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Monica Soma Hensley; Nikita L. Burrows; Andrew J. Galerneau; Amanda P. Bekkala; Kedmon N. Hungwe – Journal of Chemical Education, 2024
The American Chemical Society advocates a shift from rule-based to risk-based safety education for chemistry graduates, emphasizing meaningful student engagement in the risk assessment process for laboratory work. To implement this paradigm shift, we introduced RAMP (Recognize Hazards, Assess Risk, Minimize Risk, and Prevent Emergencies)-based…
Descriptors: Organic Chemistry, Laboratory Training, Safety Education, Science Laboratories
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Aaron Y. Zhao; Joseph Collins; Joel B. Floyd Jr.; Xianming Tan; David S. Lawrence – Journal of Chemical Education, 2023
A variety of strategies have been introduced to tackle the issue of laboratory safety in academic settings. These strategies include innovative educational tools as students transition from the classroom into the laboratory, the introduction of policies designed to protect the researchers in the laboratory environment, and the creation of teams of…
Descriptors: Teamwork, Cooperative Learning, Chemistry, Science Laboratories
Readiness and Emergency Management for Schools Technical Assistance Center (REMS), 2023
Integrating chemical management into a comprehensive emergency operations plan (EOP), including through the creation of a Toxic Materials Annex and a Hazardous Materials Annex, helps improve a school district's or individual school's preparedness for a chemical-related incident. To ensure the annexes remain relevant and useful, districts and…
Descriptors: Hazardous Materials, Readiness, Emergency Programs, Science Laboratories
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Vezza, Mariana E.; Sosa Alderete, Lucas G.; Agostini, Elizabeth – Journal of Biological Education, 2023
Biosphere contamination is a current environmental and social issue that must be included in the school programme. It is essential that students recognise their responsibility, and be knowledgeable about the generation and reduction of environmental pollution. Dyes are usually used in school activities and discharged into household effluents,…
Descriptors: Science Laboratories, High School Students, COVID-19, Pandemics
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Sudripet Sharma; Tharique N. Ansari; Karanjeet Kaur; Andrea Gorce; Wilfried M. Braje; Sachin Handa – Journal of Chemical Education, 2023
Chemistry in water is an emerging field that fulfills the fifth principle of green chemistry: replacing toxic organic solvents with their benign counterparts. Although some pharmaceutical industries have developed and adopted chemistry in water, its implementation in teaching laboratories is still limited. Therefore, we have designed an experiment…
Descriptors: Water, Undergraduate Students, Undergraduate Study, College Science
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Mohammad Amin Rashidi; Samad Rezaiean Khazaei; Kazem Samimi; Soheila Khodakarim; Ashkan Khatabakhsh; Mostafa Pouyakian – Journal of Chemical Education, 2023
Insufficient knowledge of chemical hazards can cause unsafe behaviors, diseases, and accidents in the laboratory, hence educational interventions are significant. Due to its unique qualities, distance learning via educational applications has grown dramatically. This study aimed to determine the efficacy of a safety training intervention via…
Descriptors: Chemistry, Science Education, Science Laboratories, Hazardous Materials
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Hill, Robert H., Jr. – Journal of Chemical Education, 2021
Developing strong safety cultures in academic institutions requires that students at all levels be educated by faculty in chemical safety. Yet chemical safety education is missing from the chemistry curriculum. This article considers a report of numerous injuries from incidents from using flammable chemicals in demonstrations as evidence that…
Descriptors: Chemistry, Science Instruction, College Science, Undergraduate Study
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Filgueiras, Matheus Fernandes; de Jesus, Paulo Cesar; Borges, Endler Marcel – Journal of Chemical Education, 2021
The Griess assay is widely used by regulation agencies as an official method for nitrite quantification in water and food samples. In Brazil, the official method, which has been used to determine nitrite in food, was described by Instituto Adolfo Lutz (283/IV) in 1984. It uses 8 mL of reactants and provides 50 mL (reactants plus sample) of waste…
Descriptors: Science Instruction, Water, Food, Science Experiments
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Morris, John; Winter, Margie – American Biology Teacher, 2021
We describe a series of three experiments in which students develop a model system for measuring the LC50 of household substances, using grass seed as the model organism. Students use statistical methods to compare two samples (using chi-square and Student's "t"-tests), conduct a two-level multifactor experiment to look at multiple…
Descriptors: Science Experiments, Measurement Techniques, Hazardous Materials, College Science
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Finster, David C. – Journal of Chemical Education, 2021
RAMP is an acronym for the process "recognize hazards, assess risk, minimize risk, and prepare for emergencies". This paper describes these four steps in the context of undergraduate instruction about chemical health and safety.
Descriptors: Undergraduate Students, College Science, Chemistry, Safety
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Andrea D. Merry; John A. Means; Tim E. Hall – Journal of Chemical Education, 2024
In this laboratory activity, students were tasked with determining the heat of combustion for each of three common sugar substitutes: saccharin, aspartame, and sucralose. The heats of combustion were determined via three different methods: bomb calorimetry, heats of formation derived from semiempirical calculations, and tabulated average bond…
Descriptors: Science Instruction, Science Laboratories, Laboratory Experiments, Equipment
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Smellie, Iain A.; Carpenter-Warren, Cameron L.; Chalmers, Brian A.; Cordes, David B.; F. De A. Gouy, Rodrigo P.; Keddie, Neil S.; Lebl, Tomas; Patterson, Iain. L. J.; Slawin, Alexandra M. Z. – Journal of Chemical Education, 2021
This work presents a simple protocol that demonstrates the use of an inexpensive household carbon monoxide detector as a useful tool to detect the release of carbon monoxide gas from thermal cheletropic decarbonylation reactions. The carbon monoxide detection method described has been employed in a short series of reactions used in a university…
Descriptors: Science Instruction, Scientific Concepts, Concept Formation, Chemistry
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Candas, Bahar; Kiryak, Zeynep; Özmen, Haluk – Science Education International, 2022
This study aimed to investigate the effect of the analytical chemistry laboratory (ACL) course, designed, and conducted according to the flipped learning approach (FL) on prospective science teachers' (PSTs) meaningful understanding and interpretation of knowledge in the context of the environment. Seventy-three second grade PSTs participated in…
Descriptors: Flipped Classroom, Chemistry, Conservation (Environment), Environment
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Kou, Yangming; Peng, Xiayu; Dingwell, Claire E.; Reisbick, Spencer A.; Tonks, Ian A.; Sitek, Anna A. – Journal of Chemical Education, 2021
While lab accidents that involved personal injuries or significant property damage are required to be reported by law, many minor lab incidents or near misses are less frequently reported, especially in an academic research environment. However, public awareness of these stories and incidents create valuable learning opportunities and can prevent…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Laboratory Safety
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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
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