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Favero, Giacomo; Brugia, Mattia; Mancin, Fabrizio; Bonomi, Renato – Journal of Chemical Education, 2019
In recent years, nanotechnology has been one of the major subjects of scientific and technological research. Currently, several applications of nanotechnologies are already available on the market. Particularly relevant are the fields of new materials and sensors, which have excellent potential future applications in the biomedical field. This…
Descriptors: Chemistry, Molecular Structure, Technology, Science Activities
Boyce, Mary C.; Lawler, Nathan G.; Tu, Yingqi; Reinke, Stacey N. – Journal of Chemical Education, 2019
Metabolomics is the data-driven science of small molecules. Untargeted metabolomics, using liquid chromatography-high resolution mass spectrometry (LC-HRMS), differs greatly from targeted metabolite assays, using nominal mass LC-MS instruments, as it generates thousands of metabolite features which are not quantified and are identified "post…
Descriptors: College Science, Undergraduate Students, Metabolism, Molecular Biology
Wanamaker, Carolyn L.; Neff, Brittany S.; Nejati-Namin, Azieta; Spatenka, Erin R.; Yang, Mong-Lin – Journal of Chemical Education, 2019
The importance of understanding factors that contribute to surface wettability is highlighted in this new organic chemistry laboratory experiment, which aims to introduce the application of organic chemistry at the interface of polymer chemistry and material science. Polydimethylsiloxane (PDMS), a hydrophobic silicon-based rubber, is polymerized…
Descriptors: Organic Chemistry, Science Instruction, College Science, Undergraduate Study
Bruce, Mitchell R. M.; Bruce, Alice E.; Bernard, Sarah E.; Bergeron, Andrew N.; Ahmad, Ahmad A. L.; Bruce, Timothy A.; Perera, Duwage C.; Pokhrel, Shyam; Saleh, Sfoog; Tyrina, Anna; Yaparatne, Sudheera – Journal of Chemical Education, 2021
The development of a remote, synchronous general chemistry lab course, which was offered to 800 students in the fall semester of 2020, is described. The course was designed with similar curricular goals as our in-person lab course and featured chemistry kits developed by a team of faculty, staff, and graduate TAs. The kits, which were distributed…
Descriptors: Instructional Design, Distance Education, Online Courses, Synchronous Communication
Kubekova, Sholpan N.; Kapralova, Viktoria I.; Ibraimova, Gulnur T.; Batyrbayeva, Aigul A. – International Journal of Environmental and Science Education, 2016
The aim of the research is the study of the chemical and phase composition of enrichment wastes of manganiferous ore in Ushkatyn-III deposit and the synthesis of new materials by mechanochemical activation and subsequent heat treatment of the mechanical activation products. The use of XFA, infrared spectroscopy and electron probe microanalysis…
Descriptors: Wastes, Chemistry, Spectroscopy, Foreign Countries
Felton, Daniel E.; Ederer, Martina; Steffens, Timothy; Hartzell, Patricia L.; Waynant, Kristopher V. – Journal of Chemical Education, 2018
Glyphosate (N-(phosphonomethyl)glycine) is the most widely used herbicide on earth. A simple assay to quantify glyphosate concentrations in environmental samples was developed as part of an interdisciplinary effort linking introductory laboratory courses in chemistry, biology, and microbiology. In this 3 h laboratory experiment, students used…
Descriptors: Science Instruction, College Science, Undergraduate Study, Spectroscopy
Rajapaksha, Suranga M.; Samarasekara, Dulani; Brown, John Charles; Howard, Leslie; Gerken, Katherine; Archer, Todd; Lathan, Patty; Mlsna, Todd; Mlsna, Deb – Journal of Chemical Education, 2018
Proficiency with instrumental analysis via GC-MS is an important skill for chemistry students. The application of analytical techniques and fundamental theoretical principles to real-world problems can be valuable learning exercises for undergraduates which can also improve their analytical thinking skills. Xylitol is generally considered safe for…
Descriptors: Science Instruction, Science Laboratories, Laboratory Experiments, Science Experiments
