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Patron, Emelie; Linder, Cedric; Wikman, Susanne – Science Education, 2021
Since visual representations play a particularly important role in the teaching and learning of chemistry, the exploration described in this article focuses on them. This is an explorative study of the qualitatively different ways that visual representations can be unpacked by Swedish upper secondary school chemistry teachers dealing with…
Descriptors: Science Instruction, Secondary School Science, Visual Aids, Molecular Structure
Bivall, Petter; Ainsworth, Shaaron; Tibell, Lena A. E. – Science Education, 2011
This study explored whether adding a haptic interface (that provides users with somatosensory information about virtual objects by force and tactile feedback) to a three-dimensional (3D) chemical model enhanced students' understanding of complex molecular interactions. Two modes of the model were compared in a between-groups pre- and posttest…
Descriptors: Molecular Structure, Science Instruction, Tactual Perception, Educational Technology
Chang, Hsin-Yi; Quintana, Chris; Krajcik, Joseph S. – Science Education, 2010
In this study, we investigated whether the understanding of the particulate nature of matter by students was improved by allowing them to design and evaluate molecular animations of chemical phenomena. We developed Chemation, a learner-centered animation tool, to allow seventh-grade students to construct flipbook-like simple animations to show…
Descriptors: Animation, Peer Evaluation, Factor Analysis, Effect Size
Talanquer, Vicente – Science Education, 2008
We investigated general chemistry students' intuitive ideas about the expected properties of the products of a chemical reaction. In particular, we analyzed college chemistry students' predictions about the color, smell, and taste of the products of chemical reactions represented at the molecular level. The study was designed to explore the extent…
Descriptors: Chemistry, College Science, Science Education, Student Reaction
Han, Jae Young; Roth, Wolff-Michael – Science Education, 2006
Thinking about macroscopic phenomena in terms of models based on the idea of microscopic particles (i.e., the particulate theory of matter) is one of the important goals for student learning in chemistry around the world. However, previous research suggests that students do not easily understand phenomena from a particle perspective, although such…
Descriptors: Textbooks, Semiotics, Chemistry, Foreign Countries

Harrison, Allan G.; Treagust, David F. – Science Education, 1996
Examines the reasoning behind views of atoms and molecules held by students (n=48) and investigates how mental models may assist or hamper further instruction in chemistry. Reports that students prefer models of atoms and molecules that depict them as discrete, concrete structures. Recommends that teachers develop student modeling skills and…
Descriptors: Atomic Theory, Chemistry, Constructivism (Learning), Misconceptions

Tsaparlis, Georgios; Kousathana, Margarita; Niaz, Mansoor – Science Education, 1998
Examines the effect of the manipulation of logical structure as well as the specific mental demand of general chemistry problems on student performance. Studies the relationship between student performance on these problems and a number of cognitive variables. Contains 96 references. (DDR)
Descriptors: Chemical Equilibrium, Chemical Reactions, Chemistry, Cognitive Processes
Coll, Richard K.; Treagust, David F. – Science Education, 2003
Mental models of metallic bonding held by learners from three academic levels, secondary school (year 12), undergraduate, and postgraduate, were probed using semistructured interviews including the use of Interviews-About-Events focus cards depicting metallic properties and cards containing depictions of models from curriculum material. The…
Descriptors: Instructional Materials, Chemistry, Models, Molecular Structure
Barak, Miri; Dori, Yehudit Judy – Science Education, 2005
Project-based learning (PBL), which is increasingly supported by information technologies (IT), contributes to fostering student-directed scientific inquiry of problems in a real-world setting. This study investigated the integration of PBL in an IT environment into three undergraduate chemistry courses, each including both experimental and…
Descriptors: Undergraduate Students, Control Groups, Experimental Groups, Information Technology