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Dunn, Anna L.; Payne, Andrew; Clark, Peter R.; McKay, Christopher; Williams, Glynn D.; Wheelhouse, Katherine; Arendt, Kevin; Dixon, Frank; Shilcrat, Susan – Journal of Chemical Education, 2021
Awareness of best safety practices in the industrial sector will allow students in chemistry and chemical engineering programs to apply these approaches to their own safety assessments. Process safety is a critical function within the pharmaceutical industry to ensure safety when performing reactions. An introduction to process safety and a series…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Chemical Engineering
Ang, Jayden Wei Jie – Journal of Chemical Education, 2021
A method to synthesize biaryls through the Suzuki-Miyaura cross-coupling reaction using a recyclable fluorous precatalyst is described. This laboratory experiment, which demonstrates the safety benefits of green chemistry, is integrated into an upper-division course. Besides simply using the catalyst for a reaction, students can reuse the catalyst…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Laboratory Experiments
Ahmed, Waleed; Zaneldin, Essam; Al Hassan, Amged – Education Sciences, 2021
With the rapid growth in the manufacturing industry and increased urbanization, higher amounts of composite material waste are being produced, causing severe threats to the environment. These environmental concerns, coupled with the fact that undergraduate students typically have minimal experience in research, have initiated the need at the UAE…
Descriptors: Student Research, Undergraduate Students, Recycling, Wastes
Sheppard, Caroline – Journal of Chemical Education, 2021
Laboratory safety is a vital part of a chemical education and can be incorporated into courses throughout the chemistry curriculum. Discussions of laboratory safety can serve as an introduction to the important field of green chemistry. Exposure to this field can better prepare students for safer and more sustainable laboratory practices in…
Descriptors: Chemistry, Laboratory Safety, Safety Education, Science Instruction
Fracaroli, Alejandro M.; Caminos, Daniel A. – Journal of Chemical Education, 2021
Scientists understand that no result is more important than the welfare of the investigators and the people around them. Safety culture is an integral part of industrial and academic jobs; however, safety training has only recently been added to chemistry classroom and laboratories. Chemistry laboratories expose workers to a variety of hazards,…
Descriptors: Chemistry, Laboratory Safety, Safety Education, Hazardous Materials
Adawe, Abdolahi Mohamed – Science Education International, 2021
Chemicals used in academic teaching laboratories, research institutions, and industrial facilities are mostly dual-use chemicals. They provide many desired benefits but at the same time may cause adverse effects to human health and environments. In the case of Somalia, there are gaps in terms of chemical security (CS) awareness and…
Descriptors: Foreign Countries, Science Instruction, Chemistry, Science Laboratories
Goh, Hui Yi; Wong, Wei Wen Clarence; Ong, Yue Ying – Journal of Chemical Education, 2020
Chemical waste should be reduced to minimize environmental pollution, and it is important that the amount of waste is minimized in chemistry teaching laboratories to reduce the negative impact on environment as well as the disposal costs of university. There are several ways to minimize the waste generated in chemistry teaching laboratories,…
Descriptors: Wastes, Science Instruction, Chemistry, Science Laboratories
Roberts, Andrea; O'Neil, Alison L.; Barlow, Rachael; Keeler, Camille; Nelligan, William S.; Westmoreland, T. David – Journal of Chemical Education, 2021
Developing a broadly based positive culture of safety in undergraduate instructional laboratory settings remains a significant challenge for chemical educators. An enhanced safety component has been developed for an upper-level laboratory course based on earning a Chemical Hygiene and Safety badge. The badge requires student engagement in…
Descriptors: Chemistry, Science Instruction, Hazardous Materials, Learner Engagement
Broyer, Rebecca M.; Miller, Kenny; Ramachandran, Shalini; Fu, Sheree; Howell, Karen; Cutchin, Steven – Journal of Chemical Education, 2021
In recent years, immersive technology tools have burgeoned. After the release of the affordable Oculus Go headset and the Merge Cube, there has been increasing use of virtual, augmented, and extended reality (VR, AR, XR) in classrooms. Of significance to chemistry educators are the virtual lab simulations developed by Labster and HoloLab Champions…
Descriptors: Computer Simulation, Simulated Environment, Demonstrations (Educational), Equipment
Jose´ M. Leo´n Ninin; Andrea E. Colina Blanco; Andreas Held; Britta Planer-Friedrich – Journal of Chemical Education, 2022
Environmental forensics is the application of knowledge from geosciences and chemistry in a legal setting, e.g., to determine the origin and consequences of contamination events. Teaching environmental forensics requires reactivating prior knowledge from different fields of natural sciences, filling knowledge gaps, and connecting pieces of…
Descriptors: Law Enforcement, Court Litigation, Prior Learning, Natural Sciences
Integrating Computational Data Science in University Curriculum for the New Generation of Scientists
Renu, N.; Sunil, K. – Higher Education for the Future, 2023
Integration of computational data science (CDS) into the university curriculum offers several advantages for students, faculty and the institution. This article discusses the benefits to students of introducing CDS into the university curriculum with a focus on developing skills in cheminformatics, data analysis, structure--activity relationships,…
Descriptors: Data Science, Higher Education, College Students, Skill Development
Chen, Kai; Zhou, Jingming; Lin, Jiayi; Yang, Jing; Xiang, Jiamin; Ling, Yizhou – Journal of Chemical Education, 2021
The topic of chemistry safety was included at the margins of traditional chemistry education in China. In order to understand the concerns of the safety issues based on the new chemistry curriculum in the mainland China secondary school, this study analyzed old and new secondary chemistry curriculum standards via the Natural Language Processing…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Laboratory Safety
Baldock, Brandi L.; Blanchard, Joanna D.; Fernandez, Anthony L. – Journal of Chemical Education, 2021
General chemistry students need to understand the concept of intermolecular forces and use them to predict the properties of materials. To do this, they must create symbolic representations of molecules, relate these to physical observations, and explain them using submicroscopic theoretical constructs. When these concepts are taught separately,…
Descriptors: Prediction, Molecular Structure, Laboratory Experiments, Hazardous Materials
von Dollen, James; Oliva, Sofia; Max, Sarah; Esbenshade, Jennifer – Journal of Chemical Education, 2018
At many universities, silver nitrate is used in teaching laboratories, and a resulting waste product is often silver chloride. Silver chloride is not a compound that can be discarded into a sink as it has harmful effects to the environment; however, commercial waste disposal is costly, and replacement of the silver nitrate reagent is expensive.…
Descriptors: Chemistry, Wastes, Sanitation, Science Laboratories
Dameris, Logan; Frerker, Hannah; Iler, H. Darrell – Journal of Chemical Education, 2020
An environmental chemistry service-learning project was implemented by Greenville University in coordination with the local county health department to test the quality of well water for residents in a five-county region of southern Illinois. Well owners attended a student run well water testing "kickoff meeting", received testing kits,…
Descriptors: Chemistry, Service Learning, Science Instruction, Water Quality