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Showing 1 to 15 of 25 results Save | Export
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James Deehan; L. Danaia; S. Redshaw; L. Dealtry; K. Gersbach; R. Bi – Australian Educational Researcher, 2024
The paper presents a scoping review of research that has been conducted on integrated STEM programmes in Australian schools over a 10-year period (2012--2022). It aims to determine how integrated STEM is being practiced. A total of 17 papers were chosen for review. The review explored the major characteristics of research that has been conducted…
Descriptors: Foreign Countries, STEM Education, Teaching Methods, Integrated Curriculum
Yousef Alrashdi – ProQuest LLC, 2023
This qualitative study was conducted to understand the instructional strategies used by high school integrated STEM (iSTEM) teachers to apply real-world problem solving in their classrooms in the state of Indiana. The problem addressed by this study was the need to understand the instructional strategies employed by iSTEM teachers in their…
Descriptors: High School Teachers, STEM Education, Integrated Curriculum, Problem Solving
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Babaian, Caryn; Kumar, Sudhir – American Biology Teacher, 2022
We introduce biology to the artist's design tool, the storyboard. This versatile organizing and visualizing artistic platform is introduced into the biology classroom to aid in an inventive and focused discovery process. Almost all biological concepts are dynamic, and storyboards offer biology, lecture, wet and computational labs, flexibility,…
Descriptors: Visual Aids, Biology, Authentic Learning, STEM Education
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Love, Tyler S.; Cysyk, Joshua P.; Attaluri, Anilchandra; Tunks, Robert D.; Harter, Kevin; Sipos, Renee – Journal of Science Education and Technology, 2023
Programming and automation continue to evolve rapidly and advance the capabilities of science, technology, engineering, and mathematics (STEM) fields. However, physical computing (the integration of programming and interactive physical devices) integrated within biomedical contexts remains an area of limited focus in secondary STEM education…
Descriptors: STEM Education, Teacher Attitudes, Teaching Methods, Scientific Concepts
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Susanne Engström; Helena Lennholm – International Journal of Technology and Design Education, 2025
In literature, teaching for an authentic learning experience is seen as rewarding and interesting, promoting better understanding of for example sustainable development and fostering students' independence. Some upper secondary schools emphasise authentic teaching and learning on their websites, showcasing how students engage in authentic tasks.…
Descriptors: Secondary School Students, Authentic Learning, Student Attitudes, Technology Education
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Leah R. Cheek; Vinson Carter; Michael K. Daugherty; Christian Z. Goering – Reading Teacher, 2024
Empathy, an unsung, yet critical element of learning, can be strategically interlaced with literacy instruction and engineering design to create a rich and authentic learning experience for students. Integrated STEM education rests on the promise of engaging students and providing deep understandings through the intentional practice of delivering…
Descriptors: Empathy, STEM Education, Literacy Education, Engineering Education
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McLure, Felicity I.; Tang, Kok-Sing; Williams, P. John – International Journal of STEM Education, 2022
The past 20 years has seen a growing focus on the integration of Science, Technology, Engineering and Mathematics (iSTEM) disciplines in schools to provide students with authentic experiences in solving real-world problems. A frequently stated aim for iSTEM projects has been increasing engagement and interest in pursuing STEM subjects in senior…
Descriptors: STEM Education, Teaching Methods, Research Reports, Problem Solving
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Tina Vo; Rebekah Hammack; Paul Gannon; Nicholas Lux; Blake Wiehe; Miracle Moonga; Brock LaMeres – Journal of Science Teacher Education, 2024
As we prepare teachers to provide students with opportunities within STEM education, authentic experiences should guide the instruction. Unfortunately, due to the novel integration of engineering into national reform documents, there is a dearth of documentation on elementary preservice teachers' engineering ideas as they align with student goals…
Descriptors: Majors (Students), Engineering Education, Authentic Learning, Educational Change
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Roehrig, Gillian H.; Dare, Emily A.; Ring-Whalen, Elizabeth; Wieselmann, Jeanna R. – International Journal of STEM Education, 2021
Background: Few tools or rubrics exist to assess the quality of integrated STEM curricula, and existing tools focus on checklists of characteristics of integrated STEM. While such instruments provide important information about the presence and quality of certain curricular components, they do not assess the level and nature of integration of the…
Descriptors: STEM Education, Integrated Curriculum, Check Lists, Units of Study
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Hacioglu, Yasemin; Suiçmez, Esra – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2022
Integration of STEAM disciplines in preschool education is considered to be difficult for children to work as engineers and perform robotics applications. Therefore, preschool STEAM activities are needed. The study aims to convey how to implement the preschool STEAM activity named "We design our school for our visually impaired friend"…
Descriptors: Preschool Children, STEM Education, Art Education, Curriculum Implementation
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Huang, Zhenhua; Kougianos, Elias; Ge, Xun; Wang, Shuping; Chen, P. Daniel; Cai, Liping – IEEE Transactions on Education, 2021
Contribution: A systematic interdisciplinary engineering and technology instructional model using cutting-edge technologies is proposed in this research. This model consists of four key components: 1) interdisciplinary collaboration; 2) hands-on projects; 3) real-world simulations; and 4) cutting-edge technologies. The model was designed to engage…
Descriptors: Interdisciplinary Approach, STEM Education, Models, Teaching Methods
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Scott Thorne; Nathan Mentzer; Greg J. Strimel; Scott Bartholomew; Jason Ware – Journal of Technology Education, 2024
Learning by Evaluating (LbE) is an instructional approach that involves students making comparative judgements of pairs of artifacts, such as student work, portfolios, prototypes, or curated images related to a topic of instruction to enhance critical thinking and decision-making skills. Situated as a primer for learning, the efficacy of LbE stems…
Descriptors: STEM Education, Secondary School Students, Learner Engagement, Teaching Methods
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Gavin Tierney; Carol Adams; Sarah Ward – Journal of Experimental Education, 2025
Project-Based Learning (PjBL) curricula offer unique opportunities for student engagement, yet they do not guarantee an engaging classroom. Furthermore, there has been little scholarly work on PjBL pedagogy that supports student engagement. This qualitative research study explores enactment of a PjBL Advanced Placement Physics 1 curriculum and the…
Descriptors: Active Learning, Student Projects, Learner Engagement, Classroom Environment
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Turner, Angela; Logan, Marianne; Wilks, Judith – International Journal of Technology and Design Education, 2022
Science, Technology, Engineering and Mathematics (STEM) education has been identified as a keystone teaching and learning area for developing students' knowledge and skills on interdisciplinary critical thinking and problem solving (We use the term 'interdisciplinary' because discipline knowledge and methods were integrated from different…
Descriptors: Gardening, Food, Sustainability, Principals
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Singer, Alison; Montgomery, Georgina; Schmoll, Shannon – International Journal of STEM Education, 2020
Background: STEM identity has been shown to have a powerful role in an individual's success in educational environments, as well as on their career goals and trajectories. Historically, however, STEM identity formation for underrepresented students has been hampered by the lack of representation of in STEM fields, which predominantly consist of…
Descriptors: STEM Education, Identification (Psychology), Disproportionate Representation, Student Diversity
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