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Scott R. Bartholomew; Mark P. Mahoney; Joanna Papadopoulos; Subrina D. Oliver; Euisuk Sung; Douglas Lecorchick; Geoff Wright; Todd R. Kelley – Technology and Engineering Teacher, 2022
The ITEEA's Council for Technology and Engineering Teacher Education (CTETE) Curriculum Committee solicited, collected, and analyzed several examples of international lesson plans to find out how various countries understand and/or apply the "Standards for Technological and Engineering Literacy: The Role of Technology and Engineering in STEM…
Descriptors: STEM Education, Comparative Analysis, Curriculum Evaluation, Foreign Countries
Salih Cepni; Mirac Aydin; Kubra Ada Yildiz; Salih Birisci; Cem Ozkan; Cemal Yalabuk – International Journal of Science and Mathematics Education, 2024
The importance of integrating effective teaching strategies in Professional Development (PD) programs for Educational Robotics (ER)-based Science Technology Engineering and Mathematics (STEM) education is increasingly recognized. However, we need to add to the growing body of studies on comprehensive instructional approaches for teaching robotics…
Descriptors: STEM Education, Knowledge Base for Teaching, Robotics, Faculty Development
Birdon, Leslie Annette – Research Issues in Contemporary Education, 2023
With the implementation of Next Generation Science Standards, educators shifted from lecturer to facilitator using inquiry-based learning approaches. Teachers may express anxiety about this role reversal in providing scientific instruction. This study addressed conflicting perspectives in the implementation of inquiry-based learning approaches as…
Descriptors: Teacher Attitudes, Active Learning, Inquiry, Disproportionate Representation
So, Winnie Wing Mui; He, Qianwen; Chen, Yu; Li, Wai Chin; Cheng, Irene Nga Yee; Lee, Theodore Tai Hoi – Science Education International, 2022
Recent studies show that many of the current and future careers involve some form of science, technology, engineering, and mathematics (STEM) integration. The new development of school STEM education provides opportunities for students to acquire the necessary knowledge, skills, and attitudes to face the challenges ahead. Involving students with…
Descriptors: Engineering Education, STEM Education, Educational Opportunities, Teaching Methods
Kilty, Trina; Burrows, Andrea; Welsh, Kate; Kilty, Kevin; McBride, Shawna; Bergmaier, Philip – Journal of Technology and Science Education, 2021
An authentic, interdisciplinary, research and problem-based integrated science, technology, engineering, and mathematics (STEM) project may be ideal for encouraging scientific inquiry and developing teamwork among undergraduate students, but it also presents challenges. The authors describe how two interdisciplinary teams (n=6) of undergraduate…
Descriptors: Interdisciplinary Approach, STEM Education, Undergraduate Students, Preservice Teachers
Idsardi, Robert; Hahn, Daniel A.; Bokor, Julie R.; Luft, Julie A. – Journal of College Science Teaching, 2019
Science faculty are being asked to create active learning experiences that engage students in core concepts and science practices. This article describes an approach to developing active learning lessons from authentic science research projects using the 5E lesson format. Included is a description of the 5Es and a template for creating a 5E…
Descriptors: Scientific Research, Science Instruction, Introductory Courses, Active Learning
Stephan, Michelle – Educational Leadership, 2016
Although most tasks that STEM professionals engage in--like identifying problems, making models, and testing those models--involve inquiry, many STEM classes still rely on direct instruction. Stephan argues that even as new resources for active learning are being developed for STEM instruction, many teachers aren't using these resources and tasks…
Descriptors: STEM Education, Inquiry, Problem Solving, Active Learning
Smart, Julie – Redleaf Press, 2017
Learn to use inquiry-based practice to inspire young minds through science. This book gives educators a solid guide for using research-based principles of inquiry to help children explore their world. With real-life examples and information on facilitating and guiding children, you will be able to engage and maximize STEM learning. Web content and…
Descriptors: Book Reviews, Active Learning, Inquiry, STEM Education
Tobin, William; Feit, Valerie – Teachers College Press, 2020
New research points to the future of education as online, student-centered, collaborative, and community-based--all largely absent from today's educational landscape. This timely guide shows middle, high school, and college students how to undertake research to address challenges in their curriculum and communities. The approach is deliberately…
Descriptors: Student Research, Community Change, Ethics, Problem Solving
Sias, Christina M.; Nadelson, Louis S.; Juth, Stephanie M.; Seifert, Anne L. – Journal of Educational Research, 2017
Students need to be prepared for the 21st century by developing the literacy skills necessary for participating in the age of synthesis--an age that requires a progressive set of skills and knowledge. The authors identified nine educational innovations that are perceived to be effective for preparing students for the 21st century age of synthesis…
Descriptors: STEM Education, Lesson Plans, Educational Innovation, Elementary School Teachers
Bagiati, Aikaterini; Evangelou, Demetra – European Early Childhood Education Research Journal, 2015
The study presented here focuses on the development of an early education Science, Technology, Engineering and Mathematics (STEM) curriculum with emphasis on engineering. This article presents the teacher's experience as she undertook the task of familiarising herself with the new content and using the curriculum in a university based…
Descriptors: Preschool Education, STEM Education, Engineering Education, Curriculum Development
Herro, Danielle; Quigley, Cassie – Journal of Computers in Mathematics and Science Teaching, 2016
This paper examines the implementation practices of a 6th grade middle school teacher enacting STEAM (science, technology, engineering, art and math) teaching in his classroom after participating in a 45-hour STEAM professional development. Case study is used to detail the process, successes, and challenges. Project-based learning, technology…
Descriptors: Case Studies, Middle School Teachers, Curriculum Implementation, Educational Practices

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