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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
Brophy, Sean P.; Magana, Alejandra J.; Strachan, Alejandro – Advances in Engineering Education, 2013
We studied the use of online molecular dynamics simulations (MD) to enhance student abilities to understand the atomic processes governing plastic deformation in materials. The target population included a second-year undergraduate engineering course in the School of Materials Engineering at Purdue University. The objectives of the study were to…
Descriptors: Lecture Method, Undergraduate Study, Inquiry, Laboratories
Betancourt-Perez, Rosa; Olivera, Luis Javier; Rodriguez, Julio E. – Journal of Chemical Education, 2010
This study examines how well second-year nonmajor organic chemistry students are learning to draw, interpret, and understand resonance-related structures. Students were tested seven times throughout an academic year using a set of four tasks that reflected their understanding of what these structures represent and how they relate to each other.…
Descriptors: Organic Chemistry, Knowledge Level, Science Instruction, Nonmajors
Anggoro, Florencia K.; Stein, Nancy L.; Jee, Benjamin D. – International Electronic Journal of Elementary Education, 2012
The present study examined the cognitive factors that influence children's physical science learning from a multimedia instruction. Using a causally coherent text and visual models, we taught 4th- and 7th-grade children about the observable and molecular properties of the three states of water. We manipulated whether the text was read by a tutor…
Descriptors: Science Instruction, Cognitive Ability, Physical Sciences, Grade 4
Shacham, Mordechai; Cutlip, Michael B.; Brauner, Neima – Chemical Engineering Education, 2009
A continuing challenge to the undergraduate chemical engineering curriculum is the time-effective incorporation and use of computer-based tools throughout the educational program. Computing skills in academia and industry require some proficiency in programming and effective use of software packages for solving 1) single-model, single-algorithm…
Descriptors: Computer Software, Computer Literacy, Problem Solving, Chemical Engineering

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