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Showing 1 to 15 of 31 results Save | Export
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Sánchez Tapia, Ingrid; Krajcik, Joseph; Reiser, Brian – Journal of Research in Science Teaching, 2018
We propose a process of contextualization based on seven empirically derived contextualization principles, aiming to provide opportunities for Indigenous Mexican adolescents to learn science in a way that supports them in fulfilling their right to an education aligned with their own culture and values. The contextualization principles we…
Descriptors: Indigenous Populations, Adolescents, Science Instruction, Culturally Relevant Education
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Fang, Su-Chi; Hart, Christina; Clarke, David – Journal of Research in Science Teaching, 2016
The amount of substance and its unit the mole is a basic concept in chemistry. However, previous research has shown that teaching and learning the concept are challenging tasks for both teachers and students. The purpose of this study was to pinpoint the problems which emerge in the teaching and learning process, and provide integrated suggestions…
Descriptors: Secondary School Science, Concept Formation, Chemistry, Measurement
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Zangori, Laura; Peel, Amanda; Kinslow, Andrew; Friedrichsen, Patricia; Sadler, Troy D. – Journal of Research in Science Teaching, 2017
Carbon cycling is a key natural system that requires robust science literacy to understand how and why climate change is occurring. Studies show that students tend to compartmentalize carbon movement within plants and animals and are challenged to make sense of how carbon cycles on a global scale. Studies also show that students hold faulty models…
Descriptors: Climate, Change, Scientific Literacy, Environmental Influences
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Dauer, Joseph T.; Long, Tammy M. – Journal of Research in Science Teaching, 2015
One of the goals of college-level introductory biology is to establish a foundation of knowledge and skills that can be built upon throughout a biology curriculum. In a reformed introductory biology course, we used iterative model construction as a pedagogical tool to promote students' understanding about conceptual connections, particularly those…
Descriptors: College Science, Biology, Science Curriculum, Introductory Courses
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Becker, Nicole M.; Cooper, Melanie M. – Journal of Research in Science Teaching, 2014
Understanding the energy changes that occur as atoms and molecules interact forms the foundation for understanding the macroscopic energy changes that accompany chemical processes. In order to identify ways to scaffold students' understanding of the connections between atomic-molecular and macroscopic energy perspectives, we conducted a…
Descriptors: Science Instruction, College Science, Energy, Molecular Structure
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Maeyer, Jenine; Talanquer, Vicente – Journal of Research in Science Teaching, 2013
Diverse implicit cognitive elements seem to support but also constrain reasoning in different domains. Many of these cognitive constraints can be thought of as either implicit assumptions about the nature of things or reasoning heuristics for decision-making. In this study we applied this framework to investigate college students' understanding of…
Descriptors: Science Instruction, Scientific Concepts, College Science, College Students
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Cooper, Melanie M.; Corley, Leah M.; Underwood, Sonia M. – Journal of Research in Science Teaching, 2013
The connection between the molecular-level structure of a substance and its macroscopic properties is a fundamental concept in chemistry. Students in college-level general and organic chemistry courses were interviewed to investigate how they used structure-property relationships to predict properties such as melting and boiling points. Although…
Descriptors: Science Instruction, College Science, Molecular Structure, Scientific Concepts
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Ding, Lin; Chabay, Ruth; Sherwood, Bruce – Journal of Research in Science Teaching, 2013
We investigated students' conceptual learning of energy topics in an innovative college-level introductory mechanics course, entitled Matter & Interactions (M&I) Modern Mechanics. This course differs from traditional curricula in that it emphasizes application of a small number of fundamental principles across various scales, involving…
Descriptors: Energy, Scientific Concepts, Introductory Courses, Mechanics (Physics)
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Zangori, Laura; Forbes, Cory T.; Biggers, Mandy – Journal of Research in Science Teaching, 2013
While research has shown that elementary (K-5) students are capable of engaging in the scientific practice of explanation construction, commonly-used elementary science curriculum materials may not always afford them opportunities to do so. As a result, elementary teachers must often adapt their science curriculum materials to better support…
Descriptors: Science Instruction, Elementary School Science, Science Curriculum, Curriculum Development
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Sherin, Bruce L.; Krakowski, Moshe; Lee, Victor R. – Journal of Research in Science Teaching, 2012
This article is concerned with "commonsense science knowledge", the informally gained knowledge of the natural world that students possess prior to formal instruction in a scientific discipline. Although commonsense science has been the focus of substantial study for more than two decades, there are still profound disagreements about its nature…
Descriptors: Cognitive Structures, Scientific Concepts, Concept Formation, Misconceptions
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Johnson, Philip; Papageorgiou, George – Journal of Research in Science Teaching, 2010
In response to extensive research exposing students' poor understanding of the particle theory of matter, this article argues that the conceptual framework within which the theory is introduced could be a limiting factor. The standard school particle model is characterized as operating within a "solids, liquids, and gases" framework.…
Descriptors: Feedback (Response), Concept Formation, Foreign Countries, Science Instruction
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Plummer, Julia D. – Journal of Research in Science Teaching, 2009
The National Science Education Standards [National Research Council (1996) National science education standards. Washington, DC: National Academy Press] recommend that students understand the apparent patterns of motion of the sun, moon and stars by the end of early elementary school. However, little information exists on students' ability to…
Descriptors: Scientific Principles, Motion, Visual Environment, Grade 2
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Papadouris, Nico; Constantinou, Constantinos P.; Kyratsi, Theodora – Journal of Research in Science Teaching, 2008
The aim of this study is to explore the ways in which students, aged 11-14 years, account for certain changes in physical systems and the extent to which they draw on an energy model as a common framework for explaining changes observed in diverse systems. Data were combined from two sources: interviews with 20 individuals and an open-ended…
Descriptors: Middle School Students, Elementary School Students, Student Attitudes, Energy
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Liu, Xiufeng; Lesniak, Kathleen – Journal of Research in Science Teaching, 2006
Adopting a neo-Piagetian conceptual framework and a phenomenographic approach, we identified students' conceptual progression pattern on matter from elementary to high school. We interviewed 54 students from Grade 1 to Grade 10 chemistry on their conceptions of substances (i.e., water, vinegar, and baking soda) and the combining of the substances.…
Descriptors: Chemistry, Scientific Concepts, Comprehension, Concept Formation
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Paik, Seoung-Hey; Cho, Boo-Kyung; Go, Young-Mi – Journal of Research in Science Teaching, 2007
The aim of the present study is to shed light on the conceptions that young students have of heat and temperature, concepts that are both important in school science curricula and closely related to daily life. The subjects of the study were students from a rural district in South Korea and they ranged in age from 4 to 11 years. Interviews were…
Descriptors: Foreign Countries, Structural Elements (Construction), Climate, Concept Formation
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