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Rebecca R. Lesnefsky; Troy D. Sadler; David Fortus – Research in Science Education, 2025
In response to the growing emphasis on addressing global socio-scientific issues like climate change and viral pandemics in K-12 education, we designed three socio-scientific units for middle school science. We call this curriculum Grand Challenges (GC). The GC curriculum shifts from traditional methods to a focus on socio-scientific issues that…
Descriptors: Case Studies, Curriculum Implementation, Educational Innovation, Secondary School Science
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Mohammed Daoudi – African Journal of Research in Mathematics, Science and Technology Education, 2025
This article critically examines deficiencies in the final year high school programme, particularly in the Physics-Chemistry and Mathematics A and B specialties, focusing on the inadequate transition from classical to quantum mechanics. Based on teachers' perceptions, the study analyses the value of integrating artificial intelligence (AI) and…
Descriptors: Foreign Countries, Transitional Programs, Quantum Mechanics, Artificial Intelligence
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Mary M. Pelkowski; Xiaojun Qi-Lytle; Gabi N. Waite – Advances in Physiology Education, 2025
The evolving designs of medical school curricula, coupled with the inherently difficult nature of physiology, can create unique challenges and opportunities for physiology educators as they strive to help students acquire the knowledge and understanding needed to become excellent physicians. Core concept teaching and its potential benefits have…
Descriptors: Medical Schools, Curriculum Design, Physiology, Undergraduate Students
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Paula Tuzón; Antoni Salvà Salvà; Juan Fernández-Gracia – Physical Review Physics Education Research, 2025
This paper presents a methodological approach based on the use of complex networks to analyze the structure and content of curricula. We analyze the concept network built from the final year of a particular high school physics curriculum, as well as that of mathematics. We examine the most central nodes in each case, the community structures…
Descriptors: Network Analysis, Curriculum Evaluation, High School Students, Physics
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Gerrits, Elianne M.; Bredenoord, Annelien L.; van Mil, Marc H. W. – Science & Education, 2022
New developments in the field of biomedicine can have extensive implications for society. To steer research efforts in a responsible direction, biomedical scientists should contribute to a forward-looking ethical, and societal evaluation of new developments. However, the question remains how to equip students sufficiently with the skills they need…
Descriptors: Biomedicine, Medical Research, Ethics, Science Curriculum
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Upegui, David; Coiro, Julie; Battle, Stefan; Kraus, Rudolf; Fastovsky, David – Science & Education, 2022
Systemic oppression includes inequitable education that historically does not fully prepare students for comprehensive participation in society. The tools of science education, however, uniquely enable students to explore social inequities as well as the natural world. Thus, a role of education can be to embed social justice in science curricula.…
Descriptors: Social Justice, Biology, Science Instruction, Science Curriculum
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Onurkan-Aliusta, Gulen; Ozder, Hasan – Issues in Educational Research, 2022
Most studies on fidelity focus on adherence (how much it is done), ignoring quality of delivery (how well it is done) as a measure of implementation, and are mainly quantitative in nature. In-depth qualitative studies assessing how much and how well curricula are implemented are scarce. Drawing on data from a qualitative study, this article…
Descriptors: Curriculum Implementation, Fidelity, Turkish, Foreign Countries
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Criswell, Brett; Roemmele, Christopher; Holzer, Missy – Science Teacher, 2022
The central pedagogical principle on which the "Next Generation Science Standards" (NGSS) are built is that of three-dimensional learning. This principle posits that it is through meaningful integration of the disciplinary core ideas (DCIs), science and engineering practices (SEPs), and crosscutting concepts (CCCs) that students will…
Descriptors: Scientific Concepts, Science Curriculum, Secondary School Science, Science Instruction
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Gee, Harold W., III; Gorton, Elizabeth S.; Cho, Sua; Fynewever, Herb – Journal of Chemical Education, 2022
We have developed and implemented a change to our General Chemistry curriculum that makes the point that "not all chemists are white men." This builds on recent textbook analyses, which showed that General Chemistry textbooks overwhelmingly and unnecessarily focus on the biographies of scientists that are white men. We demonstrate a way…
Descriptors: Chemistry, Science Curriculum, Curriculum Development, Diversity
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Areljung, Sofie; Skoog, Marianne; Sundberg, Bodil – Research in Science Education, 2022
This classroom-based study aims to contribute knowledge about children's opportunities to make use of drawing to make meaning in science. Employing a social semiotic approach to drawing, we examine what ways of representing science content that are: (1) made available by the teacher; and (2) adopted in children's drawings. We analysed observation…
Descriptors: Early Childhood Education, Freehand Drawing, Science Activities, Science Curriculum
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Badmus, Olalekan Taofeek; Jita, Loyiso C. – Science Education International, 2022
The decision to integrate Nature of Science into classroom practice is no longer a debate among science educators and curriculum experts. There exists empirical evidence to substantiate its effectiveness, judging by both the academic performance and ability of students to conceptualize abstract yet teachable areas in science. Curriculum and…
Descriptors: Science Instruction, Physical Sciences, Scientific Principles, Science Curriculum
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Fensham, Peter J. – Research in Science Education, 2022
Science in schooling has for the first time been recently considered as a verified whole for the 10 or 12 of its compulsory years, rather than for a limited sector of schooling or for a particular group of students. This has also been occurring as part of a wider review and plan for the whole curriculum of schooling. A framework has been provided…
Descriptors: Science Instruction, Science Curriculum, National Curriculum, Comparative Education
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Burgess, Terrance – Cultural Studies of Science Education, 2022
In her critical analysis of a popular children's television show which centers the experiences of a Black girl veterinarian, Sheron Mark finds that although the positioning of these identities illustrates progress vis-à-vis representation, diversity through representation further upholds whiteness. Consequently, to meaningfully engage tenets of…
Descriptors: Racism, Diversity, STEM Education, Equal Education
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Mertz, Pamela S.; Sherrer, Shanen M.; Bowers, Geoffrey M. – Biochemistry and Molecular Biology Education, 2023
The Department of Chemistry and Biochemistry at St. Mary's College of Maryland has scaffolded collaboration skills throughout the Biochemistry curriculum and developed several assessment tools to evaluate these skills. Biochemistry I and II have used team contracts at the beginning of extensive team projects where students identify their…
Descriptors: Teaching Methods, Student Evaluation, Undergraduate Students, Cooperative Learning
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Bapty, Hannah – Science & Education, 2023
It is 157 years since Mendel presented his results on hybridisation in peas to the Brünn Society for Natural Science. The discipline of genetics has dramatically changed since then, with technological advancements revealing multifactorial causation and trait variability. Whilst none of this complexity featured in the discovery of classical…
Descriptors: Introductory Courses, Science Education, Genetics, Science Instruction
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