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Williams, Hollis – Physics Education, 2021
We outline the physics involved in the use of scanning electron microscopy (SEM) and modernise the usual textbook treatment by explaining how one can now obtain high-quality images with non-conductive specimens. As a concrete example of an application in biology, we provide several magnification series of a flea obtained using SEM.
Descriptors: Spectroscopy, Physics, Quantum Mechanics, Optics
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Vera, Francisco; Ortiz, Manuel; Villanueva, Jaime; Horta-Rangel, Francisco Antonio – Physics Teacher, 2021
In this paper we explain how to build a very sensitive force table using 3D-printed parts. The key component of this apparatus is a simple sensitive pulley that, together with the other components, can be printed in one day (one hour per pulley, 17 hours for a complete three-pulleys table) at the cost of 160 g of plastic filament. This force table…
Descriptors: Computer Simulation, Printing, Laboratory Equipment, Design
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Johnson, Sara E.; West, Joseph K. – Journal of Chemical Education, 2021
Inert gas manifolds for the handling of air-sensitive materials are commonplace in the inorganic chemistry curriculum as well as in research laboratories specializing in inorganic and organometallic synthesis. Mercury bubblers are ubiquitously implemented for maintaining a positive internal pressure for air-free manifold systems, commonly known as…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Laboratory Equipment
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Guangjie Yan; Yuteng Zhang; Alexis Allamprese; Kameron N. Brooks; Wenkai Chen; Shudan Yan; Tai-Yen Chen – Journal of Chemical Education, 2024
Single-molecule localization microscopy (SMLM) has revolutionized our ability to visualize cellular structures, offering unprecedented detail. However, the intricate biophysical principles that underlie SMLM can be daunting for newcomers, particularly undergraduate and graduate students. To address this challenge, we introduce the fundamental…
Descriptors: Molecular Structure, Chemistry, Science Instruction, Laboratory Equipment
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Minji Yun; Sang-hak Jeon; Kent J. Crippen – Journal of Science Education and Technology, 2025
Observation serves as a cornerstone of scientific inquiry, particularly in science education. However, microscopy classes, essential for fostering observational skills, often face limited equipment access and technical difficulties. Such challenges can influence students' academic emotions, which play a crucial role in learning. In response to…
Descriptors: Handheld Devices, Telecommunications, Laboratory Equipment, Grade 7
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Salvador Gallegos-Martínez; Kristen Aideé Pérez-Alvarez; Grissel Trujillo-de Santiago; Mario Moisés Alvarez – Biomedical Engineering Education, 2025
Purpose: Hands-on training in tissue engineering is often associated with specialized labs and expensive equipment, such as CO[subscript 2] incubators. To minimize the use of costly commercial incubators and provide a more vivid engineering experience in a biology lab, we present a hands-on project that introduces medium to large groups of…
Descriptors: Cancer, Human Body, Engineering, Laboratory Equipment
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Heidi L. Lujan; Stephen E. DiCarlo – Advances in Physiology Education, 2025
Blood pressure regulation keeps us alive, yet its underlying mechanisms often remain abstract for students. Heart rate, stroke volume, vascular resistance, and compliance interact continuously to shape arterial pressure, but in many classrooms, these variables feel disconnected from observable outcomes. To bridge this gap, we developed a simple,…
Descriptors: Physiology, Hypertension, Human Body, Models
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Rasikh Tariq; Fidel Antonio Casillas-Muñoz; Syed Tauseef Hassan; Maria Soledad Ramírez-Montoya – Journal of Social Studies Education Research, 2024
The modern Industrial Revolution has ushered in a wave of technological advancements, including the proliferation of over 20 billion digital identities associated with the Internet of Things (IoT) devices worldwide. Amid this complexity, IoT has emerged as a beacon of hope, offering multitudinous solutions from the perspectives of school…
Descriptors: Internet, Networks, Instructional Materials, Distance Education
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Federico Magnani; Elena Demaria; Francesca Ambrosi; Claudia Sala; Gianandrea Pasquinelli; Michelangelo Fiorentino; Giorgia Gri – Advances in Physiology Education, 2025
Because of the recent pandemic, new teaching methods have been trialed, even in traditional disciplines such as histopathology that typically involve extensive hands-on laboratory work. In this study, we investigated the effects of three different learning modalities in histopathology teaching: optical microscopy, in-class virtual microscopy (VM),…
Descriptors: Pathology, Online Courses, Lecture Method, In Person Learning
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Abhay Pal; Subhojit Sen – Biochemistry and Molecular Biology Education, 2025
The Ouchterlony double immunodiffusion technique is used as a teaching tool for studying immune responses and exemplifying differences in antigen-antibody reactions. Although commonplace in undergraduate labs, standardized commercial kits limit learning experiences because they have fixed modalities of use, a low shelf-life, and impose budgetary…
Descriptors: Immunization Programs, College Science, Science Laboratories, Cost Effectiveness
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Joshua H. Williams; Musbau Gbadomosi; Andrew B. Greytak; Michael L. Myrick – Journal of Chemical Education, 2023
We describe an experiment in which students use research-grade instrumentation to collect gas adsorption data in triplicate in a single 3 h laboratory period. The experiment reinforces the thermodynamic concepts taught in upper level physical chemistry courses and hands-on experience with instrumentation used in research laboratories. The speed of…
Descriptors: Chemistry, Science Instruction, Laboratory Experiments, Thermodynamics
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Lida Khalafi; Nastaran Nikzad; Asayiel Alhajeri; Brandon Bacon; Karla Alvarado; Mohammad Rafiee – Journal of Chemical Education, 2023
The area near the electrode surface is called the diffusion layer, and to understand electrochemistry, it is crucial that students have a knowledge of the phenomena occurring at the diffusion layer. Here, we present a demonstration and activity to visualize and analyze the expansion of a micrometer-sized diffusion layer. The electrode process…
Descriptors: Science Education, Chemistry, Laboratory Equipment, Scientific Concepts
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Haertel, Hermann – Physics Teacher, 2022
The question of how the processes around the Faraday generator with its rotating magnet should be interpreted has been controversial since its discovery by Faraday. Does the magnetic field rotate together with the rotating magnet or does it remain stationary? Furthermore, does one only need Faraday's flux law to interpret inductive processes, or…
Descriptors: Science Instruction, Physics, Laboratory Equipment, Magnets
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Maurye, Praveen; Basu, Arpita; Jana, Chayna; Devi, Manoharmayum Shaya; Kumari, Kavita; Naskar, Malay – Biochemistry and Molecular Biology Education, 2022
Gel electrophoresis (GE) is the most preferred and adapted technique for the separation and identification of biological molecules like proteins/peptides and nucleic acids from diverse types of organisms. All over the world, researchers, educators, and students aspiring to work in biochemistry and molecular biology disciplines use the…
Descriptors: High School Students, Biochemistry, Molecular Biology, Laboratory Procedures
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Natalya St. Clair; A. Lynn Stephens; Hee-Sun Lee – International Journal of Science Education, 2024
This case study examines how material resistance (limitations posed by the physical world) and graph interpretation intersected during a high school biology investigation using digital sensors. We use an extended episode from a small group to illustrate how, in an inquiry-based unit, measuring near the resolution limit of a sensor caused scaling…
Descriptors: Scientific Concepts, Biology, Laboratory Equipment, Science Instruction
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