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Hughes, Stephen; Alkhazraji, Sultan; Zhang, Xiangyu; Nadarajah, Helen; Goodwin, Candice Michelle; Leisemann, Scott; Evason, Chris; Potter, Darryl – Physics Education, 2021
Diffraction is an important phenomenon in physics. This paper describes using a scanning electron microscope (SEM) to produce cross-sectional images of iridescent seashells. When seashell cross-sections are viewed in a SEM, regular structure is seen. Seashells are a good example of a biocomposite material and good natural objects for introducing…
Descriptors: Physics, Science Instruction, Teaching Methods, Case Studies
Yurumezoglu, Kemal – Physics Education, 2020
In this article, a consecutive series of four hands-on experiments are recommended to teach the colors of paint/pigment and their mixtures. These activities, which are effective in learning about how to make a simple observation and help to build argument-based knowledge about colors, offer an integrated and innovative way of teaching colors of…
Descriptors: Physics, Hands on Science, Educational Innovation, Light
Lustrino, Michele – Journal of Education and Learning, 2021
Every substance is associated to emission of electromagnetic radiation whose peaks are essentially influenced by temperature. Hot bodies (i.e., at T >700 °C) emit electromagnetic radiation in the field of visible light (incandescent light). The radiation emitted by cold bodies (i.e., at normal ambient conditions) in the visible light range is…
Descriptors: Physics, Scientific Concepts, Concept Teaching, Mineralogy
Hughes, Stephen; Evason, Chris; Baldwin, Shelley; Nadarajah, Helen; Leisemann, Scott; Wright, Susan – Physics Education, 2020
STEM is about the integration of science, technology, engineering and mathematics. To teach STEM effectively, students need practical examples of subject integration. A good example is the use of an electron microscope in teaching physics and biology. An electron microscope is an instrument in which the operation depends on electromagnetism and…
Descriptors: STEM Education, Laboratory Equipment, Physics, Biology
Haagen-Schützenhöfer, Claudia – Physics Education, 2017
The quality of learning processes is mainly determined by the extent to which students' conceptions are addressed and thus conceptual change is triggered. Colour phenomena are a topic within initial instruction of optics which is challenging. A physically adequate concept of white light is crucial for being able to grasp the processes underlying…
Descriptors: Physics, Science Instruction, Color, Scientific Concepts
Harlow, Jason J. B.; Harrison, David M.; Justason, Michael; Meyertholen, Andrