sample, namely class X Science 1. The data collection method was diagnostic tests and was supported by interview results. The analysis was carried out using descriptive percentages.The results show that students' ability to solve physical problems with graphs has a low percentage of interpretation ability of 40.61%; interpolation ability of 30.6%; extrapolation ability of 30.46%; and the ability to transform by 39.65%. The student difficulty profile in this study based on the minimum criteria of mastery learning was still having difficulty for all indicators with an average of weak categories. The student's difficulty profile on the material profile is still having difficulties for all sub-materials with an average of weak categories. In the difficulty profile based on prerequisite knowledge, the proportion of students who have difficulty in determining the area of flat shapes is 51.72% including the medium category, the percentage of students' difficulty in arithmetic operations is 66.05% including the high category, the proportion of students' difficulties in linear equations is 72.41% included in the high category.
THE RESULTS OF NEED ANALYSIS MODEL OF CONTENT COMPLEXITY AND COGNITIVE PROCESS LEVEL ON DYNAMIC FLUID CONCEPTS FOR HIGH SCHOOL PHYSICS LESSON Fauziah Alkhoriza Syafni; Amali Putra; - Akmam; Wahyuni Satria Dewi
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12126171074

Abstract

In physics learning tools, it is necessary to develop complex knowledge dimensions and high-level thinking skills for students according to the revised Bloom's Taxonomy. The situation in the field, the availability of content according to the dimensions of knowledge and cognitive processes in teacher learning tools that have not been developed properly. The solution is to design the results of the Dynamic Fluid requirements analysis model obtained in the lesson plans, teaching concepts, and instrument evaluations to be used as references to develop content and cognitive processes in other materials. This type of research is Research and Development (R&D) using the Plomp development model. The research instrument is an interview instrument, an assessment instrument and instrument validation. The data were processed using the percentage technique and presented in graphs and tables to be analyzed, interpreted and described. The results of the analysis of the availability of content in teacher learning tools: 48% conceptual, 33% factual, 19% procedural, and 0% metacognitive. cognitive processing availability: remember 20%, understand 37%, apply 22%, analyze 12%, realize 8%, and create 1%. availability of scientific approach: 28% observing, 22% asking, 12% trying, 19% reasoning and 8% communicating. The correct assessment of aspects of content, language, graphics and presentation: RPP 90.5%, Teaching Concept 88.49%, and evaluation instruments 89.9%. Thus, due to the analysis of concept requirements for Dynamic Fluids, the keyword physics learning model meets the very valid criteria and is suitable for use in high school physics learning.
META-ANALYSIS OF THE EFFECT OF APPLYING PROBLEM BASED LEARNING MODEL ON PHYSICS LEARNING Annisa Hidayatul Adha; - Festiyed
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12228171074

Abstract

The development of education is one aspect that must always consider. One of the endeavor to raise educational standards is to develop the curriculum. The real conditions obtained after conducting the analysis showed that the learning model applied was conventional, which resulted in low learners' learning outcomes. One solution to this problem is to use a paradigm of problem-based learning (PBL) in physics learning. Meta-analysis research systematically examines statistical techniques by combining the results of several previous studies to determine the overall conclusions. The investigation intends to ascertain the application models of PBL have an influence in physics learning. This method examines some results from several articles on similar problems. This method accumulates the impact of insignificant article results into a significant result. The results obtained from the meta-analysis method can answer the gaps in the results of various articles with similar problems. The research results revealed that PBL Model are being used in physics learning as a whole has an influence and is suitable to apply in learning with an effect size of 0.777. PBL Model significantly influence the class level, subject matter units, concept understanding skills, critical thinking, creative thinking, solution to problem, and mastery of knowledge aspects. This article's conclusion study is to apply the PBL model in physics learning more effectively to improve learners' learning outcomes.
PRACTICALITY OF ELECTRONIC LEARNING MATERIALS ENERGY AND MOMENTUM INTEGRATED STEM WITH FLIP PDF PROFESSIONAL TO IMPROVE HIGH SCHOOL STUDENT’S LEARNING OUTCOMES Yuni Fitria; - Asrizal; - Murtiani; - Gusnedi
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/11624171074

