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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
Sandra L. Pettit; Clifford L. Henderson – Chemical Engineering Education, 2023
Development of team skills is vital to becoming a successful and productive engineer. To prepare students for successful team-based work, they need a basic understanding of the organizational psychology underpinning teamwork and an introduction to tools and techniques to develop and sustain team effectiveness. The goal of this paper is to…
Descriptors: Teamwork, Science Instruction, Teaching Methods, Assignments
Medford, Andrew J.; Boukouvala, Fani; Grover, Martha A.; Sholl, David; Meredith, Carson; Cheng, Pengfei; Choi, Sihoon; Gusmão, Gabriel S.; Kilwein, Zachary; Ravutla, Suryateja; Wirth, Fatimah; Wooley, Jennifer; Sewer, Zaid – Chemical Engineering Education, 2022
The Graduate Certificate in Data Science for the Chemical Industries was designed to provide skills to working professionals, via a fully online and asynchronous format. The certificate may also be earned by undergraduate and graduate students at Georgia Tech. The certificate consists of four courses. The two core courses are Data Analytics for…
Descriptors: Chemistry, Science Instruction, Statistics Education, Chemical Engineering
Yiting Lin; Yunqi Cai; Cheng Lian; Shouhong Xu; Wenqing Zhang; Honglai Liu – Journal of Chemical Education, 2025
Ion transport, involving the diffusion and migration of ions within the electrolyte, stands as a fundamental concept in electrochemistry and serves as the driving force for electrochemical reactions. Electric double layers are critical in the fields of electrochemical energy storage and chemical conversion, constituting a central focus of…
Descriptors: Chemistry, Science Instruction, Energy, Engineering
Dunn, Anna L.; Payne, Andrew; Clark, Peter R.; McKay, Christopher; Williams, Glynn D.; Wheelhouse, Katherine; Arendt, Kevin; Dixon, Frank; Shilcrat, Susan – Journal of Chemical Education, 2021
Awareness of best safety practices in the industrial sector will allow students in chemistry and chemical engineering programs to apply these approaches to their own safety assessments. Process safety is a critical function within the pharmaceutical industry to ensure safety when performing reactions. An introduction to process safety and a series…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Chemical Engineering
Jackson, Julie K.; Forsythe, Michelle; Parthemore, Joseph; Rix, Alexis; Medeiros, Danielle – Science and Children, 2021
Engineering design-based learning entered the discourse of science education with the release of the "Next Generation Science Standards" (NGSS Lead States 2013). Since that time there has been a focused effort to embed engineering design and engineering-based thinking in elementary school experiences. As thinking like an engineer is…
Descriptors: Engineering Education, Science Instruction, Standards, Design
Fisher, Robert J. – Chemical Engineering Education, 2019
Our exponentially increasing knowledge base creates many new technology challenges. Academia must therefore respond emphatically. Educating rising professionals to successfully confront these future difficulties requires innovative curricula challenges. A successful adaptation integrates STEM program protocols into core courses. Embracing…
Descriptors: Science Instruction, Teaching Methods, Mathematical Concepts, Engineering Education
Gregory Amato; Natalia Vargas Perdomo; Nianyue Zhang; Xiaoshi Xie; Jie Ji; Cansu Bolukbas; Zhen Wen; Rafik Naccache; Yuan Fang; Diana Consuelo Rodri´guez Burbano; Oleksandr Ivasenko; Louis Cuccia – Journal of Chemical Education, 2023
Since 2012, when triboelectric nanogenerators (TENGs) were first reported by Wang and co-workers, various applications have taken advantage of their ability to transform mechanical energy into electrical energy. TENG applications cover many fields, including electronics, physics, materials science, and engineering. The differences in the language…
Descriptors: Energy, Chemistry, Science Instruction, Active Learning
David Argudo; Talise Oh – European Journal of Physics Education, 2022
When deriving the equation describing the transverse motion of a one-dimensional vibrating elastic string, introductory physics textbooks often assume constant tension and/or small amplitude vibrations. However, these simplifying assumptions are not only unnecessary, but they overlook the elastic nature of the tension and yield an inconsistent…
Descriptors: Undergraduate Students, Physics, Science Instruction, Teaching Methods
Frackson Mumba; Alexis Rutt; Reid Bailey; Laura Pottmeyer; Rachael van Aswegen; Jennie Chiu; John Ojeogwu – Journal of Science Education and Technology, 2024
"The Framework for K-12 Science Education" and the Next Generation Science Standards require teachers to integrate engineering design into K-12 science teaching. However, many teachers have no formal preparation in engineering design and how to integrate it into science instruction. Furthermore, few models exist for preparing teachers in…
Descriptors: State Standards, Preservice Teacher Education, Preservice Teachers, Secondary School Science
Rouse, Rob; Rouse, Amy Gillespie – Science and Children, 2019
Although incorporating engineering into science instruction seems straightforward, adding more content into an already busy school day may be overwhelming for some teachers. To address this challenge, the authors created a unit that integrates engineering and literacy instruction. This article demonstrates how young students can learn…
Descriptors: Engineering, Engineering Education, Science Instruction, Science Teachers
Koretsky, Milo D. – Journal of Chemical Education, 2020
This communication provides an initial report of modifications of a pedagogically complex, large enrollment (>200 student), studio-based course in response to the COVID-19 pandemic. Compared to face-to-face delivery, course activities were identified as new, modified significantly, or relatively similar. Students were asked to rank eight…
Descriptors: Flipped Classroom, Distance Education, Video Technology, COVID-19
Yasuda, Keita – Journal of Chemical Education, 2021
A laboratory experiment was performed using tetra-n-butylammonium bromide (TBAB) ionic semiclathrate hydrate, a crystalline compound. Ionic semiclathrate hydrates have unique properties, and hence, novel technologies utilizing the ionic semiclathrate hydrates have been proposed to date. Thus, students could learn fundamentals of functional…
Descriptors: Laboratory Experiments, Science Experiments, Chemistry, Science Instruction
Thomsen, Trine; Borre-Gude, Stefan – Journal of Chemical Education, 2021
In this article, a proven safety concept with documented success is presented. The concept aligns with best safety practices and the international engineering educational framework termed "The CDIO Initiative," and it has resulted in a strong safety culture among students and staff. This concept has been developed for undergraduate…
Descriptors: Undergraduate Students, Chemistry, Biotechnology, Engineering Education
Taylor, Richard – Physics Teacher, 2021
Science and engineering students in the second semester of a calculus-based physics sequence typically study and measure the on-axis magnetic field for a multiple, circular turn coil. There are four benefits to this approach: 1) an analytical solution is easily obtained, 2) the coil is easily constructed using tightly wound, high-gauge wire where…
Descriptors: Science Instruction, Engineering Education, Physics, Magnets