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Ronghui Que; Wenjie Ding; Sha Sha – Journal of Chemical Education, 2022
To present the difference in oxidizing strength in concentrated and dilute nitric acid reacting with copper, a simple, facile demonstration of these reactions is designed using a waste plastic bottle, plastic droppers, and syringes, which are costless and easily assembled. This new version can be used to demonstrate the difference in oxidizing…
Descriptors: Chemistry, Science Education, Scientific Concepts, Science Experiments
Bradley J. Morris; Jacob Cason; Katie Asaro; Yin Zhang; Michelle Rivers; Whitney Owens; John Dunlosky – International Journal of Science Education, 2025
Understanding experimental design (e.g. control of variable strategy or CVS) is foundational for scientific reasoning. Previous research has demonstrated that demonstrations with cognitive conflict (e.g. asking students to evaluate and explain different experimental designs) are effective in promoting children's scientific reasoning, however, the…
Descriptors: Science Education, Informal Education, Intervention, Foods Instruction
Mowrer, Emily R.; Potratz, Jeffrey P. – Journal of Chemical Education, 2020
Categorizing the various levels of protein and nucleic acid structures is a relatively straightforward concept students understand quickly when shown representative structural images. However, keeping in mind the idea of primary, secondary, and tertiary structure proves more difficult when students are in the laboratory setting simply looking at a…
Descriptors: Genetics, Teaching Methods, Science Education, Laboratory Experiments
Federico De Lorenzis; Alessandro Visconti; Simone Restivo; Francesca Mazzini; Serena Esposito; Silvia Fraterrigo Garofalo; Luca Marmo; Debora Fino; Fabrizio Lamberti – Smart Learning Environments, 2024
The use of Virtual Reality (VR) in education is getting more and more common, especially when hands-on learning experiences have to be delivered. With VR it becomes possible, e.g., to simulate dangerous or costly procedures that could hardly be implemented in real settings. However, engaging large classes in immersive laboratory activities may be…
Descriptors: Computer Simulation, Cooperative Learning, Chemistry, Science Education
Kirchhoff, Tim; Randler, Christoph; Großmann, Nadine – Journal of Research in Science Teaching, 2023
All over the world, educational science outreach programs in which students can perform laboratory work have been developed. A common goal of these programs is to counteract students' decreasing motivation in STEM education. In Germany, several outreach science labs have been established over the last 20 years. It is assumed that the…
Descriptors: Outreach Programs, Science Education, Science Experiments, Student Needs
Aziz Amaaz; Abderrahman Mouradi; Moahamed Erradi – Journal of Baltic Science Education, 2024
Despite the importance of physics practical work in higher education, its implementation is often hampered by various constraints and problems. Technology, such as learning management systems (LMS) and mobile learning, can offer solutions to some of these problems and enrich students' learning experiences. Therefore, this research proposes a model…
Descriptors: Physics, Science Education, Learning Management Systems, Chemistry
Leila S. V. Barbosa; Pietra Strauch; Daniele C. M. B. Santos; Maria Grac¸as A. Korn; Rodolfo M. M. Santana – Journal of Chemical Education, 2023
During the pandemic caused by SARS-CoV-2 (COVID-19), a paper analytical device (PAD) was proposed as a tool for remote laboratory classes for undergraduate chemistry to teach calibration curve concepts. For this experiment, students were taught how to prepare a PAD, calibrate standard solutions, construct a calibration curve, and treat data…
Descriptors: Handicrafts, Paper (Material), Visual Aids, Color
Luo, Anling; Zheng, Youli; Chen, Xinxin; Cong, Fengsong – Biochemistry and Molecular Biology Education, 2018
Laboratory exercises focused on protein quantification are frequently conducted in traditional undergraduate biochemistry laboratory curriculum. The laboratory course described here is designed to provide students with experience in measurement of protein content in milk powder by moving reaction boundary titration (MRBT), a new rapid technique…
Descriptors: Undergraduate Students, Laboratory Experiments, Comparative Analysis, Biochemistry
Al-Salmani, Fatema; Johnson, Jordan; Thacker, Beth – Physical Review Physics Education Research, 2023
We present an analysis of students' thinking skills as evidenced by free-response exam problems during the COVID-19 pandemic. We compare two inquiry-based, laboratory-based classical mechanics courses, one taught online and one taught in person during the pandemic, and two inquiry-based, laboratory-based electricity and magnetism courses, one…
Descriptors: Thinking Skills, Evaluation Methods, Comparative Analysis, Inquiry
Val Lazarev; Adam Schellinger; Jenna Zacamy – Empirical Education Inc., 2023
This report leverages state educational agency data to explore the association between Alabama Science in Motion (ASIM) implementation and student outcomes. We conducted this study in Alabama to evaluate the potential of teacher implementation of ASIM lab activities to improve high school level student achievement in science. This study follows a…
Descriptors: Science Education, Science Achievement, Institutional Characteristics, Student Characteristics
Beranek-Knauer, Heide; Walter, Hildrun; Paleczek, Dominik; Eder, Lucas; Jungwirth, Kerstin; Jungwirth, Helmut – International Journal of Science Education, Part B: Communication and Public Engagement, 2020
One of the most urgent matters in current medicine is the preservation of antibiotic treatment options due to an increasing threat of antibiotic resistance in pathogenic microorganisms. Therefore, increasing awareness by adapted science education and communication regarding this topic is of the utmost importance. This article shows that an…
Descriptors: Scientific Attitudes, Drug Therapy, Microbiology, Biochemistry
Chang, Hsin-Yi – Interactive Learning Environments, 2017
Two investigations were conducted in this study. In the first experiment, the effects of two types of interactivity with a computer simulation were compared: experimentation versus observation interactivity. Experimentation interactivity allows students to use simulations to conduct virtual experiments, whereas observation interactivity allows…
Descriptors: Computer Simulation, Interaction, Scaffolding (Teaching Technique), Experiments
Drummond, Gordon B.; Vowler, Sarah L. – Advances in Physiology Education, 2013
This final article in the authors' series draws together some of the ideas they have addressed, and suggests important "ingredients" that make a paper palatable to the reviewer and the reader. These ingredients include: (1) Describe the methods; (2) Plan the analysis; (3) Design the study; (4) Use the correct experimental unit; and (5)…
Descriptors: Experiments, Physiology, Science Education, Science Instruction
An, Song A.; Zhang, Meilan; Tillman, Daniel A.; Robertson, William; Siemssen, Annette; Paez, Carlos R. – European Journal of Science and Mathematics Education, 2016
The purpose of this study was to investigate differences between science lessons taught by Chinese astronauts in a space shuttle and those taught by American astronauts in a space shuttle, both of whom conducted experiments and demonstrations of science activities in a microgravity space environment. The study examined the instructional structure…
Descriptors: Virtual Classrooms, Science Education, Science Instruction, Space Exploration
Amrani, D. – Physics Education, 2013
This paper deals with the comparison of sound speed measurements in air using two types of sensor that are widely employed in physics and engineering education, namely a pressure sensor and a sound sensor. A computer-based laboratory with pressure and sound sensors was used to carry out measurements of air through a 60 ml syringe. The fast Fourier…
Descriptors: Physics, Engineering Education, Comparative Analysis, Intervals