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David B. Kushner; Mya Breitbart; Kari M. Debbink; Maureen C. Ferran; Dylan M. Johnson; Laura L. Newcomb; Lauren A. O'Donnell – Journal of Microbiology & Biology Education, 2024
It has become increasingly important for microbiology educators to help students learn critical concepts of the discipline. This is particularly true in virology, where current challenges include increasing rates of vaccine hesitancy, misinformation about the COVID-19 pandemic, and controversy surrounding research on pathogens with pandemic…
Descriptors: Undergraduate Students, College Science, Science Education, Educational Objectives
Bailey Nafziger – Cultural Studies of Science Education, 2025
This forum piece extends the conversation within Katie Milton Brkich, Alejandro J. Gallard Martínez, Wesley Pitts, and Silvia Lizette Ramos de Roble's article 'The Rejection of the NGSS in Georgia: Social Covenants as Contextually Mitigating Factors,' by looking at potential implications for diverse learners and novice teachers. I draw on the…
Descriptors: Science Education, Academic Standards, State Standards, Science Curriculum
Koirala, Kamal Prasad – Diaspora, Indigenous, and Minority Education, 2023
This paper focuses on the context underpinning the implementation of ethno science at the K-12 school science curriculum in the context of Nepal. Since human evolution, Indigenous people have both gained scientific knowledge and practiced scientific skills. This paper refers to this knowledge as Ethno Science/ Indigenous Wisdom. However, hegemonic…
Descriptors: Science Education, Indigenous Knowledge, Science Curriculum, Curriculum Development
Rosemary Hipkins – set: Research Information for Teachers, 2024
There is often a steady trajectory of curriculum change under the surface of developments that might seem arbitrary or inconsistent. This article traces the change from key competencies to science capabilities and, most recently, to enduring competencies. All these changes (and names) respond to increasing awareness of the challenges involved in…
Descriptors: Minimum Competencies, Competency Based Education, Foreign Countries, Science Education
National Association of Scholars, 2024
The author proposes the Curriculum of Liberty, in the spirit of the National Association of Scholars' principles, which will educate American college students toward freedom, the pursuit of truth, and virtuous citizenship, with a double goal in mind. In the short term, Americans must learn the lessons of self-reliance, liberty, and virtue to make…
Descriptors: Educational Principles, College Curriculum, Curriculum Development, Academic Freedom
Robertson, William H. – Journal of College Science Teaching, 2022
In science education, the value of the constructivist methodology has long been integrated with experiential and hands-on learning while offering a framework for teaching and learning. In recent pre- and future postpandemic times, as various online modalities have been leveraged in the teaching of science, there should be a complementary approach…
Descriptors: Constructivism (Learning), Flipped Classroom, Science Education, Curriculum Development
Wolf, Steven Frederick; Sprague, Mark W. – Physics Teacher, 2022
A significant challenge physics faculty face teaching introductory labs is engaging students in authentic science practices. Another has been highlighted given the current global pandemic--how to engage students in our laboratory courses while maintaining appropriate social distancing and hygiene standards. We have chosen to answer these…
Descriptors: Introductory Courses, Physics, Educational Change, Science Education
Price, Gareth; Bevins, Stuart – School Science Review, 2021
This article offers an outline of 3D science that conceptualises science around three dimensions: domain knowledge, evidence-management procedures and psychological energy. We propose that this model could underpin a rigorous, effective and motivating approach to science education in schools. We show how self-determination theory offers useful…
Descriptors: Scientific Principles, Science Education, Models, Self Determination
Lopes, Alice Casimiro – Prospects, 2021
This article questions the centrality of knowledge and learning in the curriculum, as well as the restriction of education to learning even when education is thought of as consisting of ways to combat anti-science discourses in the name of combating COVID-19. Based on discourse theory and deconstruction, with a focus on the notions of radical…
Descriptors: Curriculum Development, Educational Theories, COVID-19, Pandemics
Carrell, John D.; Weiner, Robert G. – Honors in Practice, 2023
Engineering and pop-culturist instructors team-teach a first-year experience course exploring science through the lenses of history, literature, film, television, and sequential art. Authors present science fiction discourses as unique for synthesizing fields in the humanities and STEM, and they present curricular and co-curricular design…
Descriptors: Science Education, Science Fiction, Interdisciplinary Approach, First Year Seminars
Nancy Boury; Amy Siegesmund; David B. Kushner; Davida S. Smyth; Mary E. Allen; Adronisha Frazier; Illona Gillette-Ferguson; Miriam Markum; Glenn Patriquin; Sara E. Reynolds; Sarah Rosario; J. Jordan Steel; Rachel Horak – Journal of Microbiology & Biology Education, 2024
Curricular guidelines promote standardized approaches to coverage of essential knowledge and skills in undergraduate education. The American Society for Microbiology (ASM) Curriculum Guidelines for Undergraduate Microbiology were developed in 2012. Continuous, rapid growth of knowledge in science and a dynamic, changing world necessitate updates…
Descriptors: Microbiology, Communicable Diseases, Curriculum Development, Curriculum Guides
Jackson, Whitney; Simpson, Lauren A.; Whitworth, Brooke A. – Physics Teacher, 2022
Learning in the classroom is highly influenced by the experiences a teacher plans for students. Concerned that students were not achieving adequate conceptual knowledge during traditional undergraduate physics courses, the authors used the Making Sense of SCIENCE curriculum to tailor a course for 21 pre-service elementary teachers at the…
Descriptors: Thinking Skills, Discussion (Teaching Technique), Student Evaluation, Scientific Concepts
Pi-Sui Hsu; Reva Freedman; Darin Brockmann; Zachary Hueneke; Dean LaBarbera; Ben Kluga; Rui Zhang; Ian Sullivan; Margot Van Dyke – International Journal of Designs for Learning, 2022
The objective of this project was to address design gaps in previous programs that address scientific argumentation in middle schools. We adopted gamification mechanics (e.g., stimulus and response and progression) to design a computer-assisted program to better support students' development of scientific argumentation. In this paper, we describe…
Descriptors: Game Based Learning, Middle School Students, Persuasive Discourse, Science Education
Semken, Steven; García, Ángel A. – Cultural Studies of Science Education, 2021
The research-based, Thailand-based learning progression for haze pollution developed by Ladachart, Poothawee and Ladachart opens a new front in the long-running debate over the compatibility of place-based education (PBE) with educational standards. This debate encompasses disagreement over whether PBE and standards are philosophically compatible…
Descriptors: Foreign Countries, Place Based Education, Science Education, Pollution
Nanette J. Tomicek; Patrick Cafferty; Janet Casagrand; Elizabeth Co; Meg Flemming; Jenny McFarland; Valerie O'Loughlin; Derek Scott; Dee U. Silverthorn – Advances in Physiology Education, 2024
Learning outcomes are an essential element in curriculum development because they describe what students should be able to do by the end of a course or program and they provide a roadmap for designing assessments. This article describes the development of competency-based learning outcomes for a one-semester undergraduate introductory human…
Descriptors: Physiology, Scientific Concepts, Vocabulary, Inclusion