Abstract

Industrial revolution 4.0 has made a big contribution to life. The era of the industrial revolution 4.0 requires human resources that can compete in the global economy. STEM education plays an important role in increasing student creativity so that they can compete in the future. However, in reality, activities that support student creativity in learning have not been carried out properly. The learning materials used were still limited and have not integrated STEM optimally, and student learning outcomes were still in the sufficient category. The solution to overcome these problems is to develop electronic learning materials that integrated STEM to improve student learning outcomes. The research method in this research was Research and Development (R & D). This study aimed to determine the practicality of STEM integrated electronic learning materials. The practicality of STEM integrated electronic learning materials obtained in this study was based on four practical components, namely ease of use, the attractiveness of presentation, clarity of the material, and benefits of learning materials. The average value of practicality of STEM integrated energy and momentum electronic learning materials using professional flip pdf was 85.79 which was categorized as the “very good” category. So it can be concluded that STEM integrated electronic materials can be used in physics learning to improve the learning outcomes of grade X students.
META-ANALYSIS OF THE INFLUENCE OF ICT BASED PHYSICS LEARNING MEDIA ON THE LEARNING OUTCOMES OF SENIOR HIGH SCHOOL STUDENTS Nadilla Rahmi Fitri; Renol Afrizon; Hidayati -; Hufri -
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12161171074

Abstract

In the 21st century, information and communication technology has developed rapidly. Changes in the learning system to be student-centered. One of the principles of the 2013 curriculum is that students learn from various learning sources. Learning resources can be in the form of print media or electronic media. When studying, teachers rarely connect physics with everyday life, whereas nowadays, the wording many learning media that can explain physics in everyday life. Research on physics learning media has done a lot. This study has a purpose, namely to see the impact of ICT-based physics learning media on senior high school student learning outcomes. The research method is meta-analysis. Articles published in 2011-2021. The article consisted of 17 national articles and three international articles that met the predetermined criteria to be processed to calculate the effect size. Effect size is calculated based on five categories, namely grade level, ICT-based learning media, learning materials, online/offline ICT-based media, and student learning outcomes. The research results obtained (1) ICT-based learning media gave the highest effect in class XI, namely 1,87. (2) ICT-based learning media gives the highest effect on Adobe Flash media, which is 3,30. (3) the learning material gives the highest effect on the rigid body equilibrium material, which is 5,50. (4) online/offline ICT-based media have the highest effect on offline media, namely 1,41. (5) learning outcomes have the highest effect on the knowledge aspect, namely 1,28. Therefore, ICT-based physics learning media has a good effect on student learning outcomes.
META ANALYSIS OF THE EFFECT OF THE USE OF PhET SIMULATION ON LEARNING OUTCOMES OF PHYSICS OF SMA/MA STUDENTS Delufi Mei Wendra; Festiyed Festiyed
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12625171074

Abstract

PhET simulation is an interactive learning simulation that has been widely studied by previous researchers. This study aims to determine the effect size using the meta-analysis method from previous studies.This type of research is a meta-analysis research. Meta-analysis is research that summarizes research data that has been previously researched and the data are quantitative. The articles analyzed were 26 articles. Data analysis technique is done by calculating effect size using Cohen's equation.The results of the study: the effect size value of the effect of using PhET simulation on learning outcomes of 0.723 is classified as moderate and it is proven that the use of PhET simulation is effectively applied to improve physics learning outcomes of SMA/MA students. The highest category effect size values obtained are: First, it occurs at the level of class X [ES 0.898] with the level of confidence in the data in class XI. Second, on the Fluid material [ES 1.174] with a high level of confidence the data on the Elasticity material. Third, the Demonstration method [ES 1.08] with a high level of confidence in the data on the Simulation method. Fourth, the Conceptual Change model [ES 1.040] with a high level of confidence in the data on the Discovery Learning model. Fifth, on the Skill aspect [ES 0.795] with a high level of confidence in the data on the Knowledge aspect.
META ANALYSIS OF THE EFFECT OF STUDENT WORKSHEET USE ON STUDENT LEARNING OUTCOMES Indri Yulia Putri; Desnita Desnita; Amali Putra; Murtiani Murtiani
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12191171074

Abstract

This research is a meta-analysis of the effect ofStudent Worksheets on student learning outcomes. Thereal conditions found in the field of physics studentlearning outcomes are still low. To improve studentlearning outcomes, teaching materials are needed thatcan attract students' interest in learning, one of which isStudent Worksheets. This study aims to analyze theeffect of Student Worksheets on student learningoutcomes. The research method used in this research ismeta-analysis research. By collecting and summarizingseveral articles. Where the sample used consists of 30articles that have been published in various nationaland international journals. The selected articles arearticles that can be processed to calculate the effect sizeon the use of Student Worksheets which are thengrouped into four indicators, namely based on educationlevel, grade level, learning model and research area.First, the use of Student Worksheets has a significanteffect on indicators for junior high school educationwith a summary effect size of 1,041 in the high category.Second, the use of Student Worksheets has a significantimpact in class VIII with a summary effect size of 1,205which is categorized as very high. Third, the use ofworksheets has a significant effect on the ContextualTeaching and Le&
META ANALYSIS EFFECT NATURAL SCIENCE OF MODULE WITH CONNECTED MODELS ON THE LEARNING OUTCOMES OF JUNIOR HIGH SCHOOL STUDENT Annisa Rahmi; Asrizal Asrizal; Amali Putra; Wahyuni Satria Dewi
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12589171074

