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Jakub L. Radzikowski; Luke Delmas; Eliel Cohen; Julianne Viola; Jozef Youssef; Alan C. Spivey; Roger Kneebone – Journal of Chemical Education, 2024
Transition from high school to higher education poses a significant challenge for students, particularly in chemistry, where students' prior laboratory experience is varied. Traditional laboratory education, focusing on chemical knowledge, scientific methodology, and practical skills, does not focus on the development of translational skills and…
Descriptors: Chemistry, Interdisciplinary Approach, Laboratory Experiments, Self Efficacy
Ana Oliveira; Yasmeen Mezil; Noori Akhtar-Danesh; Andrew Palombella; Jasmine Rockarts; Sarah Wojkowski; Bruce Wainman – Anatomical Sciences Education, 2024
Interprofessional anatomy dissection (IAD) courses increase students' readiness for interprofessional education (IPE) both in-person and online. During the COVID-19 pandemic, virtual environments for anatomy learning were perceived as less effective. Hybrid instruction approaches emerged but have been scarcely evaluated. This study assessed…
Descriptors: Anatomy, Laboratory Procedures, College Students, Interdisciplinary Approach
Michael K. Seery; Hendra Y. Agustian; Frederik V. Christiansen; Bente Gammelgaard; Rie H. Malm – Chemistry Education Research and Practice, 2024
Laboratory work in chemistry has been extensively researched in the last decade but the gap between research and practice is still broad. This "Perspective" shares 10 guiding principles relating to university laboratory education, drawing on research over the last decade. Written with an audience of practitioners in mind, the…
Descriptors: Science Education, Science Laboratories, Chemistry, College Science
Timothy M. Sonbuchner; Eugenia Villa-Cuesta; Michael R. Dores; Richard W. Denton; Jillian C. Nissen; Renu Balyan; Mary Ross – Journal of College Science Teaching, 2025
Despite the intrinsic interdisciplinary nature of STEM, teaching interdisciplinarity in the classroom is difficult and students struggle to find the applicability of concepts and skills in different scientific disciplines. In this work we propose a micro-credential "badge" system called Demonstrated Understanding of Core Knowledge (DUCK)…
Descriptors: Biology, Chemistry, Introductory Courses, Microcredentials
Ali Kürsat Erümit; Rabia Özdemir Sarialioglu – Discover Education, 2025
There is increasing interest in the use of artificial intelligence technologies, which have become a transformative force in the field of education, in educational fields that include subject areas that support lifelong learning, such as science and chemistry education. In this study, a systematic review was conducted on the use and effects of…
Descriptors: Artificial Intelligence, Science Education, Chemistry, Interdisciplinary Approach
Hacer Tercanli; Ben Jongbloed; Barend van der Meulen – Higher Education Quarterly, 2024
University-based boundary organisations provide academics with an environment where they can interact with a wide variety of societal partners to produce knowledge and work on research projects, often of a transdisciplinary nature. This environment, however, implies that their researchers may be confronted with multiple and sometimes conflicting…
Descriptors: Laboratories, Urban Renewal, Educational Environment, Foreign Countries
Kari L. Lavalli; Maria E. Abate – Journal of College Science Teaching, 2024
Environmental science classes often ask students to examine changes in species or their environments to determine the human impact on a particular habitat or ecosystem. It is not always practical to take students out for a field study to do this kind of analysis; instead, the scientific method and diversity analyses can be utilized while students…
Descriptors: Art, Ecology, Scientific Concepts, Environmental Education
Stefanie H. Chen; Christina B. Garcia; Eric Lazear; Thomas B. Lentz; Sabrina D. Robertson; Zhen Li; Carlos C. Goller – Discover Education, 2024
As data and protocols are increasingly generated, accessed, and manipulated electronically, many labs are shifting to storing data in electronic laboratory notebooks (ELNs). ELNs provide clear advantages in readability, shareability, searchability, accessibility, and data security over their paper counterparts. Our interdisciplinary program…
Descriptors: Educational Technology, Science Instruction, Teaching Methods, Laboratory Experiments
Floris A. Valentijn; Michael Y. Schakelaar; Maria A. Hegeman; Willemijn D. Schot; Wim J. A. G. Dictus; Sandra Crnko; Toine ten Broeke; Niels Bovenschen – Biochemistry and Molecular Biology Education, 2024
Translational medicine (TM) is an interdisciplinary branch of biomedicine that bridges the gap from bench-to-bedside to improve global health. Fundamental TM skills include interdisciplinary collaboration, communication, critical thinking, and creative problem-solving (4Cs). TM is currently limited in undergraduate biomedical education programs,…
Descriptors: Barriers, Interdisciplinary Approach, Patients, Physicians
Shannon C. Timmons; Aleksandra Kuzmanov – Journal of Chemical Education, 2024
Health-related career goals are popular among high school science students, yet few understand the application of chemistry and biology research to the field of medicine and its impact on society. In this five-day multidisciplinary summer camp, high school students learn about the real-world relevance of medicinal chemistry research and its…
Descriptors: Scientific Concepts, Molecular Structure, Medicine, Interdisciplinary Approach
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
Amy Adair – ProQuest LLC, 2024
Developing models, using mathematics, and constructing explanations are three practices essential for science inquiry learning according to education reform efforts, such as the Next Generation Science Standards (NGSS Lead States, 2013). However, students struggle with these intersecting practices, especially when developing and interpreting…
Descriptors: Artificial Intelligence, Evaluation Methods, Scaffolding (Teaching Technique), Mathematics
Heather Catherine Thompson – ProQuest LLC, 2024
This study investigates the instructional practices of a chemistry professor during an immersion summer program, with a focus on employing multimodal discourse within a studio-based learning environment. For this study, multimodal discourse includes natural language, gestures, mathematical expressions, symbolic visual representations, and manual…
Descriptors: Teaching Methods, Design, Chemistry, Summer Programs
Grace I. Borlee; Traci Kinkel; Bettina Broeckling; Bradley R. Borlee; Christie Mayo; Carolina Mehaffy – Journal of Microbiology & Biology Education, 2024
Course-based undergraduate research experiences (CUREs) provide opportunities for undergraduate students to engage in authentic research and generally increase the participation rate of students in research. Students' participation in research has a positive impact on their science identity and self-efficacy, both of which can predict integration…
Descriptors: Undergraduate Students, Microbiology, Science Instruction, Comparative Analysis