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Showing 1 to 15 of 28 results Save | Export
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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
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Caleb A. Flaim; Sasha K. Seroy – Journal of Geoscience Education, 2024
Thermohaline circulation is a foundational concept in introductory and advanced undergraduate oceanography courses which describes the density-driven flow of water throughout the world's oceans. This concept is commonly taught using two-dimensional (2D) diagrams and graphics. However, students often struggle with the three-dimensional (3D)…
Descriptors: Models, Visual Aids, Climate, Oceanography
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Jinga, Maria-Ruxandra; Lee, Rachel B. Y.; Chan, Kai Lok; Marway, Prabhvir S.; Nandapalan, Krishan; Rhode, Kawal; Kui, Christopher; Lee, Matthew – Anatomical Sciences Education, 2023
Three-dimensional (3D) segmentation, a process involving digitally marking anatomical structures on cross-sectional images such as computed tomography (CT), and 3D printing (3DP) are being increasingly utilized in medical education. Exposure to this technology within medical schools and hospitals remains limited in the United Kingdom. M3dicube UK,…
Descriptors: Computer Simulation, Computer Peripherals, Printing, Anatomy
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Forringer, Edward Russell – Physics Teacher, 2022
In a 1993 book review, E. Pearlstein asks, "Why don't textbook authors begin their discussion of magnetism by talking about magnets? That's what students have experience with." A similar question can be asked, "Why don't professors have students measure the force between permanent magnets in introductory physics labs?" The…
Descriptors: Science Education, Physics, Magnets, Measurement
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Üçgül, Memet; Altiok, Serhat – Education and Information Technologies, 2023
3D printing technology has an influence on a variety of industries such as automotive, engineering, medical, aerospace, sports, fashion, education, and more. In education, 3D printing is used in many different fields like pharmacy, mathematics, biology, chemistry, art education, graphic design, engineering, and even in early childhood and special…
Descriptors: Preservice Teachers, Student Attitudes, Information Technology, Technology Integration
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Álvaro Nolla; Ángela Ibiricu; Angélica Benito – International Journal for Technology in Mathematics Education, 2024
In this paper we present a collaborative 3D modeling and printing experience within a Project Based Learning (PBL) activity, carried out with two different groups of participants: pre-service teachers at the Universidad Autónoma de Madrid (Spain), and school students of Primary and Secondary level taking part in an extra-curricular activity.…
Descriptors: Cooperative Learning, Printing, Computer Peripherals, Educational Technology
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Gruber, Daniel M.; Perez, Tynan; Layug, Bege Q.; Ohama, Margaret; Tran, Lydia; Rojas, Luis Angel Flores; Garcia, A. Xavier; Liu, Gang-yu; Miller, William J. W. – Journal of Chemical Education, 2020
We report a simple means to build a model atomic force microscope (AFM) using 3D printing of thermoplastic materials that are commercially available. The model has many of the key parts of an actual AFM including a z-axis stage, an AFM head with a cantilever assembly, and a laser source that reflects off of the back of the cantilever. Using a…
Descriptors: Laboratory Equipment, Printing, College Science, Undergraduate Study
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Jones, Oliver A. H.; Stevenson, Paul G.; Hameka, Simone C.; Osborne, Dale A.; Taylor, Patrick D.; Spencer, Michelle J. S. – Journal of Chemical Education, 2021
The use of three-dimensional printing in chemistry education has expanded greatly in the past 10 years. The technique has been used to demonstrate a range of concepts including molecular structure, orbitals, and point groups; to produce chemical equipment such as cuvettes and columns; and even to print out mathematical shapes and functions. Here,…
Descriptors: Science Instruction, Chemistry, Spectroscopy, Printing
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Christopher T. Jurgenson – Journal of Chemical Education, 2022
Structures of 10 proteins from the Protein Data Bank were 3D printed as part of an undergraduate biochemistry teaching laboratory. All structures were successfully printed in either a space filling surface representation or a cartoon representation that traces the Ca carbon atoms of each amino acid residue. All structures were printed using…
Descriptors: Printing, Models, Visualization, Biochemistry
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Zaman, Mohd Hairi Mohd; Mokhtar, Mohd Hadri Hafiz; Ibrahim, Mohd Faisal; Huddin, Aqilah Baseri; Beng, Gan Kok – International Journal of Evaluation and Research in Education, 2020
Engineering students at an undergraduate level typically learn the design aspect and concept through lectures and practical sessions using computeraided software. However, the current computer-aided design and engineering (CAD/CAE) course did not expose the students to apply and relate the latest advanced technologies to solve global issues, for…
Descriptors: Foreign Countries, Technology Integration, Printing, Computer Peripherals
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Page, Tom – Journal of Educational Technology, 2018
This paper examines the development of rapid prototyping and how it affects industrial design students. Using a combination of survey and interview sessions the researcher studied how the development of these technologies affected the creative processes that designers use to develop new products, and whether this has had a positive or negative…
Descriptors: Questionnaires, Undergraduate Students, Visual Aids, Computer Assisted Design
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Carroll, Felix A.; Blauch, David N. – Journal of Chemical Education, 2018
Three-dimensional printing was used to prepare a p-bonding model with embedded magnets. The model enables students to have a kinesthetic experience that simulates the energetics of bonding, antibonding, and nonbonding p-orbital interactions.
Descriptors: Science Instruction, Printing, Models, Magnets
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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
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Grumman, Anna S.; Carroll, Felix A. – Journal of Chemical Education, 2019
3D printing was used to prepare space-filling models of electron density isosurfaces and high-resolution molecular models on the basis of the van der Waals radii of atoms. Both model types provide students with kinesthetic simulations of steric effects in bimolecular substitution and elimination reactions. The models can be printed in small sizes…
Descriptors: Molecular Structure, Science Instruction, Printing, Geometric Concepts
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Suchman, Erica L.; McLean, Jennifer; Denham, Steven T.; Shatila, Dana; Prowel, David – HAPS Educator, 2018
We used 3D printing to manufacture models that allow students to explore antibody-epitope interactions. One of the more difficult concepts for students in general microbiology and immunology courses is visualizing the interactions surrounding antibodies and the multiple epitopes found on antigens. We designed and printed antibodies that recognize…
Descriptors: Models, Printing, Microbiology, Lecture Method
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