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Sikk, Jörgen Ivar; Tammets, Kairit – International Association for Development of the Information Society, 2021
PISA studies have concluded that while the level of knowledge, amongst students in Estonia, is good the level of higher order thinking skills is lower, especially in natural sciences, which is accompanied by lower study motivation. In order to study the level of higher order thinking skills and what influences those skills, an action research was…
Descriptors: Foreign Countries, Problem Solving, Grade 8, Physics
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Jiun-Wei Guo; Hsiao-Ching She; Meng-Jun Chen; Pei-Yi Tsai – International Journal of Computer-Supported Collaborative Learning, 2023
The individual problem-solving (IPS) and collaborative problem-solving (CPS) have received a lot of attention, yet little research has been conducted to investigate whether CPS and IPS are equally effective in improving students' understanding of physics concepts, problem-solving abilities, and minimizing achievement gaps. Therefore, the present…
Descriptors: Cooperative Learning, Problem Solving, Middle School Students, Grade 8
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Rahimi, Seyedahmad; Shute, Valerie; Zhang, Qian – International Journal of Technology in Education and Science, 2021
Persistence is an important part of student success--both in and out of school. To enhance persistence, we first need to assess it accurately. Digital games can be used as vehicles for measuring and enhancing persistence. The purpose of this study is to test the effects of (a) game-level characteristics (i.e., game mechanics and conceptual…
Descriptors: Educational Games, Computer Games, Game Based Learning, Problem Solving
Rahimi, Seyedahmad; Shute, Valerie; Zhang, Qian – Grantee Submission, 2021
Persistence is an important part of student success--both in and out of school. To enhance persistence, we first need to assess it accurately. Digital games can be used as vehicles for measuring and enhancing persistence. The purpose of this study is to test the effects of (a) game-level characteristics (i.e., game mechanics and conceptual…
Descriptors: Educational Games, Computer Games, Game Based Learning, Problem Solving
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Safadi, Rafi'; Ababsy, Ranin – Physics Education, 2020
Research indicates that troubleshooting activities that require students to reflect on pre-prepared erroneous examples, i.e. erroneous solutions to problems that correspond to common naïve ideas, impact their learning positively. These include asking students to diagnose erroneous examples; in other words, detect the conceptual errors and then…
Descriptors: Troubleshooting, Error Correction, Demonstrations (Educational), Physics
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Malkiewich, Laura; Baker, Ryan S.; Shute, Valerie; Kai, Shimin; Paquette, Luc – International Educational Data Mining Society, 2016
Educational games have become hugely popular, and educational data mining has been used to predict student performance in the context of these games. However, models built on student behavior in educational games rarely differentiate between the types of problem solving that students employ and fail to address how efficacious student problem…
Descriptors: Classification, Problem Solving, Educational Games, Models
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Safadi, Rafi; Safadi, Ekhlass; Meidav, Meir – Physics Education, 2017
This study compared students' learning in troubleshooting and problem solving activities. The troubleshooting activities provided students with solutions to conceptual problems in the form of refutation texts; namely, solutions that portray common misconceptions, refute them, and then present the accepted scientific ideas. They required students…
Descriptors: Science Instruction, Physics, Group Discussion, Comparative Analysis
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Safadi, Rafi' – Physics Education, 2017
I examined the impact of a self-diagnosis activity on students' conceptual understanding and achievements in physics. This activity requires students to self-diagnose their solutions to problems that they have solved on their own--namely, to identify and explain their errors--and self-score them--that is, assign scores to their solutions--aided by…
Descriptors: Science Instruction, Physics, Grade 8, Scientific Concepts
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Schmidt-Borcherding, Florian; Hänze, Martin; Wodzinski, Rita; Rincke, Karsten – European Journal of Psychology of Education, 2013
The study explores if established support devices for paper-pencil problem solving, namely worked examples and incremental scaffolds, are applicable to laboratory tasks. N?=?173 grade eight students solved in dyads a physics laboratory task in one of three conditions. In condition A (unguided problem solving), students were asked to determine the…
Descriptors: Scaffolding (Teaching Technique), Laboratory Experiments, Physics, Science Instruction
Bozdogan, Aykut Emre; Uzoglu, Mustafa – Online Submission, 2015
The aim of this study is to explore the problems encountered while teaching force and motion unit in 8th grade science and technology course from teachers' perspectives and offer solutions to eliminate these problems. The study was conducted with 248 science and technology teachers working in 7 regions in Turkey in 2012-2013 academic year.…
Descriptors: Teacher Attitudes, Grade 8, Science Teachers, Science Education
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Freire, Sofia; Faria, Claudia; Baptista, Monica; Freire, Ana; Galvao, Cecilia – Electronic Journal of Science Education, 2013
This study aims at knowing how students experience wikis while they are involved in a problem solving science activity. The study took place in a physics and chemistry 8th grade class (13 years old), where teacher implemented a problem solving activity about acid-base reactions, using a wiki. Participants were 20 students, of which 12 were female…
Descriptors: Teaching Methods, Problem Solving, Science Instruction, Physics
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De Bock, Dirk; Van Dooren, Wim; Verschaffel, Lieven – Research in Science Education, 2011
In mathematics education, a vast amount of research has shown that students of different ages have a strong tendency to apply linear or proportional models anywhere, even in situations where they are not applicable. For example, in geometry it is known that many students believe that if the sides of a figure are doubled, the area is doubled too.…
Descriptors: Mathematics Education, Physics, Mathematics Instruction, Secondary School Students
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Schwartz, Daniel L.; Chase, Catherine C.; Oppezzo, Marily A.; Chin, Doris B. – Journal of Educational Psychology, 2011
Being told procedures and concepts before problem solving can inadvertently undermine the learning of deep structures in physics. If students do not learn the underlying structure of physical phenomena, they will exhibit poor transfer. Two studies on teaching physics to adolescents compared the effects of "telling" students before and after…
Descriptors: Learning Strategies, Physics, Problem Solving, Word Problems (Mathematics)
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Zhang, Ping; Ding, Lin – Physical Review Special Topics - Physics Education Research, 2013
This paper reports a cross-grade comparative study of Chinese precollege students' epistemological beliefs about physics by using the Colorado Learning Attitudes Survey about Sciences (CLASS). Our students of interest are middle and high schoolers taking traditional lecture-based physics as a mandatory science course each year from the 8th grade…
Descriptors: Physics, Epistemology, Scientific Attitudes, Student Attitudes
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Zepeda, Cristina D.; Richey, J. Elizabeth; Ronevich, Paul; Nokes-Malach, Timothy J. – Journal of Educational Psychology, 2015
Prior studies have not tested whether an instructional intervention aimed at improving metacognitive skills results in changes to student metacognition, motivation, learning, and future learning in the classroom. We examined whether a 6-hr intervention designed to teach the declarative and procedural components of planning, monitoring, and…
Descriptors: Direct Instruction, Metacognition, Educational Benefits, Adolescents
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