Schaller, Chris P.; Graham, Kate J.; McIntee, Edward J.; Peterson, Alicia A.; Strollo, Christen M.; Jakubowski, Henry V.; Fazal, M. A.; Johnson, Brian J.; Jones, T. Nicholas; Raigoza, Annette M. – Journal of Chemical Education, 2018
A novel laboratory curriculum is presented, developed around some common tasks of a laboratory researcher in chemistry: purification, synthesis, and measurement. The capstone of the sequence is an integrated laboratory, leading to a more independent research experience. Students who have completed this laboratory curriculum appear to perform…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Science Curriculum
Khalafi, Lida; Doolittle, Pamela; Wright, John – Journal of Chemical Education, 2018
A laboratory experiment is described in which students determine the concentration and speciation of iron in beer samples using cloud point extraction and absorbance spectroscopy. The basis of determination is the complexation between iron and 2-(5-bromo-2- pyridylazo)-5-diethylaminophenol (5-Br-PADAP) as a colorimetric reagent in an aqueous…
Descriptors: Science Experiments, Laboratory Experiments, Science Laboratories, Chemistry
Lewis, Russell L.; Seal, Erin L.; Lorts, Aimee R.; Stewart, Amanda L. – Biochemistry and Molecular Biology Education, 2017
The undergraduate biochemistry laboratory curriculum is designed to provide students with experience in protein isolation and purification protocols as well as various data analysis techniques, which enhance the biochemistry lecture course and give students a broad range of tools upon which to build in graduate level laboratories or once they…
Descriptors: Spectroscopy, Undergraduate Students, Biochemistry, Laboratory Experiments
Seroy, Sasha K.; Zulmuthi, Hanis; Grünbaum, Daniel – Journal of Geoscience Education, 2020
Educational research supports incorporating active engagement into K-12 education using authentic STEM experiences. While there are discipline-specific resources to provide students with such experiences, there are limited transdisciplinary opportunities that integrate engineering education and technological skill-building to contextualize core…
Descriptors: High School Students, Secondary School Science, Chemistry, Scientific Concepts
Hoper, Jan – School Science Review, 2020
Smartphones, coupled with small mobile sensors, make it possible to work with near-infrared (NIR) spectroscopy in science classrooms. NIR spectroscopy has become a standard analytical technology in various industries. These new devices enable students to create their own data in real time. This article presents an inquiry-based teaching unit, in…
Descriptors: Science Instruction, Spectroscopy, Teaching Methods, Educational Technology
Maher, Carolyn; Schazmann, Benjamin; Gornushkin, Igor B.; Rurack, Knut; Gojani, Ardian B. – Journal of Chemical Education, 2021
Laser-induced breakdown spectroscopy (LIBS) and principal component analysis (PCA) are frequently used for analytical purposes in research and industry, but they seldom are part of the chemistry curriculum or laboratory exercises. This case study paper describes the combined application of LIBS and PCA during a research internship for an…
Descriptors: Factor Analysis, Case Studies, Internship Programs, Undergraduate Students
Wolf, Vanessa; Hsiao, Valerie; Rodriguez, Brandon; Min, Ashley; Mayorga, Jill; Ashcroft, Jared – Research in Science Education, 2022
Remote access technology in STEM education fills dual roles as an educational tool to deliver science education (Educational Technology) and as a means to teach about technology itself (Technology Education). A five-lesson sequence was introduced to 11 and 12-year-old students at an urban school. The lesson sequences were inquiry-based, hands-on,…
Descriptors: Science Experiments, STEM Education, Science Instruction, Teaching Methods
da Silva, Rodrigo Sens; Borges, Endler Marcel – Journal of Chemical Education, 2019
Here, students determine aspirin (acetylsalicylic acid) mass in pharmaceutical tablets using a colorimetric method. Aspirin, salicylate, and salicylic acid do not absorb visible light. Thus, in alkaline medium, acetylsalicylic acid was hydrolyzed to salicylate; then, it was reacted with an acidic Fe(III) solution, and a violet complex was formed.…
Descriptors: Spreadsheets, Drug Therapy, Light, Chemistry