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Derman, Aysegül; Kayacan, Kadriye – Online Submission, 2017
A non-experimental descriptive and correlational design was used to examine the "notion of the nature of scientific model, atom achievement and correlation between the two" held by a total sample of 76 prospective science teachers. "Students' Understanding of Models in Science" scale was utilized to evaluate the views of the…
Descriptors: Science Teachers, Preservice Teachers, Scientific Principles, Models
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Fuhrmann, Tamar; Schneider, Bertrand; Blikstein, Paulo – International Journal of Science Education, 2018
The Bifocal Modelling Framework (BMF) is an approach for science learning which links students' physical experimentation with computer modelling in real time, focusing on the comparison of the two media. In this paper, we explore how a Bifocal Modelling implementation supported learning outcomes related to both content and metamodeling knowledge,…
Descriptors: High School Students, Science Instruction, Models, Outcomes of Education
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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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Zarkadis, Nikolaos; Papageorgiou, George; Stamovlasis, Dimitrios – Chemistry Education Research and Practice, 2017
Science education research has revealed a number of student mental models for atomic structure, among which, the one based on Bohr's model seems to be the most dominant. The aim of the current study is to investigate the coherence of these models when students apply them for the explanation of a variety of situations. For this purpose, a set of…
Descriptors: Cognitive Structures, Schemata (Cognition), Models, Nuclear Physics
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Piksööt, Jaanika; Sarapuu, Tago – Journal of Educational Computing Research, 2014
This study investigates ways to enhance secondary school students' knowledge transfer in complex science domains by implementing question prompts. Two samples of students applied two web-based models to study molecular genetics--the model of genetic code (n = 258) and translation (n = 245). For each model, the samples were randomly divided into…
Descriptors: Transfer of Training, Prompting, Questioning Techniques, Genetics
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McNaught, Ian J. – Journal of Chemical Education, 2011
VSEPR is a topic that is commonly taught in undergraduate chemistry courses. The readily available Web-based program WebMO, in conjunction with the computational chemistry programs MOPAC and GAMESS, is used to quantitatively test a wide range of predictions of VSEPR. These predictions refer to the point group of the molecule, including the…
Descriptors: College Students, Introductory Courses, Chemistry, Physics
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Stull, Andrew T.; Hegarty, Mary; Dixon, Bonnie; Stieff, Mike – Cognition and Instruction, 2012
In representation-rich domains such as organic chemistry, students must be facile and accurate when translating between different 2D representations, such as diagrams. We hypothesized that translating between organic chemistry diagrams would be more accurate when concrete models were used because difficult mental processes could be augmented by…
Descriptors: Spatial Ability, Control Groups, Organic Chemistry, Direct Instruction
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Hjalmarson, Margret A.; Moore, Tamara J.; delMas, Robert – Statistics Education Research Journal, 2011
Results of analysis of responses to a first-year undergraduate engineering activity are presented. Teams of students were asked to develop a procedure for quantifying the roughness of a surface at the nanoscale, which is typical of problems in Materials Engineering where qualities of a material need to be quantified. Thirty-five teams were…
Descriptors: College Freshmen, Engineering, Laboratories, Learning Activities
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Jasien, Paul G. – Journal of Chemical Education, 2008
A semi-quantitative model has been developed to estimate the relative effects of dispersion, dipole-dipole interactions, and H-bonding on the normal boiling points ("T[subscript b]") for a subset of simple organic systems. The model is based upon a statistical analysis using multiple linear regression on a series of straight-chain organic…
Descriptors: Organic Chemistry, Multiple Regression Analysis, Statistical Analysis, Misconceptions
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Mazur, Zygmunt; Grech, Dariusz – European Journal of Physics, 2008
A simple model of the random Brownian walk of a spherical mesoscopic particle in viscous liquids is proposed. The model can be solved analytically and simulated numerically. The analytic solution gives the known Einstein-Smoluchowski diffusion law r[superscript 2] = 2Dt, where the diffusion constant D is expressed by the mass and geometry of a…
Descriptors: Science Instruction, Science Laboratories, Physics, College Science
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Haines, Jonathan; Camarata, Stephen – Mental Retardation and Developmental Disabilities Research Reviews, 2004
The purpose of this review is to provide a model for studying genetic association of response to intervention in child language disorders. In addition to a theoretical overview and review of different approaches to studying candidate genes, a specific methodology for completing this type of analysis is presented. The goal of the analysis is to…
Descriptors: Language Impairments, Child Language, Genetics, Outcomes of Treatment