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Showing 1 to 15 of 16 results Save | Export
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Pierratos, Theodoros; Koumara, Anna – Primary Science, 2020
In this article, a series of activities on explicit teaching of specific aspects of the 'nature of science' are presented. The authors explore teaching the nature of science through inquiry-based activities on electric circuits. The activities concern classification of objects as conductors or insulators and took place in three classes of 4th…
Descriptors: Grade 4, Elementary School Students, Science Instruction, Learning Activities
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Katchmark, Laura; McCabe, Elisabeth; Matthews, Kristen; Koomen, Michele – Science and Children, 2020
What better way to engage fifth-grade students in science and engineering practices than to use paper airplanes to encourage them to question, explore, create, and test designs! This multi-day unit draws from a fourth-grade curriculum (Pearson 2012) aligned with the "Next Generation Science Standards" (NGSS Lead States 2013) used in…
Descriptors: Science Instruction, Grade 5, Elementary School Science, Engineering Education
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Lee, Okhee – Science and Children, 2020
A "Framework for K-12 Science Education and the Next Generation Science Standards" ("NGSS") are intended for all students, hence "all standards, all students" (NGSS Lead States 2013). To make this vision a reality, the "NGSS" highlight three key instructional shifts: (1) explain phenomena or design solutions…
Descriptors: Science Instruction, Grade 5, Elementary School Science, Urban Schools
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McGowan, Veronica Cassone; Ventura, Marcia; Bell, Philip – Science and Children, 2017
This column presents ideas and techniques to enhance your science teaching. This month's issue shares information on how students' everyday experiences can support science learning through engineering design. In this article, the authors outline a reverse-engineering model of instruction and describe one example of how it looked in our fifth-grade…
Descriptors: Science Education, Engineering Education, Engineering, Design
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Menon, Deepika; Lankford, Deanna – Science and Children, 2016
From the earliest days of their lives, children are exposed to all kinds of sound, from soft, comforting voices to the frightening rumble of thunder. Consequently, children develop their own naïve explanations largely based upon their experiences with phenomena encountered every day. When new information does not support existing conceptions,…
Descriptors: Science Instruction, Elementary School Science, Grade 4, Acoustics
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Kruse, Jerrid; Wilcox, Jesse – Science and Children, 2017
This column presents ideas and techniques to enhance your science teaching. In this issue the authors discuss a design project they have used with upper elementary students (grades 4-6). They note ways to engage students in thinking philosophically about technology to meet engineering design outcomes in the "Next Generation Science…
Descriptors: Science Instruction, Technological Literacy, Elementary School Science, Student Projects
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Keeley, Page – Science and Children, 2014
Language is the way students and teachers communicate in the science classroom, but language of science is not always the language children and adults use in their everyday life. As Michaels, Shouse, and Schweingruber put it, "In science, words are often given specific meanings that may be different from or more precise than their everyday…
Descriptors: Formative Evaluation, Theories, Scientific Principles, Language Usage
National Assessment Governing Board, 2019
The National Assessment of Educational Progress (NAEP) measures student science achievement nationally, state by state, and, most recently, across selected urban school districts. Periodically, the framework underlying the science assessment is revised or updated. This document, "Science Framework for the 2019 National Assessment of…
Descriptors: National Competency Tests, Science Achievement, Science Tests, Test Content
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Chen, Ying-Chih; Steenhoek, Joshua – American Biology Teacher, 2014
Argumentation is now seen as a core practice for helping students engage with the construction and critique of scientific ideas and for making students scientifically literate. This article demonstrates a negotiation model to show how argumentation can be a vehicle to drive students to learn science's big ideas. The model has six phases:…
Descriptors: Persuasive Discourse, Science Instruction, Grade 5, Scientific Principles
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Gilbert, Amy V.; Johns, Katherine E. – Science and Children, 2014
In supporting students toward literacy, teachers must provide experiences that support the formation of informed understandings of the nature of science (NOS), as well as a structure for developing evidence-based explanations. In this article the authors describe how they guided their students through this learning cycle to answer the essential…
Descriptors: Grade 4, Elementary School Science, Elementary School Students, Science Instruction
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Wallace, Carolyn S.; Coffey, Debra – Science and Children, 2016
The "Next Generation Science Standards'" ("NGSS") eight scientific and engineering practices invite teachers to develop key investigative skills while addressing important disciplinary science ideas (NGSS Lead States 2013). The "NGSS" can also provide direct links to "Common Core English Language Arts…
Descriptors: Engineering Education, Science Instruction, Scientific Literacy, Reading Comprehension
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Suomela, Liisa; Juuti, Kalle; Ahtee, Maija – Primary Science, 2013
Demonstrating is a traditional method in teaching science that can raise interest and encourage pupils to think about a topic. While demonstrating, the teacher can focus the pupils' attention on the relevant facts and introduce scientific principles and concepts. Through discussion and actively making observations and inferences, rather than…
Descriptors: Science Instruction, Demonstrations (Educational), Teaching Methods, Student Interests
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McLaughlin, Cheryl A.; McLaughlin, Felecia C.; Pringle, Rose M. – Science and Children, 2013
This article presents the experiences of Miss Felecia McLaughlin, a fourth-grade teacher from the island of Jamaica who used the model proposed by Bass et al. (2009) to assess conceptual understanding of four of the six types of simple machines while encouraging collaboration through the creation of learning teams. Students had an opportunity to…
Descriptors: Grade 4, Scientific Concepts, Scientific Principles, Mechanics (Process)
National Assessment Governing Board, 2015
This is an abridged version of the "Science Framework for the 2015 National Assessment of Educational Progress." The National Assessment of Educational Progress (NAEP) and its reports are a key measure in informing the nation on how well the goal of scientific literacy for all students is being met. The framework reflects the nature and…
Descriptors: National Competency Tests, Scientific Literacy, Elementary Secondary Education, Student Evaluation
National Assessment Governing Board, 2014
The National Assessment of Educational Progress (NAEP) and its reports are a key measure in informing the nation on how well the goal of scientific literacy for all students is being met. The "Science Framework for the 2015 National Assessment of Educational Progress" sets forth the design of the NAEP Science Assessment. This document is…
Descriptors: National Competency Tests, Scientific Literacy, Elementary Secondary Education, Student Evaluation
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