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Talanquer, Vicente – International Journal of Science Education, 2018
One of the central goals of modern science and chemistry education is to develop students' abilities to understand complex phenomena, and productively engage in explanation, justification, and argumentation. To accomplish this goal, we should better characterise the types of reasoning that we expect students to master in the different scientific…
Descriptors: Science Education, Chemistry, Science Process Skills, Abstract Reasoning
Habibi; Mundilarto; Jumadi, Jumadi; Gummah, Syifaul; Ahzan, Sukainil; Prasetya, Dwi Sabda Budi – International Journal of Evaluation and Research in Education, 2020
Creative thinking is high-order thinking that is not easy to stimulate with conventional learning, especially to solve complex physics problems. However, the learning strategy chosen must be in accordance with the teaching materials and students characteristics. Creative thinking is very important especially for low-ability characteristic in…
Descriptors: Creative Thinking, Thinking Skills, Preservice Teachers, Science Teachers
Berge, Maria; Danielsson, Anna; Lidar, Malena – Research in Science & Technological Education, 2020
Background: Physics is often seen as a discipline with difficult content, and one that is difficult to identify with. Socialisation processes at the upper secondary school level are of particular interest as these may be linked to the subsequent low and uneven participation in university physics. Focusing on how norms are construed in physics…
Descriptors: Foreign Countries, Science Instruction, Secondary School Science, Physics
Jant, Erin A.; Uttal, David H.; Kolvoord, Robert; James, Katherine; Msall, Camille – Journal of Geography, 2020
Geospatial technologies, such as geographic information systems (GIS), remote sensing, and GPS have been used in a variety of educational settings to help improve student learning. A sample of 53 high school seniors was recruited from the Geospatial Semester (GSS), a course that emphasizes the use of GIS for problem-solving and students in AP…
Descriptors: Geographic Information Systems, STEM Education, Scientific Literacy, Teaching Methods
Shute, Valerie J.; Smith, Ginny; Kuba, Renata; Dai, Chih-Pu; Rahimi, Seyedahmad; Liu, Zhichun; Almond, Russell – Grantee Submission, 2020
In honor of Jim Greer, we share our recent work--a design and development study of various learning supports embedded within the game "Physics Playground." This 2-dimensional computer game is designed to help students learn Newtonian physics and uses stealth assessment to measure, in real-time, their physics understanding. The game…
Descriptors: Physics, Educational Games, Computer Games, Science Education
Dai, Rui; Fritchman, Joseph C.; Liu, Qiaoyi; Xiao, Yang; Yu, Haibo; Bao, Lei – Physical Review Physics Education Research, 2019
Light interference is an essential topic for understanding the wavelike nature of light, however, there are limited studies on modeling and assessing students' misconceptions and learning difficulties in this area. Based on the knowledge integration modeling approach, a conceptual framework for light interference is developed and used to model…
Descriptors: Light, Comprehension, Scientific Concepts, Physics
Sujarittham, Thanida; Tanamatayarat, Jintawat; Kittiravechote, Aungtinee – Turkish Online Journal of Educational Technology - TOJET, 2019
The goals of this advanced physics laboratory course emphasized not only to improve students' physics knowledge but also spectrum scientific abilities in particular for preparing their future-ready competencies. One of those scientific abilities was initiated to study that was "the ability to design experiment". It was the fundamental…
Descriptors: Physics, Science Instruction, Science Laboratories, Thinking Skills
Putranta, Himawan; Supahar – Online Submission, 2019
This paper is based on the background of the problem of the low high order thinking skills in students, especially in the skills to think creatively and conceptual understanding. Conceptual understanding that students have in relation to physics learning material has an important role in developing students' high order thinking skills in solving…
Descriptors: Physics, Science Tests, Thinking Skills, Concept Formation
Benacka, Jan – Physics Education, 2015
This paper provides the formula for the elevation angle at which a projectile has to be fired in a vacuum from a general position to hit a target at a given distance. A spreadsheet application that models the trajectory is presented, and the problem of finding the points of shot and impact of a projectile moving in a vacuum if three points of the…
Descriptors: Spreadsheets, Science Instruction, Physics, Motion
Niss, Martin – International Journal of Science and Mathematics Education, 2017
This paper studies the cognitive obstacles related to one aspect of mathematization in physics problem-solving, namely, what might be called "structuring for mathematization," where the problem situation is structured in such a way that a translation to a mathematical universe can be done. We report the results of an analysis of four…
Descriptors: Cognitive Processes, Barriers, Physics, Science Instruction
Eser Ültay – Journal of Baltic Science Education, 2017
In recent years, while the context-based approach has been popular and the teachers have been using it in the classrooms, it is seen that they do not prefer using context-based evaluation techniques. This becomes a problem for students because they used to be taught in the context-based approach enriched by daily life examples and then they are…
Descriptors: Problem Solving, Preservice Teachers, Physics, Science Teachers
Nakakoji, Yoshitaka; Wilson, Rachel – Journal of Intelligence, 2020
Transfer of learning, the application of learning to different contexts over time, is important to all learning for development. As 21st century skills specifically aim to be "generic," there is an assumption that they can be transferred from context to context. We investigate the process of transfer in problem solving, with specific…
Descriptors: Interdisciplinary Approach, STEM Education, College Mathematics, College Science
Krause, Eduard; Dilling, Frederik; Kraus, Simon Friedrich; Chi, Nguyen Phuong; Chat, Tran Ngoc; Van Bien, Nguyen – EURASIA Journal of Mathematics, Science and Technology Education, 2020
This article presents a possible framework for the cooperation of mathematics and physics education research domains. Moreover, the potential topics for such a scientific collaboration are explained by means of a structuring qualitative content analysis of current handbooks and conference proceedings in Germany and Vietnam. These topics can form a…
Descriptors: Interdisciplinary Approach, Mathematics Education, Physics, Educational Research
Wirjawan, Johannes V. D.; Pratama, Daniel; Pratidhina, Elisabeth; Wijaya, Anthony; Untung, Budijanto; Herwinarso – International Journal of Instruction, 2020
One popular advanced technology nowadays is smartphone. Smartphones allow various functions beyond the traditional function of mobile phones as communication devices. The technology in smartphones has potential applications in many areas including education. In this study, we report our research which aims to: (1) produce a smartphone app as media…
Descriptors: Telecommunications, Handheld Devices, High School Students, Instructional Effectiveness
Haeruddin; Prasetyo, Zuhdan Kun; Supahar; Sesa, Elisa; Lembah, Gazali – European Journal of Educational Research, 2020
The purpose of this study is to evaluate the psychometric and structural instruments of the Physics Metacognition Inventory (PMI) developed by Taasoobshirazi, Bailey, and Farley. The PMI consists of 26 items in six factors. The English and Indonesian versions were tested on an English course (N = 37) in the Geophysics study program at Tadulako…
Descriptors: Physics, Psychometrics, Metacognition, Measures (Individuals)

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