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Jordan M. Renna; Katelyn B. Sondereker; Christopher L. Cors; Sara N. Chaszeyka; Kristin N. Keenan; Michael R. Corigliano; Lindsey A. Milgrom; Jessica R. Onyak; Edward J. Hamad; Maureen E. Stabio – Anatomical Sciences Education, 2024
The reconstruction of two-dimensional (2D) slices to three-dimensional (3D) digital anatomical models requires technical skills and software that are becoming increasingly important to the modern anatomist, but these skills are rarely taught in undergraduate science classrooms. Furthermore, learning opportunities that allow students to…
Descriptors: Anatomy, Undergraduate Students, Science Instruction, Models
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
Peter Lampert; Peter Pany; Niklas Gericke – Journal of Biological Education, 2025
Sustaining a broad diversity of plants is key for a sustainable future. For instance, providing a variety of flowering plants in urban and agricultural landscapes mitigates the current decline of pollinators and biodiversity in general. Therefore, educating about the diversity of flowering plants has high current relevance for biology and…
Descriptors: Printing, Plants (Botany), Hands on Science, Botany
Bo Ding; Ju Wang; Yaxin Mao; Tian Meng; Yumei Luo; Xiaomei Xu; Zhanqing Lv; Mian Zhou; Qiuying Yang – Biochemistry and Molecular Biology Education, 2024
Fluorescence-related experimental techniques play an important role in biochemistry, molecular biology, and cell biology. However, fluorescence-related experiments are rarely included in the laboratory courses of most Chinese universities. This is mainly due to the conflict between large class size (50-60 students in one room) and funding/space…
Descriptors: Science Education, Science Laboratories, Laboratory Training, Laboratory Procedures
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
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
Pap, Levente G. – Journal of Chemical Education, 2021
In early 2020, the COVID-19 pandemic compelled the field of education to swiftly redesign courses for hybrid and online teaching environments. The lack of in-person learning prompted professionals to rapidly incorporate unique and previously never-seen teaching practices in numerous different fields. One of the biggest challenges that educators…
Descriptors: Printing, Manipulative Materials, Distance Education, Blended Learning
Haruka Honda; Noritaka Miyamoto; Hisayuki Miyajima; Yuichi Tanaka – Journal of Chemical Education, 2022
Fluorescence microscopy is a useful tool that allows students to learn the principles of fluorescence visually in chemical and biological fields. However, fluorescence equipment has high purchase and maintenance costs and thus may not be available in educational institutions or insufficiently funded laboratories. In this study, a microscope stage…
Descriptors: Laboratory Equipment, Lighting, Costs, Printing
Yuxin Chen; Yuting Wu; Zhengwen Li; Yanyan Zheng; Binhang Yan; Yi Cheng – Journal of Chemical Education, 2023
The "maker" movement is gaining widespread attention, especially in the field of laboratory education. Here we have built a low-cost, "do-it-yourself", open-source thermal conductivity cell detector (TCD) for chemical laboratory analysis, which is assembled from thermal conductivity gas sensor elements and 3D-printed flow cell…
Descriptors: Costs, Open Educational Resources, Chemistry, Science Laboratories
Derek J. Bischoff; Michael E. Mackay; Sheldon A. Hewlett – Journal of Chemical Education, 2024
Upper-division undergraduate students are introduced to polymer processing using material extrusion fused filament fabrication 3D printing to make poly(lactic acid) (PLA) mechanical testing specimens. Computer aided design and slicing software packages are used to demonstrate the process of preparing 3D computer models for printing. Following the…
Descriptors: Plastics, Mathematical Models, Printing, Computer Peripherals
Beshoy Tawfik; Sam Dancis; Angelique Dueñas – International Journal of Designs for Learning, 2022
Increasing and maintaining student engagement within anatomy education at a pre-collegiate level is a challenge that educators continue to encounter. Finding an appropriate level of difficulty that prepares students for the rigor of undergraduate anatomy education while balancing the need to inspire student interest in STEM-related fields of study…
Descriptors: Anatomy, Printing, Learner Engagement, High School Students
David L. Myers; Marc Hill; Brooke Baughman; Eugene T. Smith – Journal of Chemical Education, 2023
This exercise encompassed the construction and use of a microcontroller-based laser refractometer. The instrument, which does not require a high skill level to build, primarily consisted of a line laser, optical sensor, several 3-D printed parts and printed circuit boards, and a microcontroller development board. Construction and testing of the…
Descriptors: Open Education, Lasers, Shared Resources and Services, Printing
Crowe, Charles D.; Hendrickson-Stives, Albanie K.; Kuhn, Stephanie L.; Jackson, Jennifer B.; Keating, Christine D. – Journal of Chemical Education, 2021
The interaction between water and surfaces is observed in our daily lives and is used in laboratories to study materials properties, such as interfacial tension. Making the connection between fundamental scientific phenomena and everyday observations is a powerful method of highlighting the importance and relevance of science to the K-12…
Descriptors: Middle School Students, Secondary School Science, Chemistry, Design
A^ngelo F. Pitanga; Deley A. N. da Silva; Douglas D. de Menezes; Franciele da S. Mota – Journal of Chemical Education, 2025
This Article aims to share the results of a project that was developed with 80 students from Technical High School of Professional and Technological Education (PTE) at an institute located in the northeast of Brazil. The students discussed the global overview of fuel production and use, and how the introduction of green hydrogen into the market…
Descriptors: Career and Technical Education Schools, High Schools, High School Students, Student Attitudes
Gabriella P. Sugerman; Manuel K. Rausch – Biomedical Engineering Education, 2022
Hands-on experiences in biomechanics and biomaterials courses are an important part of biomedical engineering education. Curricula of those courses often include laboratory modules on material testing and characterization. Unfortunately, large and expensive mechanical testing equipment may not be available to all students, thus limiting students'…
Descriptors: Biomedicine, Engineering, Elective Courses, Open Source Technology