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Showing 1 to 15 of 20 results Save | Export
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Jia-Hua Zhao; Shu-Tao Shangguan; Ying Wang – Journal of Computer Assisted Learning, 2025
Background: Computational thinking (CT) is a fundamental ability required of individuals in the 21st-century digital world. Past studies show that generative artificial intelligence (GenAI) can enhance students' CT skills. However, GenAI may produce inaccurate output, and students who rely too much on AI may learn little and be unable to think…
Descriptors: Artificial Intelligence, Technology Uses in Education, Skill Development, Computation
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Safrizal, Safrizal; Sudarmono; Yulia, Resti – Journal of Turkish Science Education, 2022
This research aimed to describe the development of scientific literacy of students in Indonesia at the Adiwiyata school. The design of this research was qualitative. The data were gathered through observation, an interview and documentation. The subjects were selected through snowball sampling. Data analysis was carried out by referring to the…
Descriptors: Foreign Countries, Scientific Literacy, Science Education, Teaching Methods
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Fuad, Ah. Zakki; Alfin, Jauharoti; Fauzan; Astutik, Sri; Prahani, Binar Kurnia – International Journal of Instruction, 2019
Group Science Learning (GSL) is collaborative problem solving based learning by design to improve collaborative problem solving skills, science process skills, and self-confidence of primary schools teacher candidates. This research aims to analyze the effectiveness of GSL model to improve collaborative problem solving skills and self-confidence…
Descriptors: Cooperative Learning, Problem Solving, Models, Self Esteem
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Ayaz, Elcin; Sarikaya, Rabia – Journal of Education in Science, Environment and Health, 2021
This study aims to examine the effects of engineering design-based science teaching (EDBST) on classroom teacher candidates' decision-making skills, scientific creativity and engineering design-based process skills. The random design of the quantitative approach with a pretest-posttest control group was used in the study. The study group consists…
Descriptors: Science Education, Elementary Education, STEM Education, Engineering
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Cormas, Peter C. – International Journal of Science and Mathematics Education, 2017
Preservice teachers in six sections (n = 87) of a sequenced, methodological and process-integrated elementary mathematics/science methods course were able to reconcile an issue centered on a similar area of epistemology. Preservice teachers participated in a science inquiry lesson on biological classification and a mathematics problem-solving…
Descriptors: Preservice Teachers, Student Teacher Attitudes, Epistemology, Integrated Curriculum
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Shelley, Mack, Ed.; Admiraal, Wilfried, Ed.; Akcay, Hakan, Ed. – International Society for Technology, Education, and Science, 2021
"Proceedings of International Conference on Education in Mathematics, Science and Technology" includes full papers presented at the International Conference on Education in Mathematics, Science and Technology (ICEMST) which took place on April 1-4, 2021 in Antalya, Turkey. The aim of the conference is to offer opportunities to share…
Descriptors: STEM Education, Chemistry, Science Instruction, Climate
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Weckbacher, Lisa Marie; Okamoto, Yukari – Journal of Education and Learning, 2015
Recent studies have shown that strengths in spatial skills are a key to success in STEM (science, technology, engineering, and mathematics) careers. However, these skills are undervalued in our educational system and thus seldom incorporated in classroom teaching. As a first step towards changing the current practices, we worked with a group of…
Descriptors: Elementary Education, Classroom Environment, Classroom Techniques, STEM Education
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Deaton, Cynthia C. M.; Chessin, Debby; Coskey, Shawn – Science Activities: Classroom Projects and Curriculum Ideas, 2012
Build It Up! is an engaging activity that integrates science with mathematics through a process that encourages problem-solving, principles of design, creativity, and developing a sense of one's community. This activity, aimed at third- and fourth-grade students, allows students to use manipulatives to design, construct, and test buildings they…
Descriptors: Science Process Skills, Mathematics, Interdisciplinary Approach, Problem Solving
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Chen, Chen-Yuan – Educational Research and Reviews, 2013
In recent years, researches had shown that the development of problem solving skill became important for education, and the educational robots are capable for promoting students not only understand the physical and mathematical concepts, but also have active and constructive learning. Meanwhile, the importance of situation in education is rising,…
Descriptors: Problem Solving, Learning Theories, Problem Based Learning, Learning Activities
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McShane, Joan Braunagel – Science and Children, 1997
Reports on the winning tool creations by 1,300 fourth-, fifth-, and sixth-grade students in the 1997 Craftsman/NSTA Young Inventors Awards Program. Students had to use mechanical and science process skills to design and build tools to meet their needs in solving a problem. The winning entry was a calibrated angle and depth scissors. (AIM)
Descriptors: Creative Thinking, Discovery Processes, Elementary Education, Inventions
Search for Extraterrestrial Intelligence Inst., Mountain View, CA. – 1996
The possibility of life on other planets holds enormous fascination for people of all ages. This interdisciplinary learning kit uses that theme to launch scientific learning in young students. Through a series of hands-on activities, it directs participants to solve an outer space mystery thereby acquiring and developing scientific knowledge and…
Descriptors: Astronomy, Cooperative Learning, Elementary Education, Hands on Science
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Arena, Paul – Australian Science Teachers Journal, 1996
Examines the processes of science focusing on the higher-order skills and the role that relevance may play in their acquisition. Argues that an open inquiry style of instruction appears best suited to stimulating the learning of process skills because it allows students to pursue problems of genuine relevance. Contains 26 references. (JRH)
Descriptors: Educational Strategies, Elementary Education, Foreign Countries, Inquiry
Gabel, Dorothy L. – 1993
This book is designed to help students understand the nature of scientific inquiry by involving them in doing science rather than merely reading about it. The content of the text emphasizes science process skills, mathematical skills, and the use of theories and models that are fundamental for learning the various science disciplines. The…
Descriptors: Classification, Elementary Education, Hands on Science, Inquiry
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Melancon, Melanie – Science and Children, 2000
Introduces an activity that involves nature transects and requires students to use their process skills. Indicates the possible use of transects for student evaluation and examines the implementation of transects in the elementary curriculum in a multidisciplinary approach. Provides details of the activity. (YDS)
Descriptors: Communications, Critical Thinking, Elementary Education, Graphs
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Hopkins, Martha H. (Marty) – Teaching Children Mathematics, 1997
Describes a mathematical investigation centered on collecting and analyzing data in a scientific setting. The first experiment teaches the basics of data collection--students should be able to identify variables that might have affected experimental results. The second activity includes designing an experiment to control for these variables. The…
Descriptors: Critical Thinking, Data Analysis, Elementary Education, Elementary School Mathematics
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