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Mustafa Sami Topçu; Kristen Bethke Wendell; Chelsea Joy Andrews – Journal of Science Education and Technology, 2024
Mechanistic reasoning about an artifact or system involves thinking about its underlying entities and the properties, activities, and cause-effect relationships of those entities. Previous studies of children's mechanistic reasoning about engineering solutions have mostly focused on specific mechanical systems such as gear trains. Yet there is…
Descriptors: Elementary School Students, Abstract Reasoning, Logical Thinking, Engineering
G. Puttick; M. Cassidy; E. Tucker-Raymond; G. M. Troiano; C. Harteveld – Journal of Research in Science Teaching, 2024
Much research attention has been focused on learning through game playing. However, very little has been focused on student learning through game making, especially in science. Moreover, none of the studies on learning through making games has presented an account of how students engage in the process of game design in real time. The present study…
Descriptors: Design, Computer Games, Peer Teaching, Science Education
Lie, Richard; Aranda, Maurina L.; Guzey, S. Selcen; Moore, Tamara J. – Research in Science Education, 2021
Recent reforms in science education have supported the inclusion of engineering and their practices in K-12 curricula. To this end, many classrooms have incorporated engineering units that include design challenges. Design is an integral part of engineering and can help students think in creative and interdisciplinary ways. In this study, we…
Descriptors: Middle School Students, Engineering, Design, Science Curriculum
Koskey, Kristin L. K.; Makki, Nidaa; Ahmed, Wondimu; Garafolo, Nicholas G.; Visco, Donald P., Jr. – School Science and Mathematics, 2020
Integrating engineering into the K-12 science curriculum continues to be a focus in national reform efforts in science education. Although there is an increasing interest in research in and practice of integrating engineering in K-12 science education, to date only a few studies have focused on the development of an assessment tool to measure…
Descriptors: Middle School Students, Engineering, Design, Science Education
Sun, Daner; Looi, Chee-Kit – British Journal of Educational Technology, 2018
This paper explores the crossover between formal learning and learning in informal spaces supported by mobile technology, and proposes design principles for educators to carry out a science curriculum, namely Boundary Activity-based Science Curriculum (BAbSC). The conceptualization of the boundary object, and the principles of boundary activity as…
Descriptors: Telecommunications, Handheld Devices, Educational Technology, Technology Uses in Education
Penuel, William R. – Journal of the Learning Sciences, 2019
This essay presents infrastructuring as a useful construct for guiding efforts to support more equitable implementation and sustainability of resources developed to support student learning in design-based research. "Infrastructuring" refers to activities that aim to redesign components, relations, and routines of schools and districts…
Descriptors: Design, Teamwork, Partnerships in Education, College School Cooperation
Farley, Elijah R.; Fringer, Victoria; Wainman, Jacob W. – Journal of Chemical Education, 2021
In an idealized General Chemistry Laboratory curriculum, students would hone their experimental design ability with practice encouraged by laboratory exercises designed to be open-ended. However, traditional General Chemistry Laboratory courses often lack opportunities for students to design their own experiments, instead opting to provide…
Descriptors: Science Instruction, Chemistry, Undergraduate Study, College Science
Shakeel Mohammad Cassam Atchia; Dhavini Chummun; Saheel Luckho – Journal of Biological Education, 2024
This study uses a case study methodology to showcase the use of the DTSICM (Design thinking Strategy to Identify and Clear Misconceptions) model, which provides a design thinking approach to identify and clear a common misconception on photosynthesis, held by a sample of 27 A-level students. As a first stage, data collected through the…
Descriptors: Design, Thinking Skills, Scientific Concepts, Misconceptions
Dogan, Ozgur Kivilcan – International Journal of Science and Mathematics Education, 2021
Given the importance of cultivating scientific literate societies, the integration of scientific inquiry into school curriculum is key to contemporary science education. It is apparent that textbooks have been an accessible source of science information for teachers and students since the growth of public K-12 schooling worldwide. Textbooks are…
Descriptors: Foreign Countries, Textbook Content, Biology, Science Education
Chabalengula, Vivien M.; Mumba, Frackson – International Journal of Science Education, 2017
The current "K-12 Science Education framework" and "Next Generation Science Standards" (NGSS) in the United States emphasise the integration of engineering design in science instruction to promote scientific literacy and engineering design skills among students. As such, many engineering education programmes have developed…
Descriptors: Engineering Education, Design, Elementary Secondary Education, Science Curriculum
Çiftçi, Ayse; Topçu, Mustafa Sami – Pegem Journal of Education and Instruction, 2020
The aim of the present research is to examine the opinions and experiences of 7th grade students towards design thinking. In this context, activities for design thinking about energy transformations included in the science curriculum were conducted for four weeks. Phenomenology method, one of the qualitative research methods, was used in the study…
Descriptors: Design, Thinking Skills, Foreign Countries, Energy
Sisk-Hilton, Stephanie; Ferner, Sarah Davies – Science and Children, 2022
The inclusion of engineering in the Next Generation Science Standards (NGSS) as a key component of K-12 science learning has provided both opportunities and challenges for elementary teachers. One challenge is integrating the design thinking processes that undergird engineering with core science concepts and current issues facing scientists and…
Descriptors: Engineering Education, Science Education, National Standards, Elementary School Teachers
Davis, Elizabeth A., Ed.; Stephens, Amy, Ed. – National Academies Press, 2022
Starting in early childhood, children are capable of learning sophisticated science and engineering concepts and engage in disciplinary practices. They are deeply curious about the world around them and eager to investigate the many questions they have about their environment. Educators can develop learning environments that support the…
Descriptors: Science Education, Engineering Education, Scientific Concepts, Preschool Education
Enderle, Patrick; King, Natalie; Margulieux, Lauren – Science Teacher, 2021
Teaching about wave structure and function is a critical element of any physical science curriculum and supported by "Next Generation Science Standards (NGSS)" PS4: Waves and Their Applications in Technologies for Information Transfer. To support students' learning of these ideas, teachers often rely on developing graphic models of a…
Descriptors: Science Education, Standards, Teaching Methods, Science Curriculum
Kockmann, Norbert; Lutze, Philip; Gorak, Andrzej – Universal Journal of Educational Research, 2016
Chemical processing industry is progressively focusing their research activities and product placements in the areas of Grand Challenges (or Global Megatrends) such as mobility, energy, communication, or health care and food. Innovation in all these fields requires solving high complex problems, rapid product development as well as dealing with…
Descriptors: Foreign Countries, Engineering, Chemistry, Manufacturing Industry