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Paul G. Waddell; Michael R. Probert; Natalie T. Johnson – Journal of Chemical Education, 2024
A new teaching resource comprised of raw X-ray diffraction data sets from crystallography experiments has been compiled. The aim of this resource is to provide a tool with which to plug the teaching gap between crystals and chemical structures present at various levels of education, as well as providing examples for early stage researchers and…
Descriptors: Science Education, Science Instruction, Teaching Methods, Chemistry
Caryn Babaian; Sudhir Kumar – American Biology Teacher, 2024
When students think of evolution, they might imagine T. rex, or perhaps an abiotic scene of sizzling electrical storms and harsh reducing atmospheres, an Earth that looks like a lunar landscape. Natural selection automatically elicits responses that include "survival of the fittest," and "descent with modification," and with…
Descriptors: Evolution, Science Education, Cancer, Teaching Methods
Dewei Ye; Jiali Qian; Wangyi Xu; Yuyang Lu; Shuli Wang; Longhai Xiao; Lei Bao – Physical Review Physics Education Research, 2024
The galvanic cell is a typical interdisciplinary topic, which is primarily taught in chemistry but its underpinning is closely related to physics. Student learning in galvanic cell has been extensively studied in chemistry education, which has revealed a large number of misconceptions that are difficult to change through traditional instruction. A…
Descriptors: Physics, Science Instruction, Teaching Methods, Cytology
Eve Manz – NSTA Press, 2025
"Productive Uncertainty in Science Education" provides the support that teachers and students need for more complex science investigations. Science is driven by the need to manage uncertainty--uncertainty about how to explain the world, but also how to represent the world in an investigation, what to measure, and how to convince peers to…
Descriptors: Science Education, Teaching Methods, Scientific Concepts, Concept Formation
Esther Kataate Namakula; Valarie L. Akerson – Journal of Education in Science, Environment and Health, 2024
The study explored the impact of peer critiquing on preservice teachers' understanding of the nature of science, scientific inquiry, and argumentation in an undergraduate science content course. The aim was to investigate innovative teaching strategies that enhance preservice teachers' comprehension of these key aspects. This study showcased…
Descriptors: Peer Evaluation, Science Process Skills, Inquiry, Preservice Teachers
Shimelis Kebede Kekeba; Abera Gure; Teklu Tafesse Olkaba – Interactive Technology and Smart Education, 2025
Purpose: The purpose of this study was to investigate the impact of using a jigsaw learning strategy integrated with computer simulation (JLSICS) on the academic achievement and attitudes of students, along with exploring the relationships between them in the process of learning about acids and bases. Design/methodology/approach: The research…
Descriptors: Teaching Methods, Learning Strategies, Computer Simulation, Technology Uses in Education
Melaku, Samuel; Dabke, Rajeev B. – Journal of Chemical Education, 2021
Interlocking toy building blocks (e.g., Lego) as chemistry teaching modules are presented. Interlocking building blocks were assembled on a baseplate to depict chemistry concepts of Lewis structures, chemical bonding, conjugate acid-base pairs, types of chemical reactions, irregularity in ionization energy trends, and the decay of a radioactive…
Descriptors: Toys, Teaching Methods, Undergraduate Students, Introductory Courses
Yifei Chen; Longfei Cai; Jiaye Gong; Heyun Lai – Journal of Chemical Education, 2023
Photocatalytic degradation of methylene blue was implemented as a laboratory experiment by the undergraduate students majoring in chemical education using graphene (GR)/TiO[subscript 2] as a catalyst. These chemistry preservice teachers synthesized a GR/TiO[subscript 2] composite and used it to degrade wastewater containing methylene blue under…
Descriptors: Chemistry, Laboratory Experiments, Preservice Teachers, Scientific Concepts
Ackerson, Bruce J. – Physics Teacher, 2019
Electromagnetic induction, represented by either Faraday's law or the Lorentz force law, produces many paradoxes requiring careful examination and application of these laws. The paradoxical example of induction, presented herein, arose in a class and is resolved within the framework of special relativity.
Descriptors: Physics, Science Instruction, Teaching Methods, Scientific Concepts
Hughes, Theo; Kersting, Magdalena – Physics Education, 2021
Recently, the physics education community has taken a keen interest in modernising physics education. However, while topics in modern physics have great potential to engage students, these topics are abstract and hard-to-visualise. Therefore, many students hold mistaken pictures and misconceptions, which can impede learning. In this article, we…
Descriptors: Physics, Scientific Concepts, Time, Misconceptions
Young, Charles G.; Volaric, Sioe See – Journal of Chemical Education, 2020
This paper describes an upper-division undergraduate exercise involving the synthesis and iodometric and infrared spectroscopic analysis of the peroxide double salt [Zn(NH[subscript 3])[subscript 4]][Mo(O[subscript 2])[subscript 4]]. Here, iodometric methods are employed to determine the peroxide content of the compound, a procedure widely used…
Descriptors: Spectroscopy, Science Instruction, Chemistry, Undergraduate Students
Pugh, Kevin J. – Teachers College Press, 2020
Use this book to move science learning out of the classroom and into everyday life. Science has a profound capacity to transform how we experience the world, but it can be challenging to foster transformative experiences. When it comes to the science classroom, too often the Las Vegas slogan applies: What happens here stays here. Based on over 20…
Descriptors: Science Education, Transformative Learning, Experiential Learning, Science Instruction
Christopher Harris; Joe Krajcik; James Pellegrino – NSTA Press, 2024
Imagine handing out assessments that spark enthusiasm rather than dread. In six easy-to-follow steps, this book empowers science teachers to create tasks that guide students to use their knowledge, not just memorize facts. The NGSA design process transforms assessments into valuable classroom tools that teachers can use to chart how students'…
Descriptors: Standards, Science Education, Teaching Methods, Teaching Guides
Minkin, Leonid; Whiting, Percy – Physics Teacher, 2019
The motion of a bead along a path restricted to straight lines (restricted brachistochrone), sliding without friction from rest and accelerated by gravity, is considered. For two shapes of path, the geometry of the route optimized to provide the least travel time from one point to another is obtained. The bead's travel times, path lengths, and…
Descriptors: Physics, Science Instruction, Motion, Scientific Concepts
Mixter, Philip F.; Kleinschmit, Adam J.; Lal, Archana; Vanniasinkam, Thiru; Condry, Danielle L. J.; Taylor, Rebekah T.; Justement, Louis B.; Pandey, Sumali – Journal of Microbiology & Biology Education, 2023
Immune literacy--the ability to hear, learn, read, write, explain, and discuss immunological content with varied audiences--has become critically important in recent years. Yet, with its complex terminology and discipline-specific concepts, educating individuals about the immune system and its role in health and disease may seem daunting. Here, we…
Descriptors: Epidemiology, Scientific Concepts, Teaching Methods, Science Instruction