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De Micheli, Andrea J.; Valentin, Thomas; Grillo, Fabio; Kapur, Manu; Schuerle, Simone – Journal of Chemical Education, 2022
Natural sciences can be difficult to grasp because physical and chemical phenomena can take place across time and length scales that are beyond the reach of human perception. This problem is particularly true for students attempting to learn about microfluidics, a discipline that involves intricate engineering methods and fluid phenomena that are…
Descriptors: Computer Simulation, Chemistry, Laboratory Training, College Science
Leonora Kaldaras; Carl Wieman – Physical Review Physics Education Research, 2023
The ability to express scientific concepts in mathematical terms and integrate scientific and mathematical reasoning about a phenomenon is a foundational cognitive process involved in scientific thinking. This process called "blended math-science sensemaking" (MSS) is a desired skill for all science, technology, engineering, and math…
Descriptors: Computer Simulation, Teaching Methods, College Science, Undergraduate Students
Neil Francis Peirson – Research in Post-Compulsory Education, 2025
Virtual laboratories (VL) can provide students with learning experiences simulating practical experiments in a traditional laboratory. Evidence is presented that students believe in the truth of results from the VL as well as those from the traditional laboratory. The underlying reasons for these beliefs are explored, through Russell's description…
Descriptors: Computer Simulation, Science Laboratories, Student Attitudes, College Students
Joaqui´n Gonza´lez; Eduardo Laborda; A´ngela Molina – Journal of Chemical Education, 2023
Theoretical and practical foundations of basic electrochemical concepts of heterogeneous charge transfer reactions that underline electrochemical processes are presented for their detailed study by undergraduate and postgraduate students. Several simple methods for calculating key variables, such as the half-wave potential, limiting current, and…
Descriptors: Chemistry, College Science, Science Instruction, Computer Simulation
Morgan I. D. Johnson; Lavinia Mbongo; Amy J. Managh – Journal of Chemical Education, 2023
An ICP-MS simulation was developed to support the teaching of inductively coupled plasma-mass spectrometry. The app enables students to conduct the quantification of selenium in a nutritional supplement, monitor the uptake of metallodrugs by cells, and perform qualitative analysis of gunshot residue. The experiments teach a range of analytical…
Descriptors: Computer Software, Undergraduate Study, College Science, Science Education
Tapia Mattar, Valeria; Gavilán-Arriazu, Edgardo Maximiliano; Rodriguez, Sergio Antonio – Journal of Chemical Education, 2022
Understanding the physicochemical properties of organic compounds with potential biological uses is central in current research topics. Thus, students must pursue the integration of different fields of chemistry to obtain and understand the physicochemical parameters that characterize the mechanism of action of key organics compounds. This…
Descriptors: Computer Simulation, Organic Chemistry, Computer Uses in Education, Thermodynamics
Matilynn Lam; Casey Schwarz; Rashi Sharma; Julie Donnelly – Journal of Chemical Education, 2023
Despite the growing importance of nanomaterials in numerous industries, most undergraduate chemistry students are unlikely to encounter characterization techniques common in the field during their education. Scanning electron microscopy (SEM) is a common technique for materials characterization widely used in careers chemistry students are likely…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Students
Mistry, Nimesh; Singh, Ravi; Ridley, Jamie – Journal of Chemical Education, 2020
A set of web-based stereochemistry tools which help students use virtual 3D models to translate Newman projections and chair conformations and assign "R/S" labels to stereocenters from 2D dashed-wedged structures is described. These tools are unique in the way they link 2D dashed-wedged structures to 3D models to help students develop…
Descriptors: Chemistry, Organic Chemistry, Visual Aids, Computer Simulation
Angelica Vagle – ProQuest LLC, 2024
The 21st century technology has advanced to become an accessible beacon of education. The physical boundaries of the chemistry laboratory have expanded with the use of innovative virtual lab simulations despite disparate results from previous investigations of student performance comparing virtual lab simulations with traditional laboratory…
Descriptors: Computer Simulation, Educational Technology, Science Laboratories, Chemistry
Hua, Amy K.; Lakey, Pascale S. J.; Shiraiwa, Manabu – Journal of Chemical Education, 2022
This paper presents MATLAB user interfaces for two multiphase kinetic models: the kinetic double-layer model of aerosol surface chemistry and gas--particle interactions (K2-SURF) and the kinetic multilayer model of aerosol surface and bulk chemistry (KM-SUB). Each interface has simple and user-friendly features that allow undergraduate and…
Descriptors: Chemistry, Science Instruction, Computer Interfaces, Kinetics
Thomas D. Varberg – Journal of Chemical Education, 2022
An experiment for the undergraduate physical chemistry laboratory is described in which the Raman spectrum of liquid "para"-difluorobenzene is recorded and assigned. A density functional theory (DFT) calculation of the 30 normal modes of the molecule is undertaken using computational chemistry software. Students use group theory to…
Descriptors: Undergraduate Students, Science Instruction, College Science, Science Laboratories
Bang Lin Li; Liyu Peng; Cheng-Bin Gong; Jing Rong Chen; Hao Lin Zou; Hong Qun Luo; Nian Bing Li – Journal of Chemical Education, 2022
Recently, two-dimensional (2D) nanostructures, such as graphene and few-layer MoS[subscript 2], have been applied to wide fields based on their intriguing performances, and they contribute to developments of clean energy, biomedicine, and environmental protection. The synthesis of 2D nanostructures involves chemistry, materials, and…
Descriptors: Chemistry, Science Instruction, Science Experiments, Undergraduate Study
Jingjing Qiu; Anneke Moeller; Janet Zhen; Hansen Yang; Lily Din; Nicole Adelstein – Journal of Chemical Education, 2023
An integrated inorganic chemistry laboratory experience focusing on heterogeneous electrocatalysis with nickel (Ni)- and cobalt (Co)-based electrocatalysts is designed for upper-division, major-level chemistry students. In this laboratory, students will be guided through the fabrication of an indium tin oxide (ITO)-coated glass working electrode,…
Descriptors: Programming Languages, Computer Software, Computer Simulation, Educational Technology
Wolf, Mark E.; Norris, J. Widener; Fynewever, Herb; Turney, Justin M.; Schaefer, Henry F., III – Journal of Chemical Education, 2022
Over the past half century, computational chemistry has evolved from a niche field to a ubiquitous pillar of modern chemical research. Driven by the increased demand for computational chemistry in research settings, the undergraduate curriculum has evolved alongside to ensure that students are well-equipped for modern research. Toward this end,…
Descriptors: Science Instruction, Science Laboratories, Chemistry, Computer Simulation
Federico De Lorenzis; Alessandro Visconti; Simone Restivo; Francesca Mazzini; Serena Esposito; Silvia Fraterrigo Garofalo; Luca Marmo; Debora Fino; Fabrizio Lamberti – Smart Learning Environments, 2024
The use of Virtual Reality (VR) in education is getting more and more common, especially when hands-on learning experiences have to be delivered. With VR it becomes possible, e.g., to simulate dangerous or costly procedures that could hardly be implemented in real settings. However, engaging large classes in immersive laboratory activities may be…
Descriptors: Computer Simulation, Cooperative Learning, Chemistry, Science Education