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David W. Jackson; Helen Zhang; Fahd Abdus-Sabur – TechTrends: Linking Research and Practice to Improve Learning, 2025
During young adolescence, many youth develop strong identities in relation to science, technology, engineering and mathematics with computing (STEM + C). One way to design for student engagement in STEM + C is to create project-based units that leverage students' interests. We created one such unit, called the "smart greenhouse project".…
Descriptors: Instructional Design, Computer Uses in Education, STEM Education, Student Projects
Scowcroft, Victoria; Davies, Steve R.; Mathlin, Gary; Sloan, Peter A. – Physics Education, 2023
Astronomy is one of the few sciences where the data (star-light) can be seen by all. Yet, there is a disconnect between a typical undergraduate lecture and, for example, where a planet may be in the sky and how to observe it. With the advent of moderate cost, high-quality 'back-garden' astronomy, and standard computers powerful enough to produce…
Descriptors: Science Instruction, College Science, Undergraduate Study, Science Laboratories
Lueck, Amy J.; Kroot, Matthew V.; Panich, Lee M. – Community Literacy Journal, 2021
Colleges and universities across the United States are recognizing the public memory function of their campus spaces and facing difficult decisions about how to represent the ugly sides of their histories within their landscapes of remembrance. Official administrative responses to demands for greater inclusiveness are often slow and conservative…
Descriptors: School Community Relationship, Writing (Composition), Undergraduate Students, Computer Uses in Education
Danielle J. Malone; J. B. Firestone; J. A. Morrison; S. N. Newcomer; L. K. Lightner – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2024
This paper describes the integration of geographic information system (GIS) technology in a high school environmental science classroom, specifically examining the impact of GIS technology on student engagement, critical thinking, and interdisciplinary learning for Education for Sustainability (EfS). This environmental science classroom utilized…
Descriptors: Sustainability, Environmental Education, Geographic Information Systems, High Schools
Williams, Neil A. – Journal of Chemical Education, 2022
Across the United Kingdom Higher Education system, the percentage of white students attaining a first or upper second-class degree exceeds the that of Black Asian Minority Ethnic (BAME) students. This is known as the BAME degree awarding gap. Awarding gaps are also seen at the module level. The BAME module awarding gap is defined as the difference…
Descriptors: College Science, Inclusion, Achievement Gap, Chemistry
Yenkie, Kirti Maheshkumar – Chemical Engineering Education, 2020
The current business trends, such as Industry 4.0, require a modern chemical engineer to know about programming, advanced computational tools, and holistic thinking. To this end, an integrated approach, where theoretical concepts are supplemented by computational lab-based exercises and team projects promoting "Design Thinking" is…
Descriptors: Chemical Engineering, Engineering Education, Undergraduate Students, College Instruction
Zarantonello, Federico; Mancin, Fabrizio; Bonomi, Renato – Journal of Chemical Education, 2020
This work describes a two-year project carried out in an Italian technical high school. Through integrated work, the activity involved the efforts of different teachers and students, particularly those in the Chemical, Electronic, and IT departments. They merged their complementary skills to create an inexpensive device that quickly measures water…
Descriptors: Water, Secondary School Science, Computer Uses in Education, Measurement Equipment
Gondi, Vamsi; Hua, David; Bajracharya, Biju Raja – Information Systems Education Journal, 2021
In the age of COVID-19, traditional teaching techniques are under scrutiny. Most concepts and labs in the area of information technology are intended to be taught face-to-face in labs using clusters and networking infrastructure. Simulation software's such as uCertify, Pearson online, etc.., are good alternative, but are not always a viable…
Descriptors: Computer Science Education, Computer Software, Computer Simulation, Information Technology
Velasco, Richard Carlos L. – Technology and Engineering Teacher, 2018
The evolution of digital technologies over the past couple of decades has contributed to a paradigm shift in education where the internet and web-based applications have become ubiquitous in primary and secondary classrooms (Glassman & Kang, 2011). With this shift came the digital phenomena known today as Web 2.0 technologies. Web 2.0…
Descriptors: Web 2.0 Technologies, Computer Uses in Education, Technology Education, Engineering Education
Segedinac, Mirjana D.; Rodic, Dušica D.; Roncevic, Tamara N.; Horvat, Saša; Adamov, Jasna – Center for Educational Policy Studies Journal, 2020
The first PhD thesis in the field of Chemistry Education at the Faculty of Sciences, University of Novi Sad, was defended in 1992. This can be regarded as the symbolic dawn of Chemistry Education as a scientific discipline in this region. After the official breakup of the Socialist Federal Republic of Yugoslavia, research that had started in the…
Descriptors: Foreign Countries, Educational Research, Chemistry, Science Education
Hesterman, Sandra – Pedagogy, Culture and Society, 2017
A pedagogy of multiliteracies is based on the theoretical perspective that in order to find our way around our mass media, multimedia and electronic hypermedia communication environments and accommodate the realities of increasing local diversity and global connectedness, a broadened definition of literacy is required. New ways of making sense of…
Descriptors: Foreign Countries, Multiple Literacies, Ethnography, Case Studies
Weiss, Charles J. – Journal of Chemical Education, 2017
The Scientific Computing for Chemists course taught at Wabash College teaches chemistry students to use the Python programming language, Jupyter notebooks, and a number of common Python scientific libraries to process, analyze, and visualize data. Assuming no prior programming experience, the course introduces students to basic programming and…
Descriptors: Science Instruction, College Science, Chemistry, Computer Uses in Education
Liao, Christine; Motter, Jennifer L.; Patton, Ryan M. – Art Education, 2016
Redefining the educational model of science, technology, engineering, and math curriculum (STEM) to also include art to become STEAM (Fournier, 2013; Guyotte, Sochacka, Constantino, Walther, & Kellam, 2014) is a current method to encourage students to actively participate in 21st-century learning (Saxena, 2014). The skills emphasized for…
Descriptors: STEM Education, Art Education, Art Activities, Females
Berkeihiser, Mike – Technology and Engineering Teacher, 2016
Most technology and engineering (T&E) classes are elective, so teachers are always looking for ways to market programs, engage students, and remind administrators and school board members about the good things T&E teachers do with and for kids. In this article, the Unionville High School (PA) Technology and Engineering Department describes…
Descriptors: Technical Education, Engineering Education, High School Students, Manufacturing
Royer, Anne M.; Schultheis, Elizabeth H. – American Biology Teacher, 2014
Evolutionary experiments are usually difficult to perform in the classroom because of the large sizes and long timescales of experiments testing evolutionary hypotheses. Computer applications give students a window to observe evolution in action, allowing them to gain comfort with the process of natural selection and facilitating inquiry…
Descriptors: Evolution, Scientific Concepts, Computer Uses in Education, Science Instruction