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Hyunshik Ju; Seoung-Hey Paik – Cultural Studies of Science Education, 2024
In this study, teaching materials related to the history of science (HOS) related to the Boyle-Hobbes debate were developed through the analytical lens of framing theory. Further, this study developed the teaching materials for learning the social-institutional aspects of the reconceptualized family resemblance approach (FRA) to the nature of…
Descriptors: Instructional Materials, Scientific Principles, Science History, Curriculum Development
Andy Markwick; Michael J. Reiss – FORUM: for promoting 3-19 comprehensive education, 2024
Today's school students are faced with complex and harmful global challenges that they will need to address. The ability to think critically and creatively, to work in interdisciplinary teams and to understand the importance of a healthy planet for all life will be key to success. Education, including school education, has a major role in helping…
Descriptors: Global Approach, Curriculum Development, Teaching Methods, Educational Change
Sindelar, Meghan E.; Witkowski, Robert J. – Natural Sciences Education, 2021
An introductory plant science lab offered by the Department of Agronomy & Horticulture at the University of Nebraska-Lincoln was adapted for online delivery. This paper describes the adjustments made for online delivery and examines students' perceptions of learning and engagement from surveys administered in both the in-person and online…
Descriptors: College Science, Plants (Botany), Agricultural Education, Agronomy
Deveau, Amy M.; Wang, Yiben; Small, Deena J. – Journal of Chemical Education, 2020
Faculty in the Department of Chemistry and Physics at the University of New England (UNE) have recently transformed introductory and advanced chemistry curricula by embedding the high impact practice of undergraduate research. Course Based Undergraduate Research Experiences (CUREs) have provided experiential learning opportunities for over 272…
Descriptors: College Science, Undergraduate Students, Student Research, Organic Chemistry
Saçkes, Mesut; Trundle, Kathy Cabe; Shaheen, Maria – Early Childhood Education Journal, 2020
The purpose of this study was to examine the effect of the Primrose® Balanced Learning® Curriculum on young children's science performances. The sample of this study included 158 children attending two private preschools. The study utilized a single group pre-post-test design. The children were tested before and immediately after the…
Descriptors: Preschool Curriculum, Science Curriculum, Curriculum Evaluation, Preschool Children
Rijal, Akmal; Sauri, Sofyan; Kosasih, Aceng – Journal of College and Character, 2023
The design framework of the value education model integrates natural sciences (NS), social sciences (SS), Islamic religious education (IRE), and extracurricular activities. This model is an effort to lay the foundations of the correct educational philosophy in a curriculum that contains the values, morals, and ethics that students should possess…
Descriptors: Values Education, Curriculum Development, Islam, Learning Processes
Corinna Mo¨nch; Silvija Markic – Journal of Chemical Education, 2023
Language, and thus scientific language, is essential for chemistry teaching and learning. To be able to successfully teach the scientific language of chemistry, the Chemish, (prospective) chemistry teachers need to possess pedagogical scientific language knowledge (PSLK).Thus, teacher preparation needs to focus explicitly on Chemish and its…
Descriptors: Curriculum Development, Curriculum Implementation, Curriculum Evaluation, Preservice Teachers
Amanda Peel; Sugat Dabholkar; Gabriella Anton; Mike Horn; Uri Wilensky – Computer Science Education, 2024
Background and Context: To better reflect the computational nature of STEM disciplines and deepen learning of science content computational thinking (CT) should be integrated in science curricula. Teachers have a critical role in supporting effective student learning with CT integrated curricula in classroom settings. Objective: Our team worked…
Descriptors: Biology, Computer Science Education, Science Instruction, Thinking Skills
Cassiani, Suzani – Cultural Studies of Science Education, 2021
The article "Hegemonic and counter-hegemonic discourses in science education …", by Flavia Rezende and Fernanda Ostermann (2019), presents an interesting critical analysis of the antagonisms between the meaning of "teaching science" and of "science education." The authors took a critical look at the construction of…
Descriptors: Cultural Influences, Science Education, Science Curriculum, Curriculum Development
Wrensford, Louise – International Research and Review, 2022
This project focused on integrating an international component into the one-semester biochemistry course, a required course for biology, chemistry, and forensic science majors at the institution. A driving question was how to integrate the international component into the course while showing direct relevance to the course and students' lives.…
Descriptors: Global Approach, Public Health, Biochemistry, Science Curriculum
Andy Markwick; Michael J. Reiss – Curriculum Journal, 2025
Today's school students are inheriting complex and harmful global challenges that are potentially irreversible and which they will need to address. The ability to think critically and creatively, to work in interdisciplinary teams and to understand the importance of a healthy planet for all life will be needed for success. Education has a major…
Descriptors: Educational Change, Curriculum Development, Global Approach, Teaching Methods
Matthew Jon Balcom – ProQuest LLC, 2023
The American school system is funded, operated, and evaluated based on student academic achievement data that is generated by various assessment tools and grading practices. The most traditional grading practice, norm-referenced grading, assesses student academic achievement on a 100-point scale that is further broken into categorical levels (A-F)…
Descriptors: Grading, Chemistry, Science Instruction, Standards
Justin Gambrell; Eric Brewe – Physical Review Physics Education Research, 2024
Computational thinking in physics has many different forms, definitions, and implementations depending on the level of physics or the institution it is presented in. To better integrate computational thinking in introductory physics, we need to understand what physicists find important about computational thinking in introductory physics. We…
Descriptors: Physics, Introductory Courses, Science Instruction, Thinking Skills
Esch, R. Keith; Burbacher, Emily; Dodrill, Eric; Fussell, Kristen DeVanna; Magdich, Mitchell; Norris, Heather; Midden, W. Robert – Horizon Research, Inc., 2020
Citizen science (CS) projects have become widespread in part because they expand the capacity of professional scientists, enabling research that would otherwise be impracticable or unaffordable. In addition to the research benefits, educators and scientists have seen educational value in CS because it can incorporate students into real-world…
Descriptors: Citizen Participation, Scientific Research, Science Education, Science Projects
Gandolfi, Haira Emanuela – Curriculum Journal, 2021
Recent 'decolonising the curriculum' movements have called for Higher Education to rethink how it engages with diversity and colonialism in its lectures and syllabi. But what can these ideas mean for science subjects in secondary schools? Grounded on a decolonial perspective around the Science and Technology Studies (STS) field, this paper…
Descriptors: Educational Change, Science Instruction, Teaching Methods, National Curriculum