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Shukla Sikder – Cultural Studies of Science Education, 2024
There are no conflicts between intentional teaching and play-based learning. However, educators find it challenging to establish the pedagogical relationship between them as they struggle to conceptualise and enact their role in the play-based context. In particular, educators' confidence level is not enough to teach science and engineering in a…
Descriptors: Early Childhood Education, Science Education, Play, Engineering Education
Eun Gyong Kim; Soo-Ok Kweon; Jeong-Ah Lee; Seonmin Park – Language Teaching Research, 2024
English-medium instruction (EMI) has been implemented in higher-education institutions around the world. This study examines the states of EMI-related professional development (PD) for Korean science and engineering professors and their perceptions of such programs. Faculty members at the three major science and engineering schools in Korea…
Descriptors: Faculty Development, Higher Education, Language Usage, Engineering Education
Sunil Dehipawala; Todd Holden; Tak Cheung – International Society for Technology, Education, and Science, 2024
Hurricane and galaxy tidal effect are routine teaching topics in community college first year science courses, but there is a knowledge gap without a quantitative discussion of the physics of non-inertia frame. A survey of YouTube videos posted by Education Centers and professors showed that the hand-waving conceptual explanation is the most…
Descriptors: Community Colleges, Engineering Education, College Freshmen, Astronomy
Smetana, Lara; Nelson, Cynthia Bushar – Electronic Journal for Research in Science & Mathematics Education, 2023
Engineering education is receiving increased attention, although teacher preparation for engineering in the elementary grades is not well understood. This study investigated the influences of an elementary science teaching methods course, focused specifically on elementary engineering, on teacher candidates' self-efficacy for teaching engineering…
Descriptors: Preservice Teachers, Elementary School Teachers, Self Efficacy, Engineering Education
Cervantes Juárez, Erika; Sánchez Guzmán, Daniel – Physics Education, 2023
In many science and engineering undergraduate programmes, physics courses are fundamental and can be seen as a potential place where students can develop complementary abilities such as the computational thinking process. The present work proposes and describes the learning science and engineering with electronic spreadsheets cycle (LSEESC)…
Descriptors: Engineering Education, Spreadsheets, Science Education, Physics
Canan Mesutoglu; Durdane Bayram-Jacobs; Johanna Vennix; Anne Limburg; Birgit Pepin – Research in Science & Technological Education, 2024
Background: In responding to the global problems facing humankind, there is great value in equipping science and engineering students with skills to function well in multidisciplinary teams. Little attention has been paid into the factors that influence multidisciplinary collaboration and teamwork of science and engineering students. Purpose: This…
Descriptors: Teamwork, Physics, Engineering Education, Problem Based Learning
Adrian Wierzchowski; Donald Wink – Journal of Chemical Education, 2024
This paper presents a phenomenographic investigation of students' experiences about research and poster presentations in a workshop-based undergraduate research experience with a focus on how the experience connects to the Science and Engineering Practices (SEPs) of the National Research Council's "A Framework for K-12 Science Education"…
Descriptors: Undergraduate Students, Engineering Education, Science Education, Student Experience
Price, Argenta M.; Kim, Candice J.; Burkholder, Eric W.; Fritz, Amy V.; Wieman, Carl E. – CBE - Life Sciences Education, 2021
A primary goal of science and engineering (S&E) education is to produce good problem solvers, but how to best teach and measure the quality of problem solving remains unclear. The process is complex, multifaceted, and not fully characterized. Here, we present a detailed characterization of the S&E problem-solving process as a set of…
Descriptors: Problem Solving, Science Education, Engineering Education, Teaching Methods
Margaret E. Parker – ProQuest LLC, 2022
The Framework for K-12 Science Education and the Next Generation Science Standards propose that students learn concepts and practices related to engineering as well as science. Currently the research surrounding how engineering practices through engineering design are implemented in the life sciences such as high school biology is limited. To…
Descriptors: Biology, Science Education, Design, Teaching Methods
Scott E. Grapin; Marisleydi Ramos Borrego; Vijay Gallardo Navarro – Journal of Research in Science Teaching, 2025
Research on translanguaging in science and engineering education has grown rapidly. Studies carried out across diverse contexts converge in their commitment to fostering equity in science and engineering learning for linguistically marginalized learners. However, the rapid growth of this research area has exposed different approaches to…
Descriptors: Science Education, Engineering Education, Code Switching (Language), Language Usage
Jasmine Naik; Anna Grosberg; Christine King – Biomedical Engineering Education, 2023
In this paper, we altered an in-person high school tissue engineering program to create a virtual course. Through this alteration, we aimed to show that online programs can still be engaging and at the same time provide greater accessibility and flexibility to students. This was achieved through utilizing Google classroom as a virtual platform for…
Descriptors: Teaching Methods, High School Students, In Person Learning, Online Courses
Peter Hu; Yangqiuting Li; Chandralekha Singh – Physical Review Physics Education Research, 2024
Quantum information science and engineering (QISE) is a rapidly developing field that leverages the skills of experts from many disciplines to utilize the potential of quantum systems in a variety of applications. It requires talent from a wide variety of traditional fields, including physics, engineering, chemistry, and computer science, to name…
Descriptors: Quantum Mechanics, Computer Science Education, Inquiry, Teaching Methods
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
Christopher Harris; Joe Krajcik; James Pellegrino – NSTA Press, 2024
Imagine handing out assessments that spark enthusiasm rather than dread. In six easy-to-follow steps, this book empowers science teachers to create tasks that guide students to use their knowledge, not just memorize facts. The NGSA design process transforms assessments into valuable classroom tools that teachers can use to chart how students'…
Descriptors: Standards, Science Education, Teaching Methods, Teaching Guides
Rim Gouia-Zarrad; Cindy Gunn – International Electronic Journal of Mathematics Education, 2024
This research paper explores the integration of ChatGPT as a tool for interactive learning of numerical methods in a differential equations (DEs) course. DE course is crucial for engineering students to model real-world phenomena. However, many DE courses focus only on analytical solutions and neglect important numerical solutions. To overcome…
Descriptors: Learning Experience, Teaching Methods, Artificial Intelligence, Computer Software