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Herwinarso; Elisabeth Pratidhina; Pramono Adam; Heru Kuswanto; Anggi Datiatur Rahmat – Journal of Education and e-Learning Research, 2023
Computational thinking (CT) skills are essential with the rapid advancement of technology. Developing CT attitudes in students is also required for improving CT skills. On the other hand, science process skills are also emphasized in high school physics classes. This study aims to design and implement collaborative modeling-based learning for high…
Descriptors: Computation, Thinking Skills, High School Students, Science Instruction
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
Zainuddin; Suyidno; Dewantara, Dewi; Mahtari, Saiyidah; Nur, Mohamad; Yuanita, Leny; Sunarti, Titin – International Journal of Instruction, 2020
The purpose of this study was to find out the correlation between scientific knowledge and science process skills with scientific creativity in Creative Responsibility Based Learning (CRBL). This study involved 83 students of science, physics, chemistry and biology education at Lambung Mangkurat University, Indonesia. The process of data…
Descriptors: Science Process Skills, Knowledge Level, Correlation, Science Instruction
Mota, Ana Rita; Körhasan, Nilüfer Didis; Miller, Kelly; Mazur, Eric – Physical Review Physics Education Research, 2019
A considerable body of research shows that individuals who demonstrate a wide variety of metacognitive skills perform better on scientific problem solving. We developed a way of implementing homework in an undergraduate physics course to promote metacognitive skills. This novel homework design includes both an individual and a team phase and was…
Descriptors: Homework, Metacognition, Undergraduate Students, Physics
Hwang, Wu-Yuin; Purba, Siska Wati Dewi; Bao, Shih-Jyun; Ma, Jhao-Heng – IEEE Transactions on Learning Technologies, 2022
This article integrated inquiry behaviors and a guided learning map (gMap) into a mobile app called Ubiquitous-Physics (U-Physics), which helps students to explore inclined plane phenomena in authentic contexts. The article investigated inquiry behaviors such as interpreting graphs, applying formulas, drawing conclusions, and peer collaboration,…
Descriptors: Physics, Science Education, Science Instruction, Computer Oriented Programs
Mason, Andrew J.; Singh, Chandralekha – Physics Teacher, 2016
Students must learn effective problem solving strategies in order to develop expertise in physics. Effective problem solving strategies include a conceptual analysis of the problem followed by planning of the solution, and then implementation, evaluation, and reflection upon the process. Research suggests that converting a problem from the initial…
Descriptors: Physics, Problem Solving, Cooperative Learning, Reflection
Aydin, Abdullah; Biyikli, Filiz – Universal Journal of Educational Research, 2017
This research aims to compare the effects of Jigsaw technique from the cooperative learning methods and traditional learning method on laboratory material recognition and usage skills of students in General Physics Lab-I Course. This study was conducted with 63 students who took general physics laboratory-I course in the department of science…
Descriptors: Cooperative Learning, Teaching Methods, Physics, Science Instruction
Lemmer, Miriam – Africa Education Review, 2018
Science teaching and learning require knowledge about how learning takes place (cognition) and how learners interact with their surroundings (affective and sociocultural factors). The study reported on focussed on learning for understanding of Newton's second law of motion from a cognitive perspective that takes social factors into account. A…
Descriptors: Science Education, Physics, Scientific Principles, Motion
Owens, Cecilia; Sullivan, Erin Ash – Science and Children, 2012
After many years of elementary science fairs, the time had come to redesign their family science event model. The displays were always well thought-out, the investigations interesting, and the science fair was always well attended. However, as the author listened to the conversations of the students as they put together their displays and the…
Descriptors: Science Fairs, Elementary School Science, Family Involvement, Science Process Skills
Stone, Antoinette – ProQuest LLC, 2013
The use of science classroom discourse analysis as a way to gain a better understanding of various student cognitive outcomes has a rich history in Science Education in general and Physics Education Research (PER) in particular. When students talk to each other in a collaborative peer instruction environment, such as in the CLASP classes…
Descriptors: Interpersonal Communication, Cooperative Learning, Discourse Analysis, Abstract Reasoning
Gates, Joshua – Science Activities: Classroom Projects and Curriculum Ideas, 2009
For this experiment, students are divided into 2 groups and presented with a static equilibrium force-balance problem to solve. One group works entirely experimentally and the other group theoretically, using Newton's laws. The groups present their seemingly dissimilar results and must reconcile them through discussion. (Contains 3 figures.)
Descriptors: Physics, Chemistry, Science Instruction, High Schools
Gok, Tolga – European Journal of Physics Education, 2010
The on-line tutoring system, LON-CAPA, was implemented in Introductory Calculus-Based Physics-II course at Colorado School of Mines in fall 2008 and spring 2009. In this paper, the features and the case study of the LON-CAPA implementation were described. The performance data obtained from the scores of students enrolled in the course represented…
Descriptors: Science Instruction, Computer Assisted Instruction, Large Group Instruction, Physics
St. Andre, Ralph E. – 1993
Simple machines have become a lost point of study in elementary schools as teachers continue to have more material to cover. This manual provides hands-on, cooperative learning activities for grades three through eight concerning the six simple machines: wheel and axle, inclined plane, screw, pulley, wedge, and lever. Most activities can be…
Descriptors: Cooperative Learning, Elementary Education, Hands on Science, Mechanics (Physics)

Wenning, Carl J.; Muehsler, Hans – Physics Teacher, 1996
Describes the implementation and evaluation of a nondirected student research project that aimed at acquainting students with some of the procedures used by physicists in the real world. Outlines specific project designs used by the students. (JRH)
Descriptors: Alternative Assessment, Cooperative Learning, Hands on Science, Physics

Bisbee, Gregory D.; Kaiser, Cheryl A. – American Biology Teacher, 1997
Describes an activity that integrates biology and physics concepts by experimenting with the seed dispersal of common milkweed or similar wind-dispersed seeds. Student teams collect seeds and measure several parameters, review principles of trajectory motion, perform experiments, and graph data. Students examine the ideas of…
Descriptors: Biology, Cooperative Learning, Group Activities, Hands on Science