Abstract

Education in the 21st century is one of the characteristics of the era of globalization with the development of Science and Technology. 21st century learning really expects integrated science learning that can be packaged into one between chemistry, physics and biology learning materials. The purpose of this study was to determine the effect size and summary effect size of the use of integrated science modules with connected models based on four categories, namely grade level, learning materials, connected models and learning outcomes. The solution to overcome this problem is to conduct a meta-analysis of the effect of integrated science modules with connected models in science learning on junior high school students' knowledge. The research data consists of 10 national and 1 international articles and 9 theses. The data analysis technique in this study uses the calculation of the effect size in each article and the calculation of the summary effect size. Based on the data analysis, three results of this study can be stated. First, the effect size obtained on student learning outcomes vary. Second, the influence of integrated science modules with connected models at the level of class VII and class VIII with high categories. Third, the effect of integrated science modules based on learning many material are high.
TEACHING MATERIAL BASED ON REVISED BLOOM’S TAXONOMY ON THE CONCEPT OF A MAGNETIC FIELD IN SENIOR HIGH SCHOOL Miftahul Jannah; Amali Putra; - Hufri; Letmi Dwiridal
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12123171074

Abstract

Bahan ajar fisika yang digunakan dalam pembelajaran fisika harus mampu mengembangkan pengetahuan dan meningkatkan kemampuan proses kognitif siswa. Kenyataan di lapangan menunjukkan bahwa bahan ajar yang belum memenuhi harapan tersebut. Penelitian ini bertujuan untuk mengembangkan ajar taksonomi Bloom revisi konsep medan magnet pada pembelajaran fisika SMA dan mengetahui validitas dan pengembangan bahan ajar taksonomi Bloom revisi konsep medan magnet kelas XII SMA. Jenis penelitian yang digunakan adalah Research And Development (RnD) dengan mengambil model ADDIE (Analysis, Design, Development, Implementation, and Evaluation) yang diturunkan ke tahap pengembangan. Subyek penelitian adalah 3 orang dosen fisika UNP dan 3 orang guru fisika dari SMAN 1 Kampar Timur,SMAN 2 Kampar dan SMAN 1 Kampar Utara, dengan objek penelitian bahan ajar berbasis taksonomi Bloom. Revisi perangkat pembelajaran yang terdiri dari RPP, bahan ajar, dan instrumen. Evaluasi bahan magnet medan. Berdasarkan analisis data yang telah dilakukan, validitas bahan ajar berdasarkan taksonomi Bloom Revisi pada konsep medan magnet pada pembelajaran fisika di kelas XII SMA menurut tim ahli yang memperoleh hasil analisis dengan rata-rata 82,4% dan menurut tim praktik dengan rata-rata 91 , 73%. Secara keseluruhan diperoleh 87,06% dalam kategori yang valid secara teoritis dan dapat dilanjutkan dengan uji coba lapangan untuk mengetahui kepraktisan dan keefektifannya dalam pembelajaran fisika di SMA. dengan objek penelitian bahan ajar berbasis taksonomi Bloom.Revisi perangkat pembelajaran yang terdiri dari RPP, bahan ajar, dan instrumen. Evaluasi bahan magnet medan. Berdasarkan hasil analisis data yang telah dilakukan, validitas bahan ajar berdasarkan taksonomi Bloom Revisi pada konsep medan magnet pada pembelajaran fisika di kelas XII SMA menurut tim ahli yang memperoleh hasil analisis dengan rata-rata 82,4 % dan menurut tim praktik dengan rata-rata 91, 73%.Secara keseluruhan diperoleh 87,06% dalam kategori yang valid secara teoritis dan dapat dilanjutkan dengan uji coba lapangan untuk mengetahui kepraktisan dan keefektifannya dalam pembelajaran fisika di SMA. dengan objek penelitian bahan ajar berbasis taksonomi Bloom. Revisi perangkat pembelajaran yang terdiri dari RPP, bahan ajar, dan instrumen. Evaluasi bahan magnet medan. Berdasarkan hasil analisis data yang telah dilakukan, validitas bahan ajar berdasarkan taksonomi Bloom Revisi pada konsep medan magnet pada pembelajaran fisika di kelas XII SMA menurut tim ahli yang memperoleh hasil analisis dengan rata-rata 82,4 % dan menurut tim praktik dengan rata-rata 91, 73%.Secara keseluruhan diperoleh