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Mahsa Parvizian; Julia Bechter; Jan Huber; Noura Chettata; Jonathan De Roo – Journal of Chemical Education, 2023
Quantum dots are colloidal semiconductor nanocrystals that display size-dependent electronic and optical properties. These materials are a visual demonstration of a quantum-mechanical effect. Here we present a laboratory exercise for undergraduate/Bachelor students as an introduction to colloidal nanocrystals and quantum dots. The students…
Descriptors: Science Instruction, Quantum Mechanics, Science Laboratories, Undergraduate Students
Alexander J. Wright; Dave Colclough; Hazel Harris; Stefano C. G. Biagini – Journal of Chemical Education, 2023
In this paper, we present a concise and technique-heavy route to the synthesis of dimedone for a second-year organic chemistry curriculum. Our preparation of dimedone guides students through a Michael addition followed by a Dieckmann cyclization, basic ester hydrolysis, and thermal decarboxylation, while allowing time for mechanistic discussion…
Descriptors: Science Instruction, Science Laboratories, Organic Chemistry, Undergraduate Study
Matilynn Lam; Casey Schwarz; Rashi Sharma; Julie Donnelly – Journal of Chemical Education, 2023
Despite the growing importance of nanomaterials in numerous industries, most undergraduate chemistry students are unlikely to encounter characterization techniques common in the field during their education. Scanning electron microscopy (SEM) is a common technique for materials characterization widely used in careers chemistry students are likely…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Students
Adrian Saura-Sanmartin; Jorge Lopez-Sanchez; Carmen Lopez-Leonardo; Aurelia Pastor; Jose Berna – Journal of Chemical Education, 2023
The synthesis of a [2]rotaxane through three- or five-component coupling reactions has been adapted to an organic chemistry experiment for upper-division students. The experimental procedure addresses the search for the most favorable reaction conditions for the synthesis of the interlocked compound, which is obtained in a yield of up to 71%.…
Descriptors: Scientific Concepts, Organic Chemistry, Science Experiments, Spectroscopy
Guan-Jie Luo; Pei-Hsuan Wu; Ming-Le Lin; Fang-Fei Chou; Jim Jr-Min Lin – Journal of Chemical Education, 2023
A simple photometric device was built to measure the kinetics of the title reaction. The device consisted of a green light-emitting diode (centered at 520 nm), a sample vial, a photodiode, and an Arduino microcontroller board. These parts were mounted on a black poly(lactic acid) holder which was manufactured by utilizing three-dimensional…
Descriptors: Kinetics, Chemistry, Measurement Equipment, Color
Nicola´s Andre´s Saffioti; Carla Angelani; Jose´ Mari´a Delfino; Silvia Ferna´ndez Villamil; Gabriela Elena Go´mez; Irene Mangialavori; Mari´a Florencia Pignataro; Pablo Julio Schwarzbaum – Journal of Chemical Education, 2023
Metabolic Control Analysis (MCA) is a systems biology approach that measures the control of a metabolic step on the overall flux of a metabolic pathway. In undergraduate courses in biochemistry, learning of MCA can be encouraged by experimental activities demonstrating practical applications of the MCA theory. In this work, we present a laboratory…
Descriptors: Biochemistry, Metabolism, College Science, Undergraduate Students
Guixiang Wu; Yanfei Yang; Chenglin Xu – Journal of Chemical Education, 2023
Based on four types of laboratory safety questions (chemical, biological, physical, and medical), a cross-sectional survey of students at Kunming University of Science and Technology (China) was carried out to determine the awareness of laboratory safety among university students. The survey was completed by 335 students in total, with a response…
Descriptors: Foreign Countries, College Students, Science Education, Laboratory Safety
A. M. Ranjika P. Bopegedera – Journal of Chemical Education, 2023
Calorimetry is a central concept in the first semester general chemistry curriculum, and constant pressure (coffee-cup) calorimetry is a common experiment in the laboratory. However, constant volume (bomb) calorimetry is traditionally reserved for the physical chemistry laboratory. This article describes the advantages of incorporating bomb…
Descriptors: Chemistry, Science Instruction, Science Experiments, Laboratory Experiments
Arun Richard Chandrasekaran – Journal of Chemical Education, 2023
The field of DNA nanotechnology has grown rapidly in the past decade and has expanded to multiple laboratories. While lectures in DNA nanotechnology have been introduced in some institutions, laboratory components at the undergraduate level are still lacking. Undergraduate students predominantly learn about DNA nanotechnology through their…
Descriptors: Genetics, Technology, Microbiology, Undergraduate Study
William J. Howitz; Taylor Frey; Shannon J. Saluga; Melanie Nguyen; Kameryn Denaro; Kimberly D. Edwards – Journal of Chemical Education, 2023
This paper describes the creation of a theme-based first quarter, of a two quarter sequence, general chemistry laboratory course following an argument driven inquiry format and employing specifications grading. The course contains four, two-week projects investigating the chemistry of a popular sports drink. The sugar content, dye concentration,…
Descriptors: Chemistry, Science Laboratories, Laboratory Training, Persuasive Discourse
Ilana J. P. Molesky; Michael W. Zuerch; Anne M. Baranger; Stephen R. Leone – Journal of Chemical Education, 2023
Ultrafast laser pump-probe spectroscopy is an important and growing field of physical chemistry that allows the measurement of chemical dynamics on their natural time scales, but undergraduate laboratory courses lack examples of such spectroscopy and the interpretation of the dynamics that occur. Here we develop and implement an ultrafast…
Descriptors: Undergraduate Students, College Science, Chemistry, Spectroscopy
Martin Rozman; Mojca Alif; Urban Bren; Miha Luksic – Journal of Chemical Education, 2022
Electrochromism encompasses reversible changes of material's optical properties (color, opacity) under the influence of an external electric current or applied voltage. The effect has been known for decades, but its importance continues to grow due to the rapid development of smart systems and the accompanying demand to build devices that consume…
Descriptors: Chemistry, Science Instruction, Electronics, Color
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
Faridaddin Vahdatikhaki; Ilona Friso-van den Bos; Sajad Mowlaei; Bas Kollöffel – European Journal of Engineering Education, 2024
Practical laboratory sessions are essential for engineering education, demanding efficient use of limited time. In recent years, Virtual Reality (VR) technologies have introduced Virtual Laboratories (VLs), offering the potential to enhance students' educational experience. Despite their potential, VLs are rarely utilised in civil engineering…
Descriptors: Laboratories, Virtual Classrooms, Gamification, Computer Simulation
Lynn E. Krushinski; Thomas B. Clarke; Jeffrey E. Dick – Journal of Chemical Education, 2024
Electrochemistry plays a crucial role in our everyday lives. It allows us to power our phones and cars and allows for the real-time monitoring of blood glucose levels. While electrochemistry is of vital importance and is a long-established field of chemistry, it is often neglected in modern curricula for STEM courses. Herein, we show that hands-on…
Descriptors: Chemistry, Science Instruction, STEM Education, Hands on Science

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