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Showing 1 to 15 of 93 results Save | Export
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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
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Brian J. Esselman; Nicholas J. Hill; Kimberly S. DeGlopper; Aubrey J. Ellison; Ryan L. Stowe; Cara E. Schwarz; Niall J. Ellias – Journal of Chemical Education, 2023
We have developed a curriculum for the organic chemistry laboratory in which students draw on authentic usage of spectroscopy, spectrometry, and computational chemistry to explain chemical phenomena. This curriculum, which has been continuously refined over a decade, has been explored by many thousands of students and is scalable to small and…
Descriptors: Organic Chemistry, Science Education, Science Laboratories, Authentic Learning
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Zsolt Molnár; Marianna Radács; Márta Gálfi – International Electronic Journal of Elementary Education, 2024
The study of complexity is an important part of science education. This paper presents a pedagogical option that includes potentially feasible field solutions for complex science teachers. This work aims to examine how fieldwork has appeared in the international literature over the past five years and to explore the algorithms that can be used to…
Descriptors: Elementary School Curriculum, Field Studies, Integrated Curriculum, Science Education
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Havu-Nuutinen, Sari; Kewalramani, Sarika; Veresov, Nikolai; Pöntinen, Susanna; Kontkanen, Sini – Research in Science Education, 2022
This research is a comparative study of Finnish and Australian science curricula in early childhood education (EC). The study aims to figure out the constructivist components of the science curriculum in two countries as well as locate the similarities and differences in the rationale and aims, contents, learning outcomes, learning activities,…
Descriptors: Early Childhood Education, Science Education, Comparative Education, Outcomes of Education
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Min Kyung Kim; Jongwon Park – Journal of Baltic Science Education, 2024
The declining interest in science learning, along with students' perception that science is irrelevant to their daily lives, has been identified as a significant issue. This research aimed to help students connect abstract scientific concepts with their personal and everyday experiences. To achieve this, the research utilized the metaphysical…
Descriptors: Scientific Concepts, Science and Society, Authentic Learning, Relevance (Education)
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Laura Super; Shuting Huo; Linda S. Siegel – International Journal for Research in Learning Disabilities, 2024
This research evaluated the implementation of a climate science curriculum intervention for students in Grades 4 and 5, including those who were typically achieving and those with difficulties in mathematics, reading, or both. Pre- and posttests of measurement and climate change science concepts were administered at the beginning and end of each…
Descriptors: Science Instruction, Academic Achievement, Students with Disabilities, Learning Disabilities
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A. M. Bowling; W. Klooster; A. J. Lindsey – Natural Sciences Education, 2024
Agricultural systems are complex and can be used as examples to teach science, technology, engineering, and math (STEM) concepts. However, inclusion of agriculture in core STEM courses is often limited. Three professional development sessions for K-12 teachers were offered in 2021-2022 (hybrid or remote sessions) and repeated in 2022-2023…
Descriptors: Faculty Development, Agriculture, STEM Education, Scientific Concepts
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Kustusch, Mary Bridget; Manogue, Corinne; Price, Edward – Physical Review Physics Education Research, 2020
[This paper is part of the Focused Collection on Curriculum Development: Theory into Design.] A level of curricular design, called "design tactics," is identified to fill a gap in the research literature between the broad principles that guide curriculum development and the detailed writing of specific activities and lessons. The use of…
Descriptors: Physics, Curriculum Development, Science Instruction, Curriculum Design
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Criswell, Brett; Roemmele, Christopher; Holzer, Missy – Science Teacher, 2022
The central pedagogical principle on which the "Next Generation Science Standards" (NGSS) are built is that of three-dimensional learning. This principle posits that it is through meaningful integration of the disciplinary core ideas (DCIs), science and engineering practices (SEPs), and crosscutting concepts (CCCs) that students will…
Descriptors: Scientific Concepts, Science Curriculum, Secondary School Science, Science Instruction
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Lindstrom, Nicklas – School Science Review, 2020
A teaching approach based on the Biggs and Collis SOLO taxonomy is described. Lessons were planned using the SOLO taxonomy to communicate how students could demonstrate increasing complexity of response to scientific questions. Consideration is given to extending the use of the SOLO taxonomy to create a relational curriculum, which may be useful…
Descriptors: Foreign Countries, Science Instruction, Teaching Methods, Taxonomy
Alison J. Trew; Craig Early; Rebecca Ellis; Julia Nash; Katharine Pemberton; Paul Tyler; Timothy G. Harrison; Dudley E. Shallcross – Journal of Chemical Education, 2024
Topics associated with the chemical sciences form a significant part of the curriculum in science at the primary school level in the U.K. In this methodology paper, we demonstrate how a wide range of research articles associated with the chemical sciences can be disseminated to an elementary school audience and how children can carry out…
Descriptors: Chemistry, Scientific Research, Elementary School Students, Elementary School Teachers
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Weston, Matt; Weston, Sam – School Science Review, 2021
This article explores some of the links that can be made to the science curriculum through learning outdoors with bushcraft and Forest School activities. It focuses particularly on students who are otherwise disengaged with learning, or who have relatively complex needs that mean they find traditional education more challenging.
Descriptors: Science Instruction, Science Curriculum, Outdoor Education, Natural Resources
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Thomas, Sue – Primary Science, 2020
Plastic waste and the bee population are two topics often discussed in relation to the environment. A practical activity in a primary school classroom linked to these areas can help to fulfil some of the requirements of the science curriculum. A study of the life of bees shows the importance of pollinators and highlights the concern many people…
Descriptors: Plastics, Wastes, Environmental Education, Learning Activities
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Dogan, Ozgur Kivilcan – International Journal of Science and Mathematics Education, 2021
Given the importance of cultivating scientific literate societies, the integration of scientific inquiry into school curriculum is key to contemporary science education. It is apparent that textbooks have been an accessible source of science information for teachers and students since the growth of public K-12 schooling worldwide. Textbooks are…
Descriptors: Foreign Countries, Textbook Content, Biology, Science Education
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Zenaida Aguirre-Muñoz; Magdalena Pando; Michelle Pantoya – Elementary School Journal, 2024
In this qualitative, descriptive case study, we examine how elementary emergent bilinguals (EBs) use disciplinary language as they engage in integrated science and engineering instruction. Instruction incorporated language and developmental scaffolds corresponding to EBs' language and content learning needs. Oral production of EB kindergarten to…
Descriptors: Elementary School Curriculum, Elementary School Science, Elementary School Students, Bilingual Students
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