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Pety, Stephen J.; Lu, Hang; Thio, Yonathan S. – Chemical Engineering Education, 2011
This paper describes a student laboratory experiment to determine the molecular weight of a polymer sample by measuring the viscosity of dilute polymer solutions in a PDMS microfluidic viscometer. Sample data are given for aqueous solutions of poly(ethylene oxide) (PEO). A demonstration of shear thinning behavior using the microviscometer is…
Descriptors: Plastics, Undergraduate Students, Chemistry, Laboratory Experiments
Smith, K. Christopher; Nakhleh, Mary B. – Chemistry Education Research and Practice, 2011
Undergraduate and graduate students' predictions and submicroscopic level explanations for the melting of four materials (salt, chalk, sugar, and butter), and for the mixing of these solutes in two solvents (water and cooking oil) were collected. Twenty-three undergraduate students and seven graduate students participated in the study, and data…
Descriptors: Undergraduate Students, Graduate Students, Interviews, Misconceptions
Teerasong, Saowapak; McClain, Robert L. – Journal of Chemical Education, 2011
We have developed an undergraduate laboratory activity to introduce students to microfluidics. In the activity, each student constructs their own microfluidic device using simple photolithographic techniques and then uses the device to separate a food dye mixture by electrophoresis. Dyes are used so that students are able to visually observe the…
Descriptors: Undergraduate Students, Chemistry, Laboratory Equipment, Construction (Process)
Matteucci, Giorgio; Ferrari, Loris; Migliori, Andrea – European Journal of Physics, 2010
An experiment analogous to the classical diffraction of light from a circular aperture has been realized with electrons. The results are used to introduce undergraduate students to the wave behaviour of electrons. The diffraction fringes produced by the circular aperture are compared to those predicted by quantum mechanics and are exploited to…
Descriptors: Undergraduate Students, Quantum Mechanics, Molecular Structure, Science Instruction
McCollum, Brett M.; Regier, Lisa; Leong, Jaque; Simpson, Sarah; Sterner, Shayne – Journal of Chemical Education, 2014
The impact of touch-screen technology on spatial cognitive skills as related to molecular geometries was assessed through 102 one-on-one interviews with undergraduate students. Participants were provided with either printed 2D ball-and-stick images of molecules or manipulable projections of 3D molecular structures on an iPad. Following a brief…
Descriptors: Molecular Structure, Visualization, Competence, Skill Development
Daggett, Melissa A. F. – Bioscene: Journal of College Biology Teaching, 2012
A number of current reports are challenging educators of undergraduate biology students to increase the role, interactions and approaches of other disciplines. The goal stated in these reports is to produce a college graduate with the skills and competencies to solve pressing global problems such as producing ample food, fuels, and making health…
Descriptors: College Graduates, Biology, Science Education, Science Instruction
Thadison, Felicia Culver – ProQuest LLC, 2011
Explanations of chemical phenomena rely on understanding the behavior of submicroscopic particles. Because this level is "invisible," it is described using symbols such as models, diagrams and equations. For this reason, students often view chemistry as a "difficult" subject. The laboratory offers a unique opportunity for the students to…
Descriptors: Undergraduate Students, Chemistry, Equations (Mathematics), College Science
Treagust, David F.; Chandrasegaran, A. L.; Zain, Ahmad N. M.; Ong, Eng Tek; Karpudewan, Mageswary; Halim, Lilia – Chemistry Education Research and Practice, 2011
The efficacy of an intervention instructional program was evaluated to facilitate understanding of particle theory concepts among students (N = 190) using a diagnostic instrument consisting of eleven two-tier multiple-choice items in a pre-test--post-test design. The students involved were high school students, undergraduates and postgraduates…
Descriptors: Intervention, Concept Formation, Scientific Concepts, Theories
Taagepera, Mare; Arasasingham, Ramesh D.; King, Susan; Potter, Frank; Martorell, Ingrid; Ford, David; Wu, Jason; Kearney, Aaron M. – Chemistry Education Research and Practice, 2011
We report a comparative study using "knowledge space theory" (KAT) to assess the impact of a hands-on laboratory exercise that used molecular model kits to emphasize the connections between a plane of symmetry, Charity, and isomerism in an introductory organic chemistry course. The experimental design compared three groups of…
Descriptors: Organic Chemistry, Hands on Science, Science Laboratories, Science Instruction
Magana, Alejandra J.; Brophy, Sean P.; Bryan, Lynn A. – International Journal of Science Education, 2012
Size and scale cognition is a critical ability associated with reasoning with concepts in different disciplines of science, technology, engineering, and mathematics. As such, researchers and educators have identified the need for young learners and their educators to become scale-literate. Informed by developmental psychology literature and recent…
Descriptors: Engineering Education, Engineering, Models, STEM Education
Asai, Kikuo; Takase, Norio – International Journal of Virtual and Personal Learning Environments, 2011
This article presents the characteristics of using a tangible table top environment produced by augmented reality (AR), aimed at improving the environment in which learners observe three-dimensional molecular structures. The authors perform two evaluation experiments. A performance test for a user interface demonstrates that learners with a…
Descriptors: Molecular Structure, Computer Simulation, Usability, Science Instruction
Linenberger, Kimberly J.; Cole, Renee S.; Sarkar, Somnath – Journal of Chemical Education, 2011
We present a guided-inquiry experiment using Spartan Student Version, ready to be adapted and implemented into a general chemistry laboratory course. The experiment provides students an experience with Spartan Molecular Modeling software while discovering the relationships between the structure and properties of molecules. Topics discussed within…
Descriptors: Chemistry, Undergraduate Students, College Science, Science Instruction
Castle, Karen J.; Rink, Stephanie M. – Journal of Chemical Education, 2010
A new physical chemistry laboratory experience has been designed for upper-level undergraduate chemistry majors. Students customize the first 10 weeks of their laboratory experience by choosing their own set of experiments (from a manual of choices) and setting their own laboratory schedule. There are several topics presented in the accompanying…
Descriptors: Majors (Students), Chemistry, Laboratories, College Science
Ault, Addison – Journal of Chemical Education, 2008
The original use of the prefix "meso" was to refer to an optically inactive, non-resolvable member of a set of stereoisomers, some of which were optically active. More recently there have been attempts to define meso in terms of the structural features that can account for the existence of meso forms. It is unlikely that an effort of this kind…
Descriptors: Organic Chemistry, Science Instruction, Molecular Structure, Teaching Methods
McCaffrey, John G. – Journal of Chemical Education, 2009
A simple spreadsheet program is presented that can be used by undergraduate students to calculate the lattice-site distributions in solids. A major strength of the method is the natural way in which the correct number of ions or atoms are present, or absent, at specific lattice distances. The expanding-cube method utilized is straightforward to…
Descriptors: Undergraduate Students, Spreadsheets, College Science, Computation