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Showing 1 to 15 of 27 results Save | Export
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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
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Muhammad Zulfadhli Kamarudin; Mohd Syafiq Aiman Mat Noor; Romarzila Omar – Science Activities: Projects and Curriculum Ideas in STEM Classrooms, 2024
The use of digital technologies as teaching and learning materials supports and enhances science learning, encouraging students to develop valuable inquiry skills and knowledge. In response, this paper seeks to explore digital inquiry-based learning as a useful aid for teaching the elementary school science curriculum on plants in Malaysia. There…
Descriptors: Foreign Countries, Plants (Botany), Science Education, Electronic Learning
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Rifkin, Moses – Science Teacher, 2020
Underrepresentation is endemic across disciplines and across time (National Science Foundation 2019), and extensive research clearly shows that this reflects bias and a lack of access, not a lack of ability in students from those underrepresented groups (National Research Council 2012). Systemic injustice is present in the teaching (Moss-Racusin…
Descriptors: Science Education, Science and Society, Social Justice, 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
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Knippels, Marie-Christine P. J.; van Harskamp, Michiel – School Science Review, 2018
We present a sequence of professional development sessions to support science teachers in designing socio-scientific inquiry-based learning (SSIBL) lessons to foster democratic citizenship. We focus on seven stages for enacting SSIBL: (1) introducing a dilemma; (2) initial opinion-forming; (3) creating a 'need to know'; (4) inquiry; (5) dialogue;…
Descriptors: Faculty Development, Science Teachers, Science and Society, Inquiry
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Wines, Chris; Pfeiffer, Linda; Scott, Amanda; Woolcott, Geoff – Teaching Science, 2018
This article illustrates an enhancement and lesson-delivery process used to engage classroom students in primary school science lessons. In the enhancement process, university educators and pre-service teachers collaborated with local experts to prepare lessons based in local or regional contexts. Lessons were designed to enable students to think…
Descriptors: Learner Engagement, Active Learning, Inquiry, Elementary School Science
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McGee, Christy – Gifted Child Today, 2018
Tomlinson's explanation of Artful Teaching and her 2017 expansion of this concept The Five Key Elements of Differentiation provide the theoretical framework of this examination of the need for science investigations in elementary schools. The Artful Teaching framework uses an equilateral triangle with vertices labeled The Teacher, The Student, and…
Descriptors: Teaching Methods, Science Instruction, Science Experiments, Elementary School Students
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Concannon, James; Brown, Patrick L. – Science Activities: Classroom Projects and Curriculum Ideas, 2017
The "Next Generation Science Standards" (NGSS) challenges science teachers to think beyond specific content standards when considering how to design and implement curriculum. This lesson, "Windmills by Design," is an insightful lesson in how science teachers can create and implement a cross-cutting lesson to teach the concepts…
Descriptors: Secondary School Science, Science Curriculum, Curriculum Design, High School Students
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Vardell, Sylvia M.; Wong, Janet S. – Science and Children, 2014
Like science, poetry often involves a high level of abstraction in language and ideas, requiring specific critical-thinking skills and promoting interaction. Casteel and Isom (1994) acknowledge, "The literacy processes are the means by which science content is learned because content information is rooted in written and oral language"…
Descriptors: Science Curriculum, Curriculum Enrichment, Poetry, Interdisciplinary Approach
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Mabbott, Gary A. – Journal of Chemical Education, 2014
Modern microcontroller boards offer the analytical chemist a powerful and inexpensive means of interfacing computers and laboratory equipment. The availability of a host of educational materials, compatible sensors, and electromechanical devices make learning to implement microcontrollers fun and empowering. This article describes the advantages…
Descriptors: Science Instruction, Chemistry, College Science, Computer Assisted Instruction
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Veal, William; Sneed, Kevin – Science Teacher, 2014
The Next Generation Science Standards ("NGSS") were developed by teachers, scientists, and leaders in science and science education from around the country and are endorsed by the National Science Teachers Association (NSTA), a partner in the development of the "NGSS." This article presents an example of how to modify a lab to…
Descriptors: Academic Standards, Science Laboratories, Alignment (Education), Thermodynamics
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Jandciu, Eric; Stewart, Jaclyn J.; Stoodley, Robin; Birol, Gülnur; Han, Andrea; Fox, Joanne A. – Journal on Excellence in College Teaching, 2015
The authors describe a model for embedding science communication into the science curriculum without displacing science content. They describe the rationale, development, design, and implementation of two courses taught by science faculty addressing these criteria. They also outline the evaluation plan for these courses, which emphasize broad…
Descriptors: Science Curriculum, Undergraduate Students, Integrated Curriculum, Communication Skills
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Nabors, Martha L.; Edwards, Linda Carol – Kappa Delta Pi Record, 2011
In today's inclusive classrooms, teachers are challenged to incorporate a variety of instructional activities designed to support learning for all--including children who are English Language Learners (ELLs). In science lessons at the early childhood level, ELLs not only must learn science concepts, but also the vocabulary essential for mastering…
Descriptors: Second Language Learning, Science Instruction, English (Second Language), Scientific Concepts
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Gonen, Selahattin; Kocakaya, Serhat – Turkish Online Journal of Distance Education, 2010
Students enter the classrooms with a preexisting knowledge of science concepts. These science concepts sometimes show inconsistency with the accepted ones by the scientists and called as misconceptions. Studies applied science field have to get possession of abilities that not only detect these misconceptions also help to solve these problems.…
Descriptors: Physics, Science Education, Science Curriculum, Misconceptions
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Treacy, Páraic; O'Donoghue, John – International Journal of Mathematical Education in Science and Technology, 2014
Attempts at integrating mathematics and science have been made previously but no definitive, widely adopted teaching model has been developed to date. Research suggests that hands-on, practical, student-centred tasks should form a central element when designing an effective model for the integration of mathematics and science. Aided by this…
Descriptors: Classroom Techniques, Models, Integrated Curriculum, Mathematics Curriculum
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