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Angela Bassoli – Journal of Chemical Education, 2024
Organic molecules are invisible objects, but they can be visualized and manipulated by using molecular models. The object-based learning (OBL) approach, which is an educational tool developed for museums and collection items, is tailored and applied to a first-year bachelor course of organic chemistry. At the beginning of the course, each student…
Descriptors: Organic Chemistry, Science Instruction, Undergraduate Study, College Science
Arce, Pedro E.; Arce-Trigatti, Andrea; Loggins, Lacy; Sanders, J. Robby; Guerrero-Pérez, Juan S.; Bolaños Barrera, Gustavo E.; Oyanader, Mario A. – New Directions for Teaching and Learning, 2022
This chapter describes specific examples of the implementation of TSPACK framework in Foundry-guided contexts using a case study approach, featuring applications in both regional and international contexts. As education shifts toward active learning, discovery processes, and collaboration across disciplines, a space that fosters the facilitation…
Descriptors: Models, Case Studies, Active Learning, Discovery Processes
Joanne Mulligan; Russell Tytler; Vaughan Prain; Melinda Kirk – Mathematics Education Research Journal, 2024
This paper illustrates how years 1 and 2 students were guided to engage in data modelling and statistical reasoning through interdisciplinary mathematics and science investigations drawn from an Australian 3-year longitudinal study: "Interdisciplinary Mathematics and Science Learning" (https://imslearning.org/). The project developed…
Descriptors: Statistics Education, Longitudinal Studies, Interdisciplinary Approach, Inquiry
Oguz Unver, Ayse; Okulu, Hasan Zuhtu – International Journal of Research in Education and Science, 2022
One of the most challenging tasks for teachers in projects is to develop creative ideas. Due to the linear system perspective of education, fostering students' creativity is restricted. However, engineering design and scientific process skills that comprise creativity have an iterative structure. An iterative process-oriented education enables…
Descriptors: Science Instruction, Engineering Education, Teaching Methods, Creativity
Huang, Zhenhua; Kougianos, Elias; Ge, Xun; Wang, Shuping; Chen, P. Daniel; Cai, Liping – IEEE Transactions on Education, 2021
Contribution: A systematic interdisciplinary engineering and technology instructional model using cutting-edge technologies is proposed in this research. This model consists of four key components: 1) interdisciplinary collaboration; 2) hands-on projects; 3) real-world simulations; and 4) cutting-edge technologies. The model was designed to engage…
Descriptors: Interdisciplinary Approach, STEM Education, Models, Teaching Methods
See, Zi Siang; Ledger, Susan; Goodman, Lizbeth L.; Matthews, Benjamin; Jones, Donovan; Fealy, Shanna; Ooi, Wooi Har; Amin, Manisha – Journal of Information Technology Education: Innovations in Practice, 2023
Aim/Purpose: This paper describes a technologies education model for introducing Simulation Learning and Extended Reality (XR) solution creation skills and knowledge to students at the tertiary education level, which is broadly applicable to higher education-based contexts of teaching and learning. Background: This work is made possible via the…
Descriptors: Technology Education, College Students, Models, Educational Technology
LaDue, N. D.; McNeal, P. M.; Ryker, K.; St. John, K.; van der Hoeven Kraft, K. J. – Journal of Geoscience Education, 2022
Active learning research emerged from the undergraduate STEM education communities of practice, some of whom identify as discipline-based education researchers (DBER). Consequently, current frameworks of active learning are largely inductive and based on emergent patterns observed in undergraduate teaching and learning. Alternatively, classic…
Descriptors: Active Learning, Teaching Methods, Learning Processes, Undergraduate Students
Niever, Manuel; Richter, Thilo; Duehr, Katharina; Wilmsen, Miriam; Lanz, Laura; Walter, Benjamin; Albers, Albert; Hahn, Carsten – Athens Journal of Education, 2020
The working environment of future university graduates is characterized by highly dynamic and complex product development processes. In addition to disciplinary competence, it is essential to build up methodical and social competence as well as to foster the elaboration and creativity potential of students. In order to meet industrial requirements…
Descriptors: Foreign Countries, Case Method (Teaching Technique), Active Learning, Engineering Education
Molebash, Philip E.; Lee, John K.; Heinecke, Walter F. – Journal of Curriculum and Teaching, 2019
This article describes the development of the Teaching and Learning Inquiry Framework (TLIF) and applications for its use. For decades teacher preparation and support has been dictated by a narrow mindset in which academic disciplines have been taught in isolation. This landscape, however, is evolving to align with the view that the world is…
Descriptors: Teaching Methods, Learning, Inquiry, Models
Burks, Tyesha N. – Journal of Microbiology & Biology Education, 2022
Students majoring in non-STEM fields often identify introductory biology courses as irrelevant and overly rigorous. Resistance to enroll in a required general education science course, coupled with negative attitudes toward the subject, can adversely affect the academic performance of students; this can especially be present in students from…
Descriptors: Student Attitudes, Biology, Science Instruction, Introductory Courses
Yoshino, Rui T.; Pinto, Marcela Marçal A.; Pontes, Joseane; Treinta, Fernanda Tavares; Justo, João F.; Santos, Max M. D. – European Journal of Engineering Education, 2020
The current industrial revolution demands a revolution on teaching methodologies at all levels, particularly for higher education. Here, we present an efficient model to teach technologies associated with Industry 4.0 (I4.0) in undergraduate engineering courses. The first step was identifying the main skills required for an I4.0 practitioner and…
Descriptors: Undergraduate Students, Engineering Education, Industry, Teaching Methods
Hall, LaTreese V. – Journal of Interdisciplinary Studies in Education, 2019
Over the past 50 years, the number of alternative schools for at-risk students have increased exponentially. However, the research concerning the students that attend these institutions has been, at best, unhurried. Even more wanting is the research regarding the development and critical evaluation of educational interventions that can motivate…
Descriptors: Athletics, Models, Interdisciplinary Approach, Nontraditional Education
Ferren, Ann S.; Anderson, Chad B. – New Directions for Teaching and Learning, 2016
This chapter explores three key features of integrative learning practice that play a vital role in fostering student success: guidance and support through critical transitions; entire development of the student; and engagement in project-based learning that connects learning to complex, real-world problems, and opportunities that can have…
Descriptors: Interdisciplinary Approach, Educational Practices, Student Development, Active Learning
Stavrou, Dimitris; Michailidi, Emily; Sgouros, Giannis – Chemistry Education Research and Practice, 2018
Introducing Nanoscience and Nanotechnology (NST) topics into school science curricula is considered useful for an in-depth understanding of the content, processes and nature of science and technology, and also for negotiating the social aspects of science. This study examines (a) the development of an inquiry-based Teaching-Learning Sequence (TLS)…
Descriptors: Sequential Learning, Chemistry, Models, Communities of Practice
Gray, Patricia; Germuth, Amy; MacNair, Jessica; Simpson, Claire; Sowa, Sarah; van Duin, Nancy; Walker, Claudia – Journal of Interdisciplinary Teacher Leadership, 2019
This two-year case study examined multi-modal, interdisciplinary approaches to engage both immigrant English Second Language (ESL) and English Language Learners (ELL) in STEM (science, technology, engineering, math) learning and to build STEM identity and self-efficacy. Leveraging innate abilities, multiple intelligences, and self-identified…
Descriptors: Models, STEM Education, Self Concept, English Language Learners