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Maksimenko, Nadezhda; Okolzina, Anzhelika; Vlasova, Anna; Tracey, Chantal; Kurushkin, Mikhail – Journal of Chemical Education, 2021
The present technology report is aimed at demonstrating how the implementation of VR chemistry simulations of atomic structure enhances learning among students. MEL Chemistry VR lessons were incorporated into the classroom for 43 first-year undergraduate ITMO University students. The visualization techniques provided the learners with two…
Descriptors: Nuclear Physics, College Freshmen, Chemistry, Computer Simulation
McArdle, Patrick – Journal of Chemical Education, 2019
This article contrasts the normal method for drawing Lewis structures with a two-step systematic approach. The latter approach uses a known molecular connectivity and a knowledge of the number of valence electrons that each atom possesses to visualize bonds that are formed by pairing electrons, one from each atom. This process is repeated until at…
Descriptors: Chemistry, Science Instruction, Computer Assisted Instruction, Freehand Drawing
VandenPlas, Jessica R.; Herrington, Deborah G.; Shrode, Alec D.; Sweeder, Ryan D. – Journal of Chemical Education, 2021
The growing popularity of flipped, blended, and online learning, combined with the need to support a student population with increasingly diverse backgrounds, has led to the development and use of online materials to support students' learning of chemistry outside of a face-to-face classroom. Chemistry simulations provide opportunities to make…
Descriptors: Science Instruction, Online Courses, Distance Education, Computer Simulation
Rychkova, Anastasia; Korotkikh, Alexey; Mironov, Andrey; Smolin, Artem; Maksimenko, Nadezhda; Kurushkin, Mikhail – Journal of Chemical Education, 2020
Orbital Battleship, published in 2016 in this "Journal," is a hands-on competitive exercise which has been shown to be an efficient tool to reinforce the knowledge of the atomic structure. We decided to give it a more futuristic look and are presenting VR Orbital Battleship, a completely immersive collaborative experience which, in…
Descriptors: Science Instruction, Computer Simulation, Educational Technology, Educational Games
Kohnle, Antje; Benfield, Cory; Hahner, Georg; Paetkau, Mark – Journal of Chemical Education, 2017
The QuVis Quantum Mechanics Visualization Project provides freely available research-based interactive simulations with accompanying activities for the teaching and learning of quantum mechanics across a wide range of topics and levels. This article gives an overview of some of the simulations and describes their use in an introductory physical…
Descriptors: Quantum Mechanics, Computer Simulation, Science Instruction, Physics
Jeanmairet, Guillaume; Levy, Nicolas; Levesque, Maximilien; Borgis, Daniel – Journal of Chemical Education, 2014
We propose an in silico experiment to introduce the classical density functional theory (cDFT). Density functional theories, whether quantum or classical, rely on abstract concepts that are nonintuitive; however, they are at the heart of powerful tools and active fields of research in both physics and chemistry. They led to the 1998 Nobel Prize in…
Descriptors: Computation, Introductory Courses, Scientific Concepts, Scientific Principles

Moore, John W., Ed. – Journal of Chemical Education, 1989
Presents five computer programs: (1) Accurate Numerical Solutions of the One-Dimensional Schrodinger Equation; (2) NMR Simulation and Interactive Drill/Interpretation; (3) A Simple Computer Program for the Calculation of 13C-NMR Chemical Shifts; (4) Constants of 1:1 Complexes from NMR or Spectrophotometric Measurements; and (5) Saturation…
Descriptors: Chemistry, College Science, Computer Graphics, Computer Simulation