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Mageswary Karpudewan; Noor Haslina Daman Huri – Journal of Chemical Education, 2023
Transforming the chemistry curriculum to an interdisciplinary perspective is essential for preparing students to meet interdisciplinary career demands and to brace themselves for the challenges of complex environmental and health issues. The study introduces four interdisciplinary electrochemistry STEM-lab activities as an alternative to the…
Descriptors: Interdisciplinary Approach, Science Instruction, Teaching Methods, Chemistry
Aydan Aytekin; Mustafa Sami Topcu – Journal of Science Education and Technology, 2024
In the digital age in which we live, one of the primary goals of education is to nurture individuals who are capable of thinking creatively, solving problems, and being innovative and productive. Computational thinking is an analytical process that requires defining problems and at the same time solving these problems by proceeding in creative…
Descriptors: Creative Thinking, Problem Solving, Skill Development, Thinking Skills
Mustu, Özlem Eryilmaz; Sen, Ahmet Ilhan – Science Education International, 2019
In this study, the impacts of teaching modern physics topics according to textbooks that are prepared based on two different physics curricula implemented in Turkey on students' success, problem-solving skills, and attitudes were examined. The sample of the study consisted of 80 high school students studying in the 12th grade. Within the scope of…
Descriptors: Physics, Science Instruction, Secondary School Science, High Schools
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
Laius, A.; Post, A.; Rannikmäe, M. – Science Education International, 2015
This study solicits views about the goals of science education from a range of stakeholders within the science education community and society. It also compares students' needs, expressed through stakeholder expectations, with the current learning situation of gymnasium graduates. The study uses a Delphi method to solicit views with 111…
Descriptors: Foreign Countries, Science Teachers, Science Education, Delphi Technique
Wolff, Eugenie; Mnguni, Lindelani – African Journal of Research in Mathematics, Science and Technology Education, 2015
The potential of science to transform lives has been highlighted by a number of scholars. This means that critical socio-scientific issues (SSIs) must be integrated into science curricula. Development of context-specific scientific knowledge and twenty-first-century learning skills in science education could be used to address SSIs such as…
Descriptors: Biological Sciences, Acquired Immunodeficiency Syndrome (AIDS), Social Problems, Science Curriculum
Gregerson, Jessica – Science Scope, 2011
In this inquiry-based project, student-generated questions became the basis for student-directed individual and group projects that provided practice with problem solving, critical thinking, and research skills while digging deeper into the Earth science curriculum. The author used her students' high-level questions to provide relevance,…
Descriptors: Learner Engagement, Student Motivation, Earth Science, Research Skills
Boyd-Kimball, Debra – Journal of Chemical Education, 2012
Adaptive tools and techniques for lecture instruction were developed for a blind student in a nonmajors college chemistry course. These adaptive instructional aids assisted the student in writing and balancing chemical reactions, calculating unit conversions and concentrations, drawing Lewis dot structures, understanding structural representations…
Descriptors: Chemistry, Nonmajors, Science Instruction, Blindness
Householder, Daniel L., Ed. – National Center for Engineering and Technology Education, 2011
Since its initial funding by the National Science Foundation in 2004, the National Center for Engineering and Technology Education (NCETE) has worked to understand the infusion of engineering design experiences into the high school setting. Over the years, an increasing number of educators and professional groups have participated in the expanding…
Descriptors: Engineering, Instructional Design, Technology Education, Science Curriculum
Koliopoulos, Dimitris; Dossis, Sotiris; Stamoulis, Efthymios – Science Education Review, 2007
This study proposes an empirical classification of ways to introduce elements of the history of science into science teaching, as well as describing a special way to do so characterized by the introduction of short extracts from historical texts. The aim is to motivate students to participate in problem-solving activities and to transform their…
Descriptors: Foreign Countries, Science History, Science Education, Vignettes

Zoller, 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

Collins, Angelo; Stewart, James H. – American Biology Teacher, 1989
Examines the content knowledge of genetics as it is organized for solving effect-to-cause problems. Reviews proposed reasons explaining why students find genetics difficult to learn. Explains dominant and codominant inheritance patterns, multiple alleles, and X-linkage. (RT)
Descriptors: Biological Sciences, Biology, Genetics, Heredity

Maskill, R.; Wallis, K. G. – School Science Review, 1982
Raises questions about the widely accepted rationale of teaching scientific methodology in order to help students become better problem solvers in nonscience settings. Argues that it is better to teach problem solving skills within familiar contexts not complicated by difficult subject matter. (DC)
Descriptors: Chemistry, Problem Solving, Science Curriculum, Science Education

Woodward, John – Remedial and Special Education (RASE), 1994
This article reviews common curricular alternatives for addressing the science education needs of secondary students with learning disabilities. A curriculum revision method emphasizing models and context-rich problem solving is proposed as an alternative to the traditional uses of direct instruction, mnemonics, graphic organizers, and study…
Descriptors: Curriculum Development, Learning Disabilities, Models, Problem Solving