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Clark, Renee; Spisso, Abra; Ketchman, Kevin J.; Landis, Amy E.; Parrish, Kristen; Mohammadiziazi, Rezvan; Bilec, Melissa M. – Journal of Civil Engineering Education, 2021
Recruitment, retention, and preparation of students in science, technology, engineering, and math (STEM) fields are critical to meeting the global challenges of the 21st century. Gamification--game playing concepts used in another activity--has been postulated as an active teaching strategy that engages students, encourages a sense of community,…
Descriptors: Gamification, Educational Games, Game Based Learning, STEM Education
Esra Kizilay; Nagihan Tanik Önal; Asli Saylan Kirmizigül – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2024
This study presents a rollercoaster activity including virtual reality and following the six-steps engineering design process. In the study, a real-life problem involving a rollercoaster accident was given to 12 pre-service science teachers first. The participants were then asked to imagine, plan, create, and test a rollercoaster without an…
Descriptors: STEM Education, Learning Activities, Computer Simulation, Educational Technology
Angi Stone-MacDonald; Kristen Wendell; Anne Douglass; Mary Lu Love; Amanda Wiehe Lopes – Brookes Publishing Company, 2024
Boost young children's problem-solving skills and set them up for long-term success with the second edition of this practical guidebook! Enhanced with new lessons and timely topics--including equity and the use of makerspaces--this book will help you get all children ready for kindergarten by teaching them basic practices of engineering design and…
Descriptors: Young Children, Infants, Toddlers, Preschool Children
Herianto; Jaslin Ikhsan; Lusila Andriani Purwastuti – Journal of Educational Research, 2024
Twenty-first-century skills are increasingly recognized as critical skills that today's students must develop to adapt to increasingly rapid world changes. This research aims to test the effectiveness of the STEM-EDELCY learning model to improve students' 21st-century skills. This research involved 285 junior high school students (aged 12-13) from…
Descriptors: 21st Century Skills, Skill Development, STEM Education, Engineering Education
Paul Asunda; Miad Faezipour; Joshua Tolemy; Milo Timothy Do Engel – Journal of Technology Education, 2023
The scope and versatile nature of engineering and technology education as a discipline provide a platform for the integration of computational thinking (CT) into STEM education, accomplishing the goal of bringing not only computer science principles into the K-12 education but also the fundamentals of machine learning (ML) and artificial…
Descriptors: Computation, Thinking Skills, STEM Education, Engineering Education
Deepika Menon; Diana S. Cheng; Rosetta W. Ngugi – Journal for STEM Education Research, 2024
Reform efforts in K-12 science education have been gaining pace ever since the introduction of the "Next Generation Science Standards" (NGSS). The new vision calls for reconsidering teacher preparation programs to prepare future teachers who are confident and competent in delivering NGSS-based instruction. This study investigated the…
Descriptors: Academic Standards, Teaching Methods, Microteaching, Preservice Teachers
Ting-Ting Wu; Hsin-Yu Lee; Pei-Hua Chen; Chia-Ju Lin; Yueh-Min Huang – Journal of Computer Assisted Learning, 2025
Background: Science, Technology, Engineering, and Mathematics (STEM) education in Asian universities struggles to integrate Knowledge, Skills, and Attitudes (KSA) due to large classes and student reluctance. While ChatGPT offers solutions, its conventional use may hinder independent critical thinking. Objectives: This study introduces PA-GPT,…
Descriptors: Peer Evaluation, Artificial Intelligence, Natural Language Processing, Technology Uses in Education
Solodikhina, ?nna; Solodikhina, ?aria – Education and Information Technologies, 2022
Engineering education must be changed following the change in the labor market. The cult of innovation has led to a demand for innovators who have both the mindset of an inventor who can see a problem and find a way to solve it, and the mindset of an entrepreneur who is ready to bring that solution to life. Thus, teaching a techno-innovator…
Descriptors: Engineering Education, Thinking Skills, Innovation, Skill Development
Pramod Abichandani; Deepan Lobo; Branislav Dimitrijevic; Ashish Borgaonkar; Jaskirat Sodhi; Smit Kabrawala; Daniel Brateris; Moshe Kam – Interactive Learning Environments, 2024
This paper presents a competition-based active learning approach that prepares undergraduate students for careers in the drone industry. The competition-based learning (CBL) approach focuses on preparing students for three key drone industry requirements (1) drone assembly, testing, and validation using commercial off-the-shelf (COTS) parts, (2)…
Descriptors: Active Learning, Competition, Undergraduate Students, Aviation Technology
Olufade, Ayo Elijah – ProQuest LLC, 2022
The problem addressed in this study was high school science teachers' lack of understanding of science, technology, engineering, and mathematics (STEM) and clarity for the integration of Next Generation Science Standards (NGSS) approaches to align standards in STEM with high school science education. The purpose of this qualitative case study was…
Descriptors: Science Teachers, High Schools, STEM Education, Skill Development
Fan, Szu-Chun; Yu, Kuang-Chao; Lin, Kuen-Yi – International Journal of Science and Mathematics Education, 2021
Integrated science, technology, engineering, and mathematics (STEM) curricula have taken center stage in the recent education reforms. However, the challenge in teaching STEM curricula lies in finding ways to develop students' content knowledge and plan suitable learning activities and instructional strategies. This paper is focused on the…
Descriptors: Curriculum Implementation, Engineering Education, STEM Education, Integrated Curriculum
Parvin, Joy – Primary Science, 2020
Enriching children's experiences of science beyond the curriculum increases their own personal 'portfolio' that they will carry with them through life (ASPIRES Research, 2020) and which can help them make informed choices about subject and career choices when the time comes. Conversations with family are vital to children's thinking, aspirations…
Descriptors: Females, Scientists, Engineering, Technical Occupations
Wonki Lee; Nathan Mentzer; Andrew Jackson; Scott Bartholomew; Amiah Clevenger – Design and Technology Education, 2024
This research investigates students' argumentation quality in engineering design thinking. We implemented Learning by Evaluating (LbE) using Adaptive Comparative Judgment (ACJ), where students assess pairs of items to determine the superior one. In ACJ, students provided rationales for their critiques, explaining their selections. Fifteen students…
Descriptors: Engineering Education, Persuasive Discourse, Design, Thinking Skills
Arreola, Anaiss; Ganim, Katherine R. – Journal of Science Education for Students with Disabilities, 2021
When you don't have a hand, what could you have instead? This article introduces the impact of inviting youth with disabilities to learn tools and technology to design their own solutions and advocate for their own future. This approach to programming is rooted in a mindset of designing WITH, not FOR. Not only are design outcomes improved when…
Descriptors: Empowerment, Youth Programs, Students with Disabilities, Design
Wittayakhom, Nawarat; Piriyasurawong, Pallop – Higher Education Studies, 2020
The purposes of this study were: 1) design Learning Management STEAM Model on Massive Open Online Courses Using Augmented Reality to enhance Creativity and Innovation, 2) suitability assessment of a Learning Management STEAM Model on Massive Open Online Courses Using Augmented Reality to enhance Creativity and Innovation. The research methodology…
Descriptors: Art Education, STEM Education, Engineering Education, Higher Education