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Showing 1 to 15 of 79 results Save | Export
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Ross Andrew Shalliker; Corey Manwaring – Journal of Chemical Education, 2023
Performing HPLC-based experiments in the undergraduate practical classroom is difficult because of the time required to perform an analysis. This limits the type of practical to one that undertakes a simple quantitative analysis. However, with the use of sophisticated simulators, such as the one employed in this exercise, more complex experiments…
Descriptors: Undergraduate Students, Science Instruction, Chemistry, Laboratory Experiments
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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
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Renato Matos Lopes; Luiza Amara Maciel Braga; Aline Silvestre Rosa Serrão; Luciana do Amara Teixeira; Michele Waltz Comarú; Raphael Argento de Souza; Cristina Alves Magalha~es de Souza; Fabio Batista Mota – Journal of Chemical Education, 2024
The latest developments in virtual reality (VR) are gaining attention in education as they are expected to provide risk-free, hands-on learning experiences. However, the use of VR in laboratory settings is still in its early stages of adoption. Therefore, it remains unclear whether these technologies will be widely adopted to educate students in…
Descriptors: Computer Simulation, Teaching Methods, Science Instruction, Technology Uses in Education
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Hootan Roshandel; Matthew Shammami; Shiyun Lin; Yin-Pok Wong; Paula L. Diaconescu – Journal of Chemical Education, 2023
The rise of virtual and online education in recent years has led to the development and popularization of many online tools, notably three-dimensional (3D) models and augmented reality (AR), for visualizing various structures in chemical sciences. The majority of the developed tools focus on either small molecules or biological systems, as…
Descriptors: Plastics, Science Instruction, Chemistry, Computer Software
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Yaqi Hou; Miao Wang; Wen He; Yixin Ling; Jing Zheng; Xu Hou – Journal of Chemical Education, 2023
Teaching through experiments has always been an indispensable teaching method in chemistry and other STEM disciplines. Letting more students have access to experiments at the frontier of scientific research is essential to stimulating students' interest in chemistry. With the advancement of computer technology, virtual simulation experiments…
Descriptors: Computer Simulation, Laboratory Experiments, Chemistry, Science Instruction
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Dhanush S. Bejjarapu; Yize Chen; Jiyan Xu; Eric Shaffer; Nishant Garg – Journal of Chemical Education, 2024
Recent advancements in computer graphics and hardware have driven the resurgence of virtual reality (VR). Past literature has reported the use of VR in education, especially for teaching spatially complex concepts. However, there are limited data available on the precise role of VR game design elements. In this study, we introduce a new VR game,…
Descriptors: Physical Sciences, Chemistry, Computer Simulation, Educational Games
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Schmidt, Jonas; Huber, Tim; Mu¨ssig, Jo¨rg – Journal of Chemical Education, 2022
The knowledge of the mechanical properties of polymers and other materials is essential for several tasks in the field of materials science, like component design and material development. The tensile test is one method of determining many of the material's most defining mechanical characteristics. However, the teaching of laboratory experiments…
Descriptors: Science Instruction, Teaching Methods, Science Experiments, Laboratory Experiments
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Gianmarc Grazioli; Adam Ingwerson; David Santiago Jr.; Patrick Regan; Heekun Cho – Journal of Chemical Education, 2023
Computational chemistry instructional activities are often based around students running chemical simulations via a graphical user interface (GUI). GUI-based activities offer many advantages, as they enable students to run chemical simulations with a few mouse clicks. Although these activities are excellent for introducing students to the…
Descriptors: Computation, Chemistry, Teaching Methods, Science Education
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Williams, Dylan P. – Journal of Chemical Education, 2022
A classroom based Problem Based Learning (PBL) activity was adapted to run as a remote activity during the COVID-19 pandemic using an approach described as virtual Problem Based Learning (vPBL). vPBL is based on (i) identification of a suitable learning platform that supports collaborative working in a way that mimics the classroom based activity…
Descriptors: Problem Based Learning, Science Instruction, Teaching Methods, Chemistry
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Charlotte A. Dodson; Stephen E. Flower; Mark Thomas – Journal of Chemical Education, 2023
Industrial drug discovery teams encompass scientists from multiple specialties and require participants to communicate effectively across disciplinary boundaries. In this paper, we present an undergraduate or graduate classroom simulation of this environment. Over a series of five workshops, student teams of mixed scientific backgrounds perform…
Descriptors: Drug Therapy, Pharmacy, Teamwork, Interdisciplinary Approach
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Mistry, Nimesh; Shahid, Namrah – Journal of Chemical Education, 2021
Guided-inquiry experiments are an important tool for helping students develop scientific practices such as hypothesizing and problem solving. In organic chemistry, these types of experiments can help students learn how to connect the theory of the reaction to the observation and data to decide how the reaction is proceeding or if it needs…
Descriptors: Organic Chemistry, Science Instruction, Computer Simulation, Teaching Methods
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Rose, John; Pennington, Richard; Behmke, Derek; Kerven, David; Lutz, Robert; Paredes, Julia E. Barker – Journal of Chemical Education, 2019
A series of organic chemistry synthesis problem sets were provided to students. Potential solution pathways and strategies were recorded on video by the instructor and provided to students electronically via YouTube. Performance on the end-of-semester synthesis exam showed significant gains, with the average increasing by 13% after the…
Descriptors: Science Instruction, Teaching Methods, Organic Chemistry, Video Technology
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Albert, Daniel R. – Journal of Chemical Education, 2020
Monte Carlo simulations for uncertainty propagation take as inputs the uncertainty distribution for each variable and an equation for the calculation of a desired quantity. The desired quantity is then calculated by randomly drawing from the specified uncertainty distributions of the input variables. This calculation is then repeated many times…
Descriptors: Monte Carlo Methods, Science Instruction, Measurement, Undergraduate Students
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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
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Mayes, Howard; Wong, Chung F. – Journal of Chemical Education, 2018
A new program, ECEP2D, for simulating the one-dimensional (1D) and two-dimensional (2D) patterns of the gel electrophoresis of a protein after it has been digested by one or more enzymes is introduced. With ECEP2D, students can gain deeper insights into gel electrophoresis by performing hands-on simulations. For example, students can visualize how…
Descriptors: Computer Software, Computer Simulation, Comparative Analysis, Biochemistry
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