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Penelope Georges; Sami Kahn – Biomedical Engineering Education, 2025
Rapid advancements in bioengineering call for broad public literacy to help individuals better understand the changes these technologies bring to our lives. However, making bioengineering concepts accessible and relevant, especially to non-science majors, is often challenging. To address this challenge, we designed a general education course aimed…
Descriptors: Biology, Engineering, Engineering Education, Teaching Methods
Sevgi Aydin Gunbatar; Elif Selcan Oztay; Betul Ekiz Kiran – Research in Science & Technological Education, 2024
Background: Training both pre - and in-service teachers who are capable of planning and enacting engineering design-based science instruction are critical for integrating engineering into K-12 science curricula. Purpose: This study investigates pre-service teachers' efforts to integrate engineering into their lesson plans. Sample: 13 pre-service…
Descriptors: Preservice Teachers, Engineering Education, STEM Education, Chemistry
Genfu Wu; Kejie Wu – Journal of Biological Education, 2024
Course-based undergraduate research experience (CURE) exposes an entire class of students to scientific research and is thought to increase students' knowledge retention in science, technology, engineering and mathematics education. Microbial engineering is an interdisciplinary subject that combines science and engineering. We transformed a…
Descriptors: Scientific Literacy, Engineering, Microbiology, Science Instruction
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
Jackson, David W.; Cheng, Yihong – Computer Science Education, 2022
Background and Context: Computational thinking and practices (CT|P) are key competencies for learners in science and engineering. For studies with young adolescents as participants, manifested research philosophies are sometimes inconsistent with societal pluralisms. Objective: Based on research literature from 2016 to early 2019 for CT|P in…
Descriptors: Adolescents, Science Instruction, Engineering Education, Computation
Nevin Kozcu Cakir; Suna Karlidag – International Journal of Technology in Education, 2024
The purpose of the current study is to examine the effect of adapting the engineering design process to robotic coding, STEM, and the nature of science applications on teachers' self-efficacy towards engineering education and attitudes towards robotic coding. A weak experimental design with a single-group pre-test and post-test, one of the…
Descriptors: Engineering Education, Design, Robotics, Coding
Hanall Sung; Martina A. Rau; Barry D. Van Veen – IEEE Transactions on Learning Technologies, 2024
In many science, technology, engineering, and mathematics (STEM) domains, instruction on foundational concepts heavily relies on visuals. Instructors often assume that students can mentally visualize concepts but students often struggle with internal visualization skills--the ability to mentally visualize information. In order to address this…
Descriptors: Intelligent Tutoring Systems, Visualization, Measures (Individuals), Educational Development
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
Branden Hoefert – ProQuest LLC, 2023
 Today's elementary teachers are expected to teach the engineering practices included in the National Research Council's Framework for K-12 Science Education and the Next Generation Science Standards. Recent studies have indicated that teachers are less self-efficacious in teaching engineering than in other subject areas. Project Lead the…
Descriptors: Elementary School Teachers, Self Efficacy, Engineering Education, STEM Education
Baiyun Chen; Ronald F. DeMara – IEEE Transactions on Education, 2024
The COVID-19 pandemic has introduced challenges to delivering laboratory-based STEM curricula. This study evaluates students' learning experience in a synchronous team design activity within the laboratory component of an undergraduate Computer Engineering course during the pandemic. Using the EduPad digital platform, students collaborated in…
Descriptors: Synchronous Communication, Distance Education, Engineering, STEM Education
Gyeong-Geon Lee; Wonhyeong Jang – Educational Technology & Society, 2024
This study conceptualized Technology-Enhanced Distance Laboratory (TEDL) as a subset of Non-Traditional Laboratory (NTL) to best describe global STEM education practices after the COVID-19 pandemic. We systematically gathered and examined 141 empirical TEDL studies reported from March 2020 to August 2022. Most studies were contextually rooted in…
Descriptors: COVID-19, Pandemics, STEM Education, Laboratory Procedures
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
Taylor, Diondraya Christine – ProQuest LLC, 2023
The opportunity to innovate, experiment, and take chances in the classroom should be accessible to all students regardless of the social identities they hold; however, white women and women of color (WOC) in male-dominated physics, engineering, math and computer science (PEMC) learning environments, and STEM broadly, have been expected to take…
Descriptors: Females, College Students, Physics, Science Instruction
Jessie Webb – ProQuest LLC, 2023
In 2013, a new set of science standards was introduced for K-12 science education, called the Next Generation Science Standards (NGSS), which focused on three dimensions of science learning that work together: disciplinary core ideas, crosscutting concepts, and science and engineering practices. These standards are novel in their emphasis on…
Descriptors: Educational Practices, Academic Standards, Elementary Secondary Education, Engineering Education
Tyler S. Love; Mark D. Threeton; Kenneth R. Roy – Journal of Technology Education, 2023
Fostering experiential learning experiences that allow students to apply their design thinking skills is important for developing technological and engineering (T&E) literacy. However, K-12 schools must ensure that educators providing these experiential T&E experiences are adequately prepared and supported to maintain a safer teaching and…
Descriptors: Safety, Engineering Education, Technology Education, Elementary Secondary Education