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Showing 1 to 15 of 21 results Save | Export
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Abdil Munir Pangestu; Isti Hidayah – Anatolian Journal of Education, 2024
The ability to think creatively is the ability to generate new ideas, innovative solutions, and unconventional thoughts in response to a situation or problem. Creative thinking involves many aspects, including imagination, association of ideas, mental flexibility, and views that are different from the usual. Creative thinking needs to be grown in…
Descriptors: STEM Education, Instructional Materials, Creativity, Thinking Skills
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Stuart White – International Journal of Designs for Learning, 2024
In 2017 Purdue evGrand Prix hired a K-12 Indiana public educator (the author) to write instructional material that could be implemented into participating teams' high school science and engineering classrooms. The goal was to create science-based integrated STEM learning experiences that complement the construction and racing of a 48-volt electric…
Descriptors: Novices, Decision Making, Instructional Materials, Material Development
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Eury Hong; Anthony M. Perry – Journal of STEM Education: Innovations and Research, 2023
Community-based Project-Based Learning (PBL) is a promising practice to improve secondary STEM education. In these projects, students design and conduct authentic investigations with community stakeholders and technical experts. The work culminates with a public display of authentic artifacts like evidence-based advocacy reports or engineering…
Descriptors: STEM Education, Instructional Materials, Video Technology, Technology Uses in Education
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R. F. Malenda; S. Talbott; Scott Walck – Journal of College Science Teaching, 2024
In this article, we discuss Micro Assignment Guided Inquiry and Collaboration (MAGIC), an active learning method that draws on the merits of inquiry-based learning in STEM courses. We describe the use of Micro Assignments (MAs) consisting of a series of short, instructive guiding questions that scaffold the course material. Students work through…
Descriptors: Assignments, Inquiry, Active Learning, Scaffolding (Teaching Technique)
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Ricka Tesi Muskania; Arifin Maksum; I Made Astra – Pegem Journal of Education and Instruction, 2024
Science learning today refers to the STEM approach from both primary education to higher education. Teaching materials are the second important part besides the role of creative and innovative teachers in the learning process. Teaching materials are used as learning resources that can be created and developed by the teacher according to the…
Descriptors: Teacher Attitudes, STEM Education, Foreign Countries, Elementary School Teachers
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Kylie Peppler; Naomi Thompson – Journal of the Learning Sciences, 2024
Background: This study builds on posthumanist and new materialist orientations to examine the role of material properties and the gendered identity texts of educational tools as active agents in STEM learning. Methods: Over 200 youth, ages 5-15, were randomly assigned to 90-minute introductions to one of five commercial circuitry toolkits. Youth…
Descriptors: Art Education, STEM Education, Learning Modules, Sex Role
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Taylor, Jonté C.; Hwang, Jiwon – Intervention in School and Clinic, 2021
The need for all students to have science, technology, engineering, arts, and mathematics (STEAM) experiences has translated into research examinations of what strategies and practices work in learning STEAM-related concepts and ideas. Through research, effective frameworks, strategies, and additional considerations have been identified for…
Descriptors: Art Education, STEM Education, Distance Education, Electronic Learning
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Barlow, Allyson; Brown, Shane; Lutz, Benjamin; Pitterson, Nicole; Hunsu, Nathaniel; Adesope, Olusola – International Journal of STEM Education, 2020
Evidence shows that students who are actively engaged with learning materials demonstrate greater learning gains than those who are passively engaged. Indeed, cognitive engagement is often cited as a critical component of an educational experience. However, understanding how and in what ways cognitive engagement occurs remains a challenge for…
Descriptors: College Students, Engineering Education, Learner Engagement, Active Learning
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Fokides, Emmanuel; Papoutsi, Alexandra – Education and Information Technologies, 2020
Primary school students find it difficult to grasp concepts related to electricity. On the other hand, tangible user interfaces, such as Makey-Makey, offer an interesting alternative for teaching this subject. In order to examine whether the above holds true, a pilot project was carried out, having as a target group 75 students aged 10-11, divided…
Descriptors: Energy, STEM Education, Elementary School Students, Elementary School Science
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Puttick, Gillian M.; Drayton, Brian; Silva, Christina – Journal of College Science Teaching, 2022
In this study, we analyzed the literature on teaching or learning on a topic in Earth science, environmental science, or climate change between 1995 and 2017. We investigated the length of the intervention, intervention setting and instructional level, instructional purpose, pedagogical framing and pedagogical methods (including what materials and…
Descriptors: Undergraduate Study, Earth Science, Environmental Education, Climate
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Czajka, Charles Doug; McConnell, David – International Journal of Science Education, 2019
Efforts to promote the use of student-centered learning environments in STEM education have been tempered by a lack of professional development strategies that help faculty overcome common barriers to reform. This study investigated the impact that adopting a suite of student-centered teaching materials had on the teaching practices and beliefs of…
Descriptors: Adoption (Ideas), Student Centered Learning, Instructional Materials, Faculty Development
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Angwal, Yaki Akawo; Saat, Rohaida Mohd; Sathasivam, Renuka V. – Malaysian Online Journal of Educational Sciences, 2019
Integrated STEM education holds the promise for students' meaningful science instruction. However, the implementation of integrated STEM-based approaches for science learning might be difficult for teachers due to the lack of expertise and instructional materials. Therefore, this study focused on the preparation and validation of an integrated…
Descriptors: Genetics, Science Instruction, Secondary School Students, STEM Education
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Pelletreau, Karen N.; Knight, Jennifer K.; Lemons, Paula P.; McCourt, Jill S.; Merrill, John E.; Nehm, Ross H.; Prevost, Luanna B.; Urban-Lurain, Mark; Smith, Michelle K. – CBE - Life Sciences Education, 2018
Helping faculty develop high-quality instruction that positively affects student learning can be complicated by time limitations, a lack of resources, and inexperience using student data to make iterative improvements. We describe a community of 16 faculty from five institutions who overcame these challenges and collaboratively designed, taught,…
Descriptors: Faculty Development, Models, Academic Achievement, Active Learning
Price, Lauren E.; Provencher, Sabrina A.; Stevens, Carla J. – Houston Independent School District, 2018
Since established by an Appropriations Act in 2006, the Teacher Incentive Fund (TIF) competitive grant program in the U.S. Department of Education has supported human capital strategies "to ensure that students attending high-poverty schools have better access to effective teachers and principals, especially in hard-to-staff subject…
Descriptors: Incentive Grants, STEM Education, Human Capital, Master Teachers
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Ruder, Suzanne M.; Stanford, Courtney; Gandhi, Anand – Journal of College Science Teaching, 2018
Active learning classrooms provide an ideal opportunity to develop key workplace skills such as teamwork, information processing, critical thinking, and problem solving. Although many active learning pedagogies implicitly support student development of these skills, the role of the instructor in explicitly prompting and assessing these skills in…
Descriptors: Scaffolding (Teaching Technique), STEM Education, Job Skills, Active Learning
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