persentase 87,06% dalam kategori sangat valid secara teoritis dan dapat dilanjutkan dengan uji coba lapangan untuk mengetahui kepraktisan dan keefektifannya dalam pembelajaran fisika di SMA. Revisi perangkat pembelajaran yang terdiri dari RPP, bahan ajar, dan instrumen. Evaluasi bahan medan magnet. Berdasarkan hasil analisis data yang telah dilakukan, validitas bahan ajar berdasarkan taksonomi Bloom Revisi pada konsep medan magnet pada pembelajaran fisika di kelas XII SMA menurut tim ahli diperoleh hasil analisis dengan rata-rata 82,4 % dan menurut tim praktisi dengan rata-rata 91,73%. Secara keseluruhan diperoleh persentase 87,06% dalam kategori sangat valid secara teoritis dan dapat dilanjutkan dengan uji coba lapangan untuk mengetahui kepraktisan dan keefektifannya dalam pembelajaran fisika di SMA. Revisi perangkat pembelajaran yang terdiri dari RPP, bahan ajar, dan instrumen. Evaluasi bahan medan magnet. Berdasarkan hasil analisis data yang telah dilakukan, validitas bahan ajar berdasarkan taksonomi Bloom Revisi pada konsep medan magnet pada pembelajaran fisika di kelas XII SMA menurut tim ahli diperoleh hasil analisis dengan rata-rata 82,4 % dan menurut tim praktisi dengan rata-rata 91,73%. Secara keseluruhan diperoleh persentase 87,06% dalam kategori sangat valid secara teoritis dan dapat dilanjutkan dengan uji coba lapangan untuk mengetahui kepraktisan dan keefektifannya dalam pembelajaran fisika di SMA. validitas bahan ajar taksonomi Bloom Revisi pada konsep medan magnet pada pembelajaran fisika di kelas XII SMA, menurut tim ahli, hasil analisis dengan rata-rata 82,4% dan menurut tim praktisi dengan rata-rata 91, 73%. Secara keseluruhan diperoleh 87,06% dalam kategori yang valid secara teoritis dan dapat dilanjutkan dengan uji coba lapangan untuk mengetahui kepraktisan dan keefektifannya dalam pembelajaran fisika di SMA. validitas bahan ajar taksonomi Bloom Revisi pada konsep medan magnet pada pembelajaran fisika di kelas XII SMA, menurut tim ahli, hasil analisis dengan rata-rata 82,4% dan menurut tim praktik dengan rata-rata 91, 73%. Secara keseluruhan diperoleh 87,06% dalam kategori yang valid secara teoritis dan dapat dilanjutkan dengan uji coba lapangan untuk mengetahui kepraktisan dan keefektifannya dalam pembelajaran fisika di SMA.
Meta-Analysis the Effect of Use Discovery Learning Models In Physics Learning Senior High School On Student Learning Outcomes Sofia Rahmi; Festiyed Festiyed
PILLAR OF PHYSICS EDUCATION Vol 14, No 4 (2021)
Publisher : Universitas Negeri Padang

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.24036/12253171074

Abstract

The 21st century is characterized by rapid advances in science and technology. These advances have an impact on education. In education, there is a curriculum that requires students to have good learning skills and results. The real conditions found in the field are low student’ learning results, the learning model is only used at one grade level and one unit of material. One model that can use to solve this problem is the discovery learning model. Research with the discovery learning model has been widely done and has not been summarized as a whole. Therefore, this research aims to determine the effect size of the discovery learning models through meta-analysis research reviewed based on aspects of knowledge, grade level, and subject matter. Meta-analysis research is conducted by summarizing, reviewing, and analyzing research data from the results of previous research. The articles reviewed in this research totaled 22 articles. The results of this research obtained, that the discovery learning model is effectively used in physics learning against student learning outcomes in the aspect of learning within an effect size of 0.196. At the class level, the model of discovery learning is more effective in class XI than class X with an effect size of 0.949. While viewed from the learning material unit, the model of discovery learning is more effectively applied to fluid mechanics material with an effect size of 1,196. So can be concluded the discovery learning model is very supportive of students' learning outcomes in high school physics learning.

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