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Jason M. May – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Physics instructional labs have long been an area of pedagogical innovation and educational research. While current stakeholders in instructional labs are undoubtedly aware of the day's concerns, reform efforts, and empirical research…
Descriptors: Physics, Science Instruction, Science Laboratories, Educational History
Robert Hayes – ProQuest LLC, 2023
As college biology educators we want students learning how to conduct their own scientific investigations. This means designing laboratory curricula in which students exercise control and responsibility over the knowledge building actions of an investigation--that is, in which they exercise "epistemic agency." Our current understanding…
Descriptors: College Freshmen, College Science, Science Education, Biology
Ayyildiz, Yildizay; Tarhan, Leman; Gil, Aylin – Research in Science & Technological Education, 2023
Background: Research on chemistry education has found that students have commonly some difficulties in understanding chemical changes. These difficulties in the learning process have negatively affected students' success. For this reason, it is very important to overcome students' learning difficulties with new materials that prevent the…
Descriptors: Chemistry, Science Achievement, Science Curriculum, Course Descriptions
Peer reviewedJoan N. Kaderavek; Peter Paprzycki; Charlene M. Czerniak; Susanna Hapgood; Christopher M. Wojciechowski; Scott Molitor; Jeanna Heuring; Grant Wilson – Grantee Submission, 2025
This study examined the effects of science and engineering (S & E) inquiry on preschool and kindergarten children's academic outcomes using a randomized control-group design. Participants were divided into three groups: a classroom-only group (C-only) receiving NGSS-aligned S & E inquiry; a classroom plus family engagement group (C + F)…
Descriptors: Preschool Children, Kindergarten, Science Activities, Science Curriculum
Miranda S. Fitzgerald – Pedagogies: An International Journal, 2025
School pedagogies that expand opportunities for learners to build and use knowledge for meaningful purposes are resources for hope. Internationally, standards-based reforms in science education position schooling as a context for building and using disciplinary knowledge to explain phenomena and solve problems. There is also growing research…
Descriptors: Elementary School Science, Science Instruction, Content Area Reading, Expectation
Cathy Buntting; Azra Moeed; Dayle Anderson – International Journal of Science Education, Part B: Communication and Public Engagement, 2025
This paper presents empirical evidence from research carried out in New Zealand by a research-practice partnership (RPP) that included school teachers, teacher professional learning providers, and researchers in science education, technology education, and information systems. The RPP worked together from 2018-2023 to investigate the affordances…
Descriptors: Affordances, Online Courses, Citizen Participation, Science Projects
Rezende, Flavia; Ostermann, Fernanda – Cultural Studies of Science Education, 2020
This paper explores various theories of curriculum intending to provide a new approach--which we regard as a significant theoretical contribution--to examine the broad set of different discourses that have been shaping science education. We first introduce concepts and values that support traditional and critical curriculum theories and offer some…
Descriptors: Science Education, Science Curriculum, Educational Theories, Discourse Analysis
Cheung, Kason Ka Ching – Science & Education, 2020
Nature of science (NOS) has become one of the major emphases in curriculum and assessment. This study explores "what" NOS is included and how this is achieved in the Hong Kong biology curriculum and 7-year high-stakes assessments. While conceptualizations of the official definition of NOS differ, this study employs the family resemblance…
Descriptors: Scientific Principles, Curriculum Development, Biology, High Stakes Tests
Lapierre, Keith R.; Flynn, Alison B. – Journal of Research in Science Teaching, 2020
In this study, we investigated how students organized their knowledge about organic chemistry reactions in a transformed curriculum, including their choices, abilities, and changes over time. This transformed curriculum focuses on interpreting the underlying mechanistic patterns of chemical reactions and emphasizes the principles of reactivity in…
Descriptors: Organic Chemistry, College Students, Science Process Skills, Task Analysis
Cunningham, Christine M.; Lachapelle, Cathy P.; Brennan, Robert T.; Kelly, Gregory J.; Tunis, Chris San Antonio; Gentry, Christine A. – Journal of Research in Science Teaching, 2020
The Framework for K-12 Science Education and the Next Generation Science Standards propose that students learn core ideas and practices related to engineering as well as science. To do so, students will need high-quality curricular materials designed to meet these goals. We report an efficacy study of an elementary engineering curriculum,…
Descriptors: Engineering, Curriculum Design, Elementary School Students, Elementary School Science
Rasa, Tapio; Palmgren, Elina; Laherto, Antti – Instructional Science: An International Journal of the Learning Sciences, 2022
To promote students' value-based agency, responsible science and sustainability, science education must address how students think about their personal and collective futures. However, research has shown that young people find it difficult to fully relate to the future and its possibilities, and few studies have focused on the potential of science…
Descriptors: Science Education, Futures (of Society), Student Experience, Quantum Mechanics
Clemmons, Alexa W.; Donovan, Deborah A.; Theobald, Elli J.; Crowe, Alison J. – CBE - Life Sciences Education, 2022
One critical step in the challenging process of curricular reform is determining how closely a curriculum aligns with national recommendations. Here, we examine the alignment of teaching, assessment, and student experience in undergraduate biology courses with the "Vision and Change" core competency recommendations. We applied the…
Descriptors: Biology, Science Instruction, Educational Change, Curriculum Development
Doucette, Danny; Daane, Abigail R.; Flynn, Angela; Gosling, Chris; Hsi, Dana; Mathis, Clausell; Morrison, Andrew; Park, Shinae; Rifkin, Moses; Tabora, Johan – Journal of Chemical Education, 2022
There is a wide variety of ways for instructors to seek to improve diversity, equity, inclusion, and respect (DEIR) in chemistry through their instruction. One way is to talk with students explicitly about equity and injustice in science. We propose a curricular framework for teaching about equity as a way to improve DEIR in science classes at the…
Descriptors: Science Instruction, Chemistry, Equal Education, Diversity
Skamp, Keith; Green, Jodie – Teaching Science, 2022
This paper, the third in a series on Earth System Science Education, describes various pedagogical ways forward when science teachers are addressing the curriculum implications of the recent interdisciplinary field of Earth System Science (ESS). Parts I and II introduced the key ideas of ESS and the implications for the Australian Curriculum:…
Descriptors: Earth Science, Science Curriculum, Evidence Based Practice, Sustainability
Feldman-Maggor, Yael; Tuvi-Arad, Inbal; Blonder, Ron – International Journal of Science Education, 2022
Professional development courses help teachers integrate new content knowledge into the high-school curriculum. Designing practical online courses for this purpose is challenging, particularly in emerging fields such as nanotechnology. In this study, we evaluated such a course in three complementary dimensions: (1) knowledge, (2) the complexity of…
Descriptors: Curriculum Development, Course Evaluation, Online Courses, Technology

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