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Nicholas Griffin; Marshall Ritchie; Tyler Lynn; Kate Dear; Tyler Christian John Deutsch; Leigha Dillard; Kenneth Overway; Barnabas Otoo – Journal of Chemical Education, 2024
Owing to the critical role of stereochemistry in biotechnology, medicine, and industry, it must be well represented in undergraduate lab curricula. To achieve these stereochemical laboratory requirements without sacrificing existing lab techniques, we modified two standard laboratory experiments to include chiral GC analysis as follows. (1) The…
Descriptors: College Science, Undergraduate Students, Chemistry, Laboratory Procedures
Lei Li; Fu Pi; Gu Zhan; Qian-Qian Yang; Ying-Chun Chen; Zhi-Chao Chen; Wei Du – Journal of Chemical Education, 2024
An organic chemistry experiment designed for senior undergraduates focuses on bifunctional catalysis, a critical yet often omitted topic at the undergraduate level, but essential for advanced studies in chemistry. By utilization of a tertiary amine-thiourea catalyst in the asymmetric Michael addition reaction, the experiment showcases the…
Descriptors: Undergraduate Students, College Science, Organic Chemistry, Laboratory Experiments
Suzanne Lightsey; Michele Dill; Madison Temples; Taylor Yeater; Sarah Furtney – Biomedical Engineering Education, 2024
Hands-on laboratory courses seldom appear in biomedical engineering (BME) graduate programs, thus limiting graduate students' ability to acquire wet laboratory skills like cell culturing. At large, BME graduate programs rely on ad hoc training provided by senior graduate students; however, this method cannot be extended to new or non-BME…
Descriptors: Graduate Students, Engineering Education, Biomedicine, Cooperative Learning
Bolduc, Kathryn C.; McCollough, Shannon L.; Stoeckman, Angela K. – Biochemistry and Molecular Biology Education, 2023
Undergraduate laboratory courses are vital for both enhancing student learning and preparing students for their future careers. Despite their importance, laboratory courses are often met with a lack of enthusiasm from students. For pre-health students specifically, laboratory courses are commonly seen as part of a check-list that needs to be…
Descriptors: Biochemistry, Science Laboratories, Laboratory Training, Majors (Students)
Marie-Charlotte Horny; Martina Freisa; Claire Poujouly; Pedro Gonzalez-Losada; Jeremy Le Gall; Thi-Hong-Nhung Dinh; David Bouville; Isabelle Le Potier; Antoine Pallandre; Jean Gamby – Journal of Chemical Education, 2024
Teaching graduate students the entanglements of the interdisciplinary field of electrochemical DNA biosensors in microfluidics can be challenging, as it involves multiple fields of research strongly interacting with each other. Yet, electrochemical biosensors coupled with the improved hydrodynamics of microfluidics allow for simpler, more…
Descriptors: Graduate Students, Chemistry, College Science, Science Instruction
Maurizio Costabile; Connie Caruso; Chris Della Vedova; Sheree Bailey; Layla Mahdi – Advances in Physiology Education, 2025
Science, technology, engineering, and mathematics (STEM) students are typically taught content delivered didactically and closely aligned with the laboratory demonstration of concepts, which facilitates the development of experimental skills. Because of the volume of content delivered across multiple courses, student cognitive abilities can be…
Descriptors: Computer Simulation, Computer Software, Learning Processes, Laboratory Training
Simeen Sattar – Journal of Chemical Education, 2024
Lakes are artists' pigments made from colorants bound to an inert substrate, usually hydrated aluminum oxide. Before the late 19th century, lakes were made from natural pigments extracted from plants and insects, extracted either directly from the dyestuff or indirectly from waste materials generated in the manufacture of dyed textiles. The first…
Descriptors: Color, Science Experiments, Laboratory Experiments, Science Education
Jones, Eric; Glanz, Hunter; Wilkinson, Steven; Fogle, Emily – Biochemistry and Molecular Biology Education, 2023
Course-based undergraduate research experiences (CUREs) can provide undergraduate students access to research opportunities when student and faculty resources are limited. In addition to expanding research opportunities, CUREs may also be explored as a pedagogical tool for improving student learning of course content and laboratory skills, as well…
Descriptors: Achievement Gains, Self Esteem, Scientific Research, Undergraduate Students
Ready, Set, Go? Impact of the Pandemic on Student Readiness: Laboratories, Preparedness, and Support
Jennifer Garcia Ramos; Marcy H. Towns – Journal of Chemical Education, 2023
There is little doubt that the pandemic has had a significant impact on students' academic achievement and mental health across the K-16 spectrum. For undergraduate chemistry instructors, data on the number of laboratories students completed in high school and in what mode would be important information in considering what modifications could be…
Descriptors: Undergraduate Students, Chemistry, Laboratory Training, Mental Health
De Micheli, Andrea J.; Valentin, Thomas; Grillo, Fabio; Kapur, Manu; Schuerle, Simone – Journal of Chemical Education, 2022
Natural sciences can be difficult to grasp because physical and chemical phenomena can take place across time and length scales that are beyond the reach of human perception. This problem is particularly true for students attempting to learn about microfluidics, a discipline that involves intricate engineering methods and fluid phenomena that are…
Descriptors: Computer Simulation, Chemistry, Laboratory Training, College Science
Zhe Chen; Haodong Yang; Xinpeng Men; Lei Yao; Qiuming Fu; Zhidong Lin; Shenggao Wang – Journal of Chemical Education, 2022
Electrochemical impedance spectroscopy (EIS) is a rapid and powerful method for evaluating the pore structure of membranes. However, the application is limited due to the lack of appropriate training of engineers in electrochemistry and materials engineering. The introduction of laboratory practices can effectively improve the understanding of…
Descriptors: Science Instruction, Undergraduate Students, Chemistry, Engineering
Frédéric Hapiot; Pierre-Edouard Danjou; François Delattre; Solen Josse; Véronique Bonnet – Journal of Chemical Education, 2025
The ability to elucidate the structure of organic compounds from their nuclear magnetic resonance (NMR), infrared (IR), and mass spectrometry (MS) spectra is an essential skill, particularly for those engaged in the fields of synthetic and analytical organic chemistry. Spectral analysis constitutes a fundamental component of the curriculum for all…
Descriptors: Undergraduate Students, College Science, Organic Chemistry, Spectroscopy
T. Leon Venable – Journal of Chemical Education, 2024
As an introduction to quadrupolar effects in NMR spectroscopy, students use low field ([superscript 1]H, 60 MHz), benchtop [superscript 13]C NMR spectroscopy to contrast the spin-spin coupling behavior of [superscript 13]C to the dipolar [superscript 1]H and quadrupolar [superscript 2]D in familiar solvents C(H/D)Cl[subscript 3], C(H/D)[subscript…
Descriptors: Inorganic Chemistry, Science Laboratories, Scientific Concepts, Spectroscopy
Siyu Zhang; Yipin Zhu; Xiang Li; Shengjie Chen; Yu Chen; Hui He; Bo Peng; Yan Zhang – Journal of Chemical Education, 2023
A one-pot multicomponent synthesis of unsymmetrical indole-substituted methane derivative based on two consecutive reactions of p-methylbenzaldehyde with N-methylindole and 5,5-dimethyl-1,3-cyclohexanedione is described as an experiment that was carried out by second-year undergraduate chemistry students individually in a laboratory classroom. The…
Descriptors: Scientific Concepts, Organic Chemistry, Synthesis, Science Experiments
Matthew Nel; Kariska Potgieter; Oyekunle Azeez Alimi; Andre L. Nel; Reinout Meijboom – Journal of Chemical Education, 2022
Recent advances in laboratory automation and digitization require a teaching strategy for undergraduate students that is inclusive of skills in these areas so that students can be prepared to work within the modern laboratory. Future scientists will need training in coding, microcontrollers, on-demand manufacturing, and robotics. With this in…
Descriptors: Science Education, Organic Chemistry, Undergraduate Students, Laboratory Equipment