Publication Date
In 2025 | 0 |
Since 2024 | 0 |
Since 2021 (last 5 years) | 0 |
Since 2016 (last 10 years) | 9 |
Since 2006 (last 20 years) | 11 |
Descriptor
Computer Peripherals | 11 |
Molecular Structure | 11 |
Teaching Methods | 11 |
Science Instruction | 10 |
Chemistry | 6 |
Computer Software | 4 |
Printing | 4 |
Scientific Concepts | 4 |
Visualization | 4 |
Biochemistry | 3 |
Hands on Science | 3 |
More ▼ |
Source
Journal of Chemical Education | 6 |
Biochemistry and Molecular… | 3 |
Chemistry Education Research… | 1 |
Physics Education | 1 |
Author
Akinleye, Olukemi P. | 1 |
Balaji, B. S. | 1 |
Berkmen, Melanie B. | 1 |
Booth, Christine S. | 1 |
Castiaux, Andre | 1 |
Couch, Brian A. | 1 |
Dijk, Karin | 1 |
Fogarty, Keir H. | 1 |
Griffith, Kaitlyn M. | 1 |
Helikar, Tomáš | 1 |
Howell, Michelle E. | 1 |
More ▼ |
Publication Type
Journal Articles | 11 |
Reports - Descriptive | 8 |
Reports - Research | 3 |
Education Level
Higher Education | 5 |
Postsecondary Education | 4 |
High Schools | 2 |
Secondary Education | 2 |
Audience
Teachers | 1 |
Location
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Niece, Brian K. – Journal of Chemical Education, 2019
Models were prepared by 3D printing that can be used to demonstrate the operations required for the study of molecular symmetry. The models were designed to emphasize the order and locations of rotation axes and to clearly illustrate the more abstract reflection and improper rotation axes. The models were well-received by students in a course on…
Descriptors: Molecular Structure, Computer Peripherals, Science Instruction, Teaching Methods
Peterson, Celeste N.; Tavana, Sara Z.; Akinleye, Olukemi P.; Johnson, Walter H.; Berkmen, Melanie B. – Biochemistry and Molecular Biology Education, 2020
Biology and biochemistry students must learn to visualize and comprehend the complex three-dimensional (3D) structures of macromolecules such as proteins or DNA. However, most tools available for teaching biomolecular structures typically operate in two dimensions. Here, we present protocols and pedagogical approaches for using immersive augmented…
Descriptors: Teaching Methods, Molecular Structure, Computer Software, Biochemistry
Savchenkov, Anton V. – Journal of Chemical Education, 2020
Sets of models of molecules (which are of interest for teaching molecular structure, symmetry, and related topics in many chemical disciplines) were prepared and made available either for self-directed 3D-printing or through the 3D-printing company Shapeways providing 3D-printing as a service. This allows teachers to save time on searching for…
Descriptors: Computer Peripherals, Printing, Hands on Science, Manipulative Materials
Singhal, Ishu; Balaji, B. S. – Journal of Chemical Education, 2020
An open-source repository of basic building block models design files for writing chemical formulas, equations, and ionic states are provided. Writing chemical symbols, molecules, and ions in their correct oxidation state or valency in chemical equations is an essential and integral part of learning. For a visually impaired student, it is very…
Descriptors: Chemistry, Science Education, Nuclear Physics, Molecular Structure
Lee, Ning Yuan; Tucker-Kellogg, Greg – Biochemistry and Molecular Biology Education, 2020
Understanding macromolecular structures is essential for biology education. Augmented reality (AR) applications have shown promise in science, technology, engineering, and mathematics (STEM) education, but are not widely used for protein visualization. While there are some tools for AR protein visualization, none of them are accessible to the…
Descriptors: Visualization, Molecular Structure, Computer Simulation, STEM Education
Pinger, Cody W.; Castiaux, Andre; Speed, Savannah; Spence, Dana M. – Journal of Chemical Education, 2018
Plasma protein binding measurements are an important aspect of pharmacology and drug development. Therefore, performing these measurements can provide a valuable and highly practical learning experience for students across many scientific disciplines. Here, we describe the design and characterization of a 3D-printed device capable of performing…
Descriptors: Chemistry, Science Instruction, Computer Peripherals, Pharmacology
de Cataldo, Riccardo; Griffith, Kaitlyn M.; Fogarty, Keir H. – Journal of Chemical Education, 2018
Introductory chemistry students encounter the concept of hybrid orbitals as a transition from atomic orbitals to molecular bonding. The principal purpose of learning hybridization in the undergraduate curriculum is to impart an understanding of the origins of molecular bonding and geometry. Physical models of both individual hybrid orbitals and…
Descriptors: Introductory Courses, Science Instruction, Visualization, Molecular Structure
Howell, Michelle E.; Booth, Christine S.; Sikich, Sharmin M.; Helikar, Tomáš; Roston, Rebecca L.; Couch, Brian A.; Dijk, Karin – Biochemistry and Molecular Biology Education, 2019
Understanding the relationship between molecular structure and function represents an important goal of undergraduate life sciences. Although evidence suggests that handling physical models supports gains in student understanding of structure-function relationships, such models have not been widely implemented in biochemistry classrooms.…
Descriptors: Biochemistry, Molecular Structure, Genetics, Biological Sciences
Woo, Yura; Ju, Young-Gu – Physics Education, 2019
In this paper, we present the details of the development of a smartphone spectrometer for education using a 3D printer and characterized the performance by comparison with a paper craft spectrometer. The optical design and the narrow slit used in the build resulted in the formation of accurate images of the slit on the image sensor leading to a…
Descriptors: Telecommunications, Handheld Devices, Educational Technology, Technology Uses in Education
Scalfani, Vincent F.; Vaid, Thomas P. – Journal of Chemical Education, 2014
Tangible models help students and researchers visualize chemical structures in three dimensions (3D). 3D printing offers a unique and straightforward approach to fabricate plastic 3D models of molecules and extended solids. In this article, we prepared a series of digital 3D design files of molecular structures that will be useful for teaching…
Descriptors: Computer Peripherals, Educational Technology, Technology Uses in Education, Science Instruction
Warfa, Abdi-Rizak M.; Roehrig, Gillian H.; Schneider, Jamie L.; Nyachwaya, James – Chemistry Education Research and Practice, 2014
A significant body of the literature in science education examines students' conceptions of the dissolution of ionic solids in water, often showing that students lack proper understanding of the particulate nature of dissolving materials as well as holding numerous misconceptions about the dissolution process. Consequently, chemical educators have…
Descriptors: Chemistry, Science Instruction, Classroom Communication, Computer Peripherals