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Mjege Kinyota – Science Education International, 2023
This study used a three-phase design to explore how teachers' views and practices of scientific inquiry can be reconciled with early graders' ability to engage in scientific inquiry. First, 19 early years teachers were interviewed to explore their views and practices of scientific inquiry. Second, six standard two students were exposed to a…
Descriptors: Teacher Attitudes, Science Instruction, Barriers, Scientific Research
Shalsa Billa Ardhana Neswary; Binar Kurnia Prahani – Anatolian Journal of Education, 2023
The merdeka curriculum is a curriculum whose learning structure is divided into two main activities, namely learning that refers to student learning outcomes in each subject and projects to strengthen the Pancasila student profile. A digital pocketbook is an electronic book that contains information in the form of text or images that can be…
Descriptors: Science Curriculum, Physics, Electronic Learning, Electronic Publishing
Baiq Fatmawati; M. Marzuki; Fenny Roshayanti; Purwati Kuswarini Suprapto – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2024
"Kurikulum Merdeka" is a learning experience framework that offers flexibility and focuses on essential content, character development, and students' competencies. Teachers had the discretion to develop their modules to choose, design, and organize the learning contents for students, based on their needs. By using that module, there is…
Descriptors: Teaching Methods, Problem Solving, Problem Based Learning, Biology
Gilchrist, Pamela O.; Alexander, Alonzo B.; Green, Adrian J.; Sanders, Frieda E.; Hooker, Ashley Q.; Reif, David M. – Education Sciences, 2021
Computational thinking is an essential skill in the modern global workforce. The current public health crisis has highlighted the need for students and educators to have a deeper understanding of epidemiology. While existing STEM curricula has addressed these topics in the past, current events present an opportunity for new curricula that can be…
Descriptors: Science Education, Science Curriculum, STEM Education, Informal Education
Penuel, William R. – Journal of the Learning Sciences, 2019
This essay presents infrastructuring as a useful construct for guiding efforts to support more equitable implementation and sustainability of resources developed to support student learning in design-based research. "Infrastructuring" refers to activities that aim to redesign components, relations, and routines of schools and districts…
Descriptors: Design, Teamwork, Partnerships in Education, College School Cooperation
Li, Linlin; Tripathy, Rachel; Salguero, Katie; McCarthy, Betsy – WestEd, 2018
The Learning by Making (LbyM) project is funded by the U.S. Department of Education's Investing in Innovation Fund (i3). As a five-year development project (2014-2018), Sonoma State University (SSU), in partnership with high-need schools and districts, has been developing an innovative, integrated high school Science, Technology, Engineering, and…
Descriptors: STEM Education, Rural Schools, Curriculum Development, High School Students
Freire, Sofia; Faria, Claudia; Galvao, Cecilia; Reis, Pedro – Research in Science Education, 2013
Living in an unpredictable and ever changing society demands from its' citizens the development of complex competencies that challenges school, education and curriculum. PARSEL, a pan-European Project related to science education, emerges as a contribution to curricular development as it proposes a set of teaching-learning materials (modules) in…
Descriptors: Science Education, Science Curriculum, Evaluation, Curriculum Development
Fortuin, Karen P. J.; van Koppen, C. S. A.; Leemans, Rik – BioScience, 2011
Conceptual models are useful for facing the challenges of environmental sciences curriculum and course developers and students. These challenges are inherent to the interdisciplinary and problem-oriented character of environmental sciences curricula. In this article, we review the merits of conceptual models in facing these challenges. These…
Descriptors: Environmental Education, Science Education, Interdisciplinary Approach, Models
Gerard, Libby F.; Bowyer, Jane B.; Linn, Marcia C. – Journal of School Leadership, 2010
Active principal leadership can help sustain and scale science curriculum reform. This study illustrates how principal leadership developed in a professional learning community to support a technology-enhanced science curriculum reform funded by the National Science Foundation. Seven middle school and high school principals in one urban-fringe…
Descriptors: Principals, Instructional Leadership, Science Curriculum, Educational Change
Hilton, Margaret – National Academies Press, 2010
An emerging body of research suggests that a set of broad "21st century skills"--such as adaptability, complex communication skills, and the ability to solve non-routine problems--are valuable across a wide range of jobs in the national economy. However, the role of K-12 education in helping students learn these skills is a subject of current…
Descriptors: Evidence, Science Education, Science Instruction, Communication Skills
Peer reviewedZoller, Uri – European Journal of Science Education, 1982
Argues for a decision-making-oriented science and technology curriculum for secondary school students which should: (1) expose students to open-ended problems within their natural setting; (2) provide students with real decision-making situations; and (3) involve students in scientific/technological social actions (in community institutions or…
Descriptors: Curriculum Development, Decision Making, Problem Solving, Science Curriculum
Peer reviewedGrinbaum, Baruch; Semiat, Raphael – Journal of Chemical Education, 1998
Cites the shortcomings of the traditional educational experiences of chemists. Focuses on their training in engineering and concludes that training is lacking in the areas of mass balances in flow processes, heat balances, reactors, separation processes, and scaleup. (DDR)
Descriptors: Chemical Engineering, Chemistry, College Curriculum, Curriculum Development
Balzano, Betzy Ann – 1991
Science and mathematics curricula have undergone major changes in the United States during the past 30 years. Many of the science courses developed and implemented in the 1960s were expensive, difficult, and too theoretical for students. Mathematics curricula suffered similar problems. Indonesia's 1994 curriculum-reform effort can learn from these…
Descriptors: Curriculum Development, Curriculum Research, Educational Development, Elementary Secondary Education
Peer reviewedEdmondson, Katherine M. – Journal of Research in Science Teaching, 1995
Presents concept mapping as an effective tool for developing an integrated curriculum. Includes examples of concept maps that represent an entire veterinary curriculum, specific courses, and case-based exercises. (21 references) (Author/JRH)
Descriptors: Concept Mapping, Curriculum Development, Higher Education, Interdisciplinary Approach
Red, W. E. – Engineering Education, 1981
Describes a course module designed to instruct beginning engineering students at the University of New Mexico in problem-solving methodology as suggested by Polya (understand, plan, carry out, look back). (SK)
Descriptors: Abstract Reasoning, College Science, Course Descriptions, Curriculum Development

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