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Showing 1 to 15 of 79 results Save | Export
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Stieff, Mike; Origenes, Andrea; DeSutter, Dane; Lira, Matthew; Banevicius, Lukas; Tabang, Dylan; Cabel, Gervacio – Journal of Educational Psychology, 2018
Spatial ability predicts success in STEM (Science, Technology, Education, and Mathematics) fields, particularly chemistry. This paper reports two studies investigating the unique contribution of mental rotation ability to spatial thinking in a STEM discipline. Using authentic disciplinary tasks from chemistry, we show that the difficulty of a…
Descriptors: Cognitive Processes, STEM Education, Spatial Ability, Chemistry
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Eriksson, Urban – Physical Review Physics Education Research, 2019
This theoretical paper introduces a new way to view and characterize learning astronomy. It describes a framework, based on results from empirical data, analyzed through standard qualitative research methodology, in which a theoretical model for a vital competency of learning astronomy is proposed: "reading the sky," a broad description…
Descriptors: Astronomy, Intellectual Disciplines, Competency Based Education, Learning Strategies
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Esselman, Brian J.; Hill, Nicholas J. – Journal of Chemical Education, 2015
The electronic and molecular structure of the acylium cation ([CH[subscript 3]CO][superscript +], 1) receives varied treatment in undergraduate textbooks and online resources. The overall structure of 1 is typically represented as an equal combination of resonance structures containing C-O triple and double bonds, the latter structure occasionally…
Descriptors: Investigations, Undergraduate Students, Molecular Structure, Knowledge Representation
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Sunyono; Yuanita, L.; Ibrahim, M. – Science Education International, 2015
The aim of this research is identify the effectiveness of a multiple representation-based learning model, which builds a mental model within the concept of atomic structure. The research sample of 108 students in 3 classes is obtained randomly from among students of Mathematics and Science Education Studies using a stratified random sampling…
Descriptors: Science Education, Instructional Effectiveness, Models, Molecular Structure
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Chang Rundgren, Shu-Nu; Yao, Bao-Jun – Asia-Pacific Forum on Science Learning and Teaching, 2014
Based on the importance and widely use of visualization in science, this article has a three-fold aim related to the terms of visualization, representation and model that in recent years have been introduced to the field of science education without clear differentiation. Firstly, the three terms are discussed with examples to provide a common…
Descriptors: Visualization, Science Teachers, Professional Development, Science Education
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Bryce, T. G.; Blown, E. J. – Science & Education, 2016
This article notes the convergence of recent thinking in neuroscience and grounded cognition regarding the way we understand mental representation and recollection: ideas are dynamic and multi-modal, actively created at the point of recall. Also, neurophysiologically, re-entrant signalling among cortical circuits allows non-conscious processing to…
Descriptors: Neurosciences, Concept Formation, Knowledge Representation, Cognitive Processes
Oosterhof, Albert – Online Submission, 2012
Declarative knowledge involves being able to state and explain characteristics, terminologies, properties, phenomena, concepts, principles, and techniques. Chi and Ohlsson (2005) characterize it as the dominant form of knowledge, maintaining that it does not involve isolated units but rather is organized as semantic networks, theories, schemas, or…
Descriptors: Science Education, Grade 7, Cognitive Ability, Schemata (Cognition)
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Yun, Hongyan; Xu, Jianliang; Xiong, Jing; Wei, Moji – International Journal of Distance Education Technologies, 2011
Ontologies are one of the most popular and widespread means of knowledge representation and reuse. A few research groups have proposed a series of methodologies for developing their own standard ontologies. However, because this ontological construction concerns special fields, there is no standard method to build domain ontology. In this paper,…
Descriptors: Electronic Learning, Knowledge Representation, Marine Biology, Engineering
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Oviatt, Sharon L.; Cohen, Adrienne O. – Journal of Science Education and Technology, 2010
From a theoretical viewpoint, educational interfaces that facilitate communicative actions involving representations central to a domain can maximize students' effort associated with constructing new schemas. In addition, interfaces that minimize working memory demands due to the interface per se, for example by mimicking existing non-digital work…
Descriptors: Problem Solving, Short Term Memory, Science Education, Computer Interfaces
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Kohl, Patrick B.; Finkelstein, Noah D. – Physical Review Special Topics - Physics Education Research, 2008
It is generally believed that students should use multiple representations in solving certain physics problems, and earlier work in PER has begun to outline how experts and novices differ in their use of multiple representations. In this study, we build on this foundation by interviewing expert and novice physicists as they solve two types of…
Descriptors: Physics, Problem Solving, Knowledge Representation, Expertise
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Lopez-Manjon, Asuncion; Angon, Yolanda Postigo – Journal of Biological Education, 2009
There is no agreement about the robustness of intuitive representations of the circulatory system and their susceptibility to change by instruction. In this paper, we analyse to what extent students with varying degrees of biology instruction and different ages (High School Health Science and Social Science students and first and final year…
Descriptors: Physiology, Anatomy, Human Body, Psychology
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Clark, Douglas B.; Sampson, Victor – Journal of Research in Science Teaching, 2008
The national science standards, along with prominent researchers, call for increased focus on scientific argumentation in the classroom. Over the past decade, researchers have developed sophisticated online science learning environments to support these opportunities for scientific argumentation. Assessing the quality of dialogic argumentation,…
Descriptors: Persuasive Discourse, Interrater Reliability, Concept Formation, Discourse Modes
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Solaz-Portoles, Joan Josep; Lopez, Vicent Sanjose – Asia-Pacific Forum on Science Learning and Teaching, 2007
In this paper we focus on some of the findings of the science education research community in the area of representations and problem solving. Problem solving depends on the construction and manipulation of mental models (internal representations) in the mind. A large knowledge base (declarative, procedural, strategic, situational, and schematic…
Descriptors: Learning Strategies, Problem Solving, Metacognition, Short Term Memory
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Chi, Michelene T. H. – Journal of the Learning Sciences, 2005
This article offers a plausible domain-general explanation for why some concepts of processes are resistant to instructional remediation although other, apparently similar concepts are more easily understood. The explanation assumes that processes may differ in ontological ways: that some processes (such as the apparent flow in diffusion of dye in…
Descriptors: Misconceptions, Scientific Principles, Scientific Concepts, Science Education
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Clough, Michael P.; Clough, Sara J. – Science Teacher, 2002
Discusses some features of instructional approaches that promote meaningful learning. Focuses on creating an environment in which students can be mentally attentive. (DDR)
Descriptors: Attention, Educational Innovation, Knowledge Representation, Learning Strategies
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