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Showing 1 to 15 of 24 results Save | Export
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Redish, Edward F. – Physics Teacher, 2021
The key difference between math as math and math in science is that in science we blend our physical knowledge with our knowledge of math. This blending changes the way we put meaning to math and even the way we interpret mathematical equations. Learning to think about physics with math instead of just calculating involves a number of general…
Descriptors: Mathematics Skills, Science Process Skills, Equations (Mathematics), Physics
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Suritno Fayanto; I Nyoman Sudana Degeng; Syaad Patmanthara; Saida Ulfa – Science Education International, 2024
Design-Based Learning and computational thinking (CT) are two key components that support each other specifically in the learning process involving the development of experimental design. Both components emphasize the importance of integration between computational thinking and design-based learning to support a creative, innovative and data…
Descriptors: Computation, Thinking Skills, Teacher Effectiveness, Courses
Polmart, Piyathida; Nuangchalerm, Prasart – Online Submission, 2023
Through STEAM education, this action research aims to improve senior high school students' ability to think critically and learn effectively. The target group for this study consisted of 36 senior high school students from one school in Thailand. A STEAM education lesson plan, a test of productive thinking, and a test of learning achievement were…
Descriptors: High School Seniors, Foreign Countries, STEM Education, Art Education
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Zeynep Baskan Takaoglu – Journal of Science Learning, 2024
Multiple representations are widely recognized for their significant role in concept learning. This study aimed to investigate the multiple representation translation skills of high school students at different grade levels about the concept of one-dimensional motion. 239 9th, 10th, and 11th-grade students participated in the study using a…
Descriptors: Foreign Countries, High School Students, Thinking Skills, Learning Strategies
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Elvira G. Rincon-Flores; Leticia Castano; Sadie Lissette Guerrero Solis; Omar Olmos Lopez; Carlos Felipe Rodríguez Hernández; Laura Angélica Castillo Lara; Laura Patricia Aldape Valdés – Smart Learning Environments, 2024
Much has been written about Adaptive Learning, but does its implementation alone guarantee success? We have found that integrating an Adaptive Learning Strategy with diverse didactic techniques gives better results. The objectives of this exploratory study were to know the impact of the Adaptive Learning Strategy on students' learning and…
Descriptors: Learning Strategies, Academic Achievement, Computation, Thinking Skills
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Yerdelen, Sündüs; Sungur, Semra – Science Education International, 2020
This study aimed to determine the extent of pre-service science teachers' (PTS) process and materialistic understanding of sound concept and the role of their task value beliefs in their scientific conception of sound. With this aim, the Sound Concept Inventory Instrument (SCII) was translated and adapted to Turkish. The SCII was administered to…
Descriptors: Preservice Teachers, Middle School Teachers, Scientific Concepts, Concept Formation
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Abdullah, Helmi – Asia-Pacific Forum on Science Learning and Teaching, 2018
One of the fundamental problems for the college students is not being able to solve the multi-concept physics problems. The reason is that the problem solving strategies is limited to known-asked strategy (traditional strategy).Though this strategy can only be used to solve the problems of mono-concept physics. Therefore, this research on the use…
Descriptors: Problem Solving, College Students, Physics, Science Instruction
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Amin, Bunga D.; Abdullah, Helmi; Malago, Jasruddin D. – Educational Research and Reviews, 2018
Metacognitive knowledge is a necessity in starting learning process. Solving physics problems requires metacognitive knowledge which comprises factual, conceptual and procedural knowledge. The purpose of metacognitive knowledge is to train students in developing their abilities in higher order of thinking. The problem is what kind of strategies…
Descriptors: Physics, Science Instruction, Metacognition, Learning Strategies
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Suprapto, Nadi – International Journal of Instruction, 2019
The aim of the study was describing the development and validation of students' perception on learning by questioning (LBQ) scale in physics. Research and Development (R & D) design was utilized in the research method. The number of senior high school students involved in the research were 224 students, composed of 95 boys (42.41%) and 129…
Descriptors: Foreign Countries, Likert Scales, Science Tests, Test Construction
Kinard, Melissa Grass – ProQuest LLC, 2009
Scientific communities have established social mechanisms for proposing explanations, questioning evidence, and validating claims. Opportunities like these are often not a given in science classrooms (Vellom, Anderson, & Palincsar, 1993) even though the National Science Education Standards (NSES, 1996) state that a scientifically literate person…
Descriptors: Physics, Cooperation, Classrooms, Science Education
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Garrigan, George A. – Inquiry, 1997
Reviews the approaches presented in the Self-Paced Study of Strategies Useful for Solving Word Problems in the Physical and Biological Sciences that can be used by students to successfully solve word problems encountered in any entry-level science course. Describes the topics covered in five "study sessions" that allow the students to practice the…
Descriptors: Biology, Community Colleges, Learning Strategies, Physics
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Reiner, Miriam; Burko, Lior M. – Science and Education, 2003
Focuses on the role of Thought Experiments (TEs) in ongoing processes of conceptual refinement for physicists and physics learners. Analyze TEs related to stellar evolution and general relativity. Identifies the stages at which crucial errors are made in these TEs and the cognitive processes which lead to these errors. Discusses implications for…
Descriptors: Concept Formation, Evolution, Learning Strategies, Perception
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Ploetzner, Rolf; And Others – European Journal of Psychology of Education, 1990
Discusses the artificial-intelligence-based microworld DiBi and MULEDS, a multilevel diagnosis system. Developed to adapt tutoring style to the individual learner. Explains that DiBi sets up a learning environment, and simulates elastic impacts as a subtopic of classical mechanics, and supporting reasoning on different levels of mental domain…
Descriptors: Artificial Intelligence, Computer Uses in Education, Educational Technology, Learning Strategies
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Ginsberg, Edward S.; Panasuk, Regina M.; George, Simon – Electronic Journal of Science Education, 1997
Examines the attitudes of physics instructors on how and when students should be allowed access to textbook problem solutions. Presents a detailed analysis of 249 survey responses from U.S. and Canadian universities which conveyed a wide range of opinions and comments. Discusses the need to rethink strategies regarding access to solutions. (AIM)
Descriptors: Answer Keys, Higher Education, Information Utilization, Learning Strategies
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Hung, Woei; Jonassen, David H. – International Journal of Science Education, 2006
College students often experience difficulties in solving physics problems. These difficulties largely result from a lack of conceptual understanding of the topic. The processes of conceptual learning reflect the nature of the causal reasoning process. Two major causal reasoning methods are the covariational and the mechanism-based approaches.…
Descriptors: Physics, College Students, College Science, Attribution Theory
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