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Alexey Kopyl; Yuki Yew; Jian Wern Ong; Thomas Hiscox; Calem Young; Murat Muradoglu; Tuck Wah Ng – Journal of Chemical Education, 2024
Efforts to encourage laboratory automation through student access to and usage of commercial equipment are hampered by prohibitive acquisition costs. Here, an automated liquid handler using manual pipettes was developed to operate on a commercial hobbyist 3D printer at a cost of US $325. Arising from an iterative design process that ensured…
Descriptors: Science Laboratories, Laboratory Equipment, Computer Peripherals, Printing
Sadegh-cheri, Mohammad – Journal of Chemical Education, 2022
The accurate and precise transport of the small amounts of the liquid by the syringe pump is widely used in many fields. In this paper, an Arduino-based syringe pump is fabricated using the computer DVD (digital versatile disc) drive. For the fabrication of the syringe pump, low-cost electronic components such as an Arduino microcontroller, a…
Descriptors: Science Instruction, Laboratory Equipment, Video Technology, Computer Peripherals
Jiro Kondo; Shota Nakamura – Journal of Chemical Education, 2023
The use of molecular models in chemistry and biochemistry classes is very effective in helping students understand covalent bonds and the chemical structure of molecules. However, conventional molecular models cannot represent intermolecular interactions such as hydrogen bonds and electrostatic interactions. Herein, we describe 3D printed…
Descriptors: Chemistry, Molecular Structure, Scientific Concepts, Biochemistry
Schmidt, Benjamin; Pacholok, Michaela; King, David; Kariuki, James – Journal of Chemical Education, 2022
Many electroanalytical techniques utilize three-electrode systems consisting of reference, counter, and working electrodes. These electrodes are often expensive when purchased commercially, making low-cost alternatives a vital area of research. Cheaper alternatives have been proposed; however, they often require time-consuming assembly techniques…
Descriptors: Computer Peripherals, Printing, Technology Uses in Education, Chemistry
Bram Bruininks; Ludo B. F. Juurlink – Journal of Chemical Education, 2022
We present the design of a periscope-type VIS spectrometer for educational purposes that combines strong features from various earlier designs and adds new ones. Three 3D-printed pieces that hold a small thin mirror sheet, a 1/8th wedge of a DVD, and two razor blades are easily assembled and facilitate insight into its construction. A new feature…
Descriptors: Computer Peripherals, Printing, Handheld Devices, Spectroscopy
Renner, Melissa; Griesbeck, Axel – Journal of Chemical Education, 2020
Due to immense cost reduction and routine commercial availability, 3D printing has become the cutting-edge technology with enormous potential--also for educational and applied chemistry. It opens the opportunity to print custom-made reactors, such as (micro) flow reactors. In addition, 3D-printing technology can simplify chemical reactions, such…
Descriptors: Printing, Computer Peripherals, Models, Chemistry
Ionel Popa; Florin Saitis – Journal of Chemical Education, 2022
Proteins are "magical" workers inside our body, as they accomplish most of the cellular functions. Here we report on a novel approach to teach protein folding and unfolding, using magnets and flexible 3D-printed protein structures. To illustrate this physical process, we used colored circular magnets designed for whiteboards, connected…
Descriptors: Magnets, Printing, Computer Peripherals, Simulation
Ryan He; Melinda Tidrick – Journal of Chemical Education, 2023
An increased reliance on nanotechnology and recent developments in materials fabrication coincide with a greater prevalence of 3D printers in high schools. We developed this lesson to foster an exploration of interdisciplinary fields and to increase access to recent advances in materials chemistry through two different learning modules. The lab…
Descriptors: Chemistry, High School Students, Computer Peripherals, Printing
Pinger, Cody W.; Geiger, Morgan K.; Spence, Dana M. – Journal of Chemical Education, 2020
Wide accessibility and a broad range of applications have made 3D-printers a commonplace tool in the science community. From tier-one research institutions to community public libraries and high schools, 3D-printers are being used to enrich STEM education through a variety of learning techniques and experiences. Reports of 3D-printed models for…
Descriptors: Computer Peripherals, Science Instruction, Teaching Methods, Visualization
Huanyu Ren; Jiajun Zhang; Liqi Peng; Huihui Li; Zhi Su – Journal of Chemical Education, 2023
This work presents a homemade multirole 3D-printed modular spectrometer(MPMS), which can be easily assembled like bricks and expanded with several modules to measure different types of spectra, such as UV-vis absorption, fluorescence emission, flame emission/absorption, glow discharge, and even Raman spectra. The spectrometer is designed to be…
Descriptors: Printing, Computer Peripherals, Technology Uses in Education, Spectroscopy
Michelle Garcia; Frances A. O'Leary; Daniel J. O'Leary – Journal of Chemical Education, 2023
This report outlines an approach for preparing 5-color 3D printed plastic models of molecular orbitals and electron density surfaces using a hobby-grade 3D printer. Instructions are provided for preparing 3D orbital and electron density surface (EDS) models using solid or mesh representations in ground state and transition state structures. We…
Descriptors: Science Education, Hands on Science, Computer Peripherals, Printing
Oliveira, Karol N.; Naujorks, Amanda C.; Freitas, Welica P. S.; Goncalves, Alem-Mar B.; Calheiro, Lisiane B. – Journal of Chemical Education, 2021
The use of radioactive isotopes in radioactive decay studies can be a problem due to the manipulation of radioisotopes, expensive equipment, and the difficulty of finding samples with a reasonable half-life (between 1 and 10 min). In this paper, we present a mock-up of a Geiger-Mu¨ller counter plus three fictitious radioisotopes. They form an…
Descriptors: Printing, Computer Peripherals, Models, Simulation
Accessible 3D Printing: Multicolor Molecular Models From Consumer-Grade, Single Filament 3D Printers
H. Martin; E. Eisner; J. K. Klosterman – Journal of Chemical Education, 2023
3D printers have facilitated a wealth of 3D printed molecular models illustrating key structural concepts for student learning. However, general adoption of 3D printed models in the organic chemistry classroom proceeds slowly as the majority of consumer-grade 3D (fused deposition modeling (FDM) and resin) printers are inherently monochromatic,…
Descriptors: Printing, Computer Peripherals, Molecular Structure, Organic Chemistry
Singhal, Ishu; Balaji, B. S. – Journal of Chemical Education, 2022
Learning to write chemical formulas of compounds is a basic and indispensable part of understanding and studying chemistry. However, it is hard for students with visual impairment to assess and learn molecular arrangements and formulas. For the convenience of such students with special needs, it is necessary to come up with easy, comprehensive,…
Descriptors: Open Source Technology, Chemistry, Computer Peripherals, Visual Impairments
Methin Intaraprasit; Piyathida Tawornparcha; Pann Veerapong; Taweetham Limpanuparb – Journal of Chemical Education, 2023
Experiments involving electrochemical cells are of great pedagogical value for learners of introductory chemistry. This paper discusses an improved experimental kit made from a 24-well cell culture plate and a 3D-printed scaffold. The current design focuses not only on the accuracy of the result but also on the intuitiveness of the wiring work and…
Descriptors: Chemistry, Printing, Computer Peripherals, Accuracy