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Pía José González-García; Anna Marbà-Tallada; Mariona Espinet – Chemistry Education Research and Practice, 2023
The introduction of Green Chemistry (GC) into school science curriculum is considered an important step that encourages students to build connections between chemistry, other school subjects, and different aspects of their daily lives. The concepts associated with GC can be applied throughout the various levels of education with different degrees…
Descriptors: Chemistry, Science Education, Environmental Education, Science Teachers
Onur Yalçin; Fatma Sadik – Journal of Baltic Science Education, 2024
This research is a needs analysis study aimed at developing a curriculum based on an interdisciplinary context-based learning approach within the 10th-grade physics course, focusing on the electricity and magnetism unit. The research was designed according to the case study model and data were collected from expert, teacher, and student sample…
Descriptors: Curriculum Development, Science Curriculum, Physics, Interdisciplinary Approach
Mashood, K. K.; Khosla, Kamakshi; Prasad, Arjun; V., Sasidevan; Ashefas CH, Muhammed; Jose, Charles; Chandrasekharan, Sanjay – Physical Review Physics Education Research, 2022
Recent educational policies advocate a radical revision of science curricula and pedagogy, to support interdisciplinary practices, a distinguishing feature of contemporary science. Computational modeling (CM) is a core methodology of interdisciplinary science, as such models allow intertwining of data and theoretical perspectives from multiple…
Descriptors: Teaching Methods, Undergraduate Students, Science Instruction, Science Curriculum
Geller, Benjamin D.; Turpen, Chandra; Crouch, Catherine H. – Physical Review Physics Education Research, 2018
We explore the sources of student engagement with curricular content in an Introductory Physics for Life Science (IPLS) course at Swarthmore College. Do IPLS students find some life-science contexts more interesting than others, and, if so, what are the sources of these differences? We draw on three sources of student data to answer this question:…
Descriptors: College Students, College Science, Learner Engagement, Introductory Courses
Woolmer, Cherie; Sneddon, Peter; Curry, Gordon; Hill, Bob; Fehertavi, Szonja; Longbone, Charlotte; Wallace, Katherine – International Journal for Academic Development, 2016
This paper reflects upon the development of a multidisciplinary lesson plan aimed at developing science skills for Physics and Astronomy, Geographical and Earth Sciences, and Chemistry students at a research intensive Scottish university. The lesson plan was co-developed with a small group of staff and undergraduate students from these…
Descriptors: Foreign Countries, Undergraduate Students, Research Universities, Teacher Student Relationship
Meshoulam, David – ProQuest LLC, 2014
In the United States after World War II, science had come to occupy a central place in the minds of policy makers, scientists, and the public. Negotiating different views between these groups proved a difficult task and spilled into debates over the role and scope of science education. To examine this process, this dissertation traces the history…
Descriptors: Humanities, Physics, Science Instruction, Science Curriculum
Gentile, Lisa; Caudill, Lester; Fetea, Mirela; Hill, April; Hoke, Kathy; Lawson, Barry; Lipan, Ovidiu; Kerckhove, Michael; Parish, Carol; Stenger, Krista; Szajda, Doug – Journal of College Science Teaching, 2012
To help undergraduates make connections among disciplines so they are able to approach, evaluate, and contribute to the solutions of important global problems, our campus has been focused on interdisciplinary research and education opportunities across the science, technology, engineering, and mathematics (STEM) disciplines. This paper describes…
Descriptors: Physics, Majors (Students), Interdisciplinary Approach, Computer Science
Smithenry, Dennis William – International Journal of Science Education, 2010
The case study presented in this paper examines the work of one high school chemistry teacher who has integrated guided inquiry into a yearlong, traditional curricular framework in ways that take into account the constraints and realities of her classroom. The study's findings suggest (1) the extent and frequency to which teachers can…
Descriptors: Chemistry, Science Teachers, Case Studies, Inquiry
Purvis-Roberts, Kathleen L.; Edwalds-Gilbert, Gretchen; Landsberg, Adam S.; Copp, Newton; Ulsh, Lisa; Drew, David E. – Journal of Chemical Education, 2009
A new interdisciplinary, introductory science course was offered for the first time during the 2007-2008 school year. The purpose of the course is to introduce students to the idea of working at the intersections of biology, chemistry, and physics and to recognize interconnections between the disciplines. Interdisciplinary laboratories are a key…
Descriptors: College Science, Physics, Chemistry, Laboratories
Visser, Talitha C.; Coenders, Fer G. M.; Terlouw, Cees; Pieters, Jules M. – Journal of Science Teacher Education, 2010
Teachers involved in the implementation of a curriculum innovation can be prepared for this task through a professional development program. In this paper, we describe essential characteristics (identified empirically and theoretically) for such a professional development program that promotes the acquisition of competences by these teachers. The…
Descriptors: Educational Innovation, Curriculum Implementation, Physical Geography, Science Teachers
Clay, Tansy W.; Fox, Jennifer B.; Grunbaum, Daniel; Jumars, Peter A. – American Biology Teacher, 2008
The authors have developed and field-tested high school-level curricular materials that guide students to use biology, mathematics, and physics to understand plankton and how these tiny organisms move in a world where their intuition does not apply. The authors chose plankton as the focus of their materials primarily because the challenges faced…
Descriptors: Interdisciplinary Approach, Physics, Oceanography, Marine Biology
Galili, Igal; Zinn, Barbara – Science & Education, 2007
This paper presents and discusses examples of works of art which, if included in science curricula, could prompt an understanding by students of some concepts in optics through a discussion of the context in which they were created. Such discussion would elucidate the meaning of the artworks and, at the same time, challenge students'…
Descriptors: Science Education, Physics, Art Expression, Art
Barreto, Jose C.; Dubetz, Terry A.; Schmidt, Diane L.; Isern, Sharon; Beatty, Thomas; Brown, David W.; Gillman, Edward; Alberte, Randall S.; Egiebor, Nosa O. – Journal of College Science Teaching, 2007
Core concepts can be integrated throughout lower-division science and engineering courses by using a series of related, cross-referenced laboratory experiments. Starting with butane combustion in chemistry, the authors expanded the underlying core concepts of energy transfer into laboratories designed for biology, physics, and engineering. This…
Descriptors: Laboratory Experiments, Laboratory Procedures, Scientific Concepts, Science Curriculum
Marshall, Jeff; Horton, Bob; Austin-Wade, Joyce – Science Teacher, 2007
When learning, students yearn for meaning, challenge, and relevance. Integrated learning fulfills these desires by limiting the compartmentalization of learning--providing a more coherent learning environment. Too often, mathematics and the physical sciences are taught as separate entities. Yet, many commonalities exist, especially between…
Descriptors: Physics, Science Curriculum, Calculus, Integrated Curriculum
Truelove, Elizabeth; Dejoie, Joyce – 1997
This booklet contains information and activities on the life cycle of stars. Materials can be adapted for kindergarten through grade 8 classrooms. Background information on massive stars and medium stars and activities with subjects such as star life, constellation shapes, nebula terminology, astronomical distances, and pulsars is included. The 12…
Descriptors: Astronomy, Elementary Education, General Science, Interdisciplinary Approach