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Showing 1 to 15 of 38 results Save | Export
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Tracy Hewitt; Frank Forcino – Discover Education, 2025
Integrating hands-on Science, Technology, Engineering, and Math (STEM) education with a focus on the engineering design process into elementary school curricula has been associated with positive outcomes, including enhanced student understanding and increased interest in the topics. Here, we evaluated third grade student interest and perceived…
Descriptors: STEM Education, Grade 3, Elementary School Students, Student Interests
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Meng-Fei Cheng; Yu-Heng Lo; Chi-Ho Cheng – International Journal of Technology and Design Education, 2024
While it has been recognized that science, technology, engineering, and mathematics (STEM) education requires an interdisciplinary approach, integrating multiple subjects in a meaningful way remains challenging for teachers. This study aimed to design a STEM curriculum, emphasizing explicit and continuous scaffolding of students' reflection on…
Descriptors: STEM Education, Student Attitudes, Interdisciplinary Approach, Grade 10
William Domenick Euefueno – ProQuest LLC, 2024
The problem of the study was to determine if the use of a reflective writing assessment at the beginning, middle, and end of a college semester indicated an industrial technology student's knowledge and skills related to technological and engineering literacy. Experiences gained during project-based learning activities were used as the basis for…
Descriptors: Writing Tests, Reflection, Knowledge Level, Industry
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Pin-Hui Li; Hsin-Yu Lee; Chia-Ju Lin; Wei-Sheng Wang; Yueh-Min Huang – Journal of Educational Computing Research, 2025
The core purpose of integrating inquiry-based learning strategies into STEM activities is to create a challenging learning environment that stimulates students' active learning, thereby effectively enhancing their interest in learning, thinking skills, and practical application abilities. To achieve these goals, developing more technology-assisted…
Descriptors: Computer Software, Artificial Intelligence, Synchronous Communication, Active Learning
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Renee M. Clark; Autar Kaw; Andrew Scott; Saurav Kumar; Ali Yalcin – International Journal for the Scholarship of Teaching and Learning, 2025
Adaptive learning supports online instruction by offering feedback to students using machine learning. In a funded study, adaptive learning was used in a flipped STEM course at three universities for pre-class preparation. We conducted a comparative analysis with and without adaptive learning. The assessments were a final exam and concept…
Descriptors: Flipped Classroom, STEM Education, Artificial Intelligence, Technology Uses in Education
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Elizabeth Peterson; Emily Kulakowski; Sylvia L. Mendez – Journal of Advanced Academics, 2024
The purpose of this intrinsic case study was to explore the conceptual knowledge of engineering faculty regarding STEM identity and how they promote undergraduate women's STEM identity in the classroom. Interviews with faculty were grounded in Collins' contextual model of Black student STEM identity and were analyzed inductively and deductively.…
Descriptors: Females, Womens Education, Undergraduate Students, STEM Education
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Kutlu, Emine; Bakirci, Hasan; Kara, Yilmaz – Participatory Educational Research, 2022
Despite the adoption of modern educational approaches such as activity-based, laboratory-based, technology enhanced science education, it is known that in most cases, students have difficulties in achieving desired learning goals such as developing inquiry skills and engineering knowledge. The efforts of science educators to ensure that students…
Descriptors: STEM Education, Inquiry, Engineering Education, Knowledge Level
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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
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Ganime Aydin; Mehpare Saka; Jale Çakiroglu – Educational Policy Analysis and Strategic Research, 2024
The aims of this research were to examine the changes in the students' perceptions of engineers, engineering as a profession, learning of engineering design processes (EDP), awareness of engineering branches, and their future career choices through Engineering Design Process activities with the 5E learning model. Sixty disadvantaged students…
Descriptors: Elementary School Students, Middle School Students, Grade 4, Grade 5
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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
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Lydia Ross; Stephen Krause; Eugene Judson; Keith D. Hjelmstad; Robert Culbertson; James A. Middleton; Lindy Mayled; Sara Hoyt; Kara L. Hjelmstad – Advances in Engineering Education, 2024
Active learning pedagogical practices are more effective than instructor-centered teaching in building students' knowledge, skills, and understanding of engineering content and concepts. As such, a large-scale professional development (PD) program was created to move faculty toward the use of active learning. The project aimed to engage faculty in…
Descriptors: Faculty Development, Active Learning, Teaching Methods, Engineering Education
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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
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Han, Jung; Kelley, Todd; Knowles, J. Geoff – International Journal of Technology and Design Education, 2023
This study investigated the sustainability of an integrated STEM education program. Two US high school science teachers and an engineering technology teacher sustained implementation of an integrated STEM curriculum after the conclusion of the funded program, TRAILS. Class observations were conducted to examine how the teachers implemented the…
Descriptors: Sustainability, STEM Education, High School Teachers, Science Teachers
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Breen, Kimberly C.; Dotson, Mary Elizabeth; Madonna, Megan C.; Asturias, Gabriela; Pena, Daniela Mariucci; Springate, Hope; Alvarez, Valentina; Ramanujam, Nimmi – Advances in Engineering Education, 2023
Background: Through the human-centered design process (HCD), students, referred to as learners, can use a personal lens to contextualize engineering concepts and solve real-world problems (Goldman and Kabayadondo 2016). The Ignite program, created by the Center for Global Women's Health Technologies (GWHT) at Duke University, integrates the HCD…
Descriptors: Design, Thinking Skills, STEM Education, Intervention
Rehmat, Abeera P.; Hartley, Kendall – Interdisciplinary Journal of Problem-based Learning, 2020
Educators in the twenty-first century need to think of innovative ways to engage and prepare students for current and future challenges while cultivating an interest among students in STEM disciplines. This study sought to investigate the impact of problem-based learning on students' content knowledge and critical thinking towards STEM. This study…
Descriptors: Engineering Education, Problem Based Learning, STEM Education, Knowledge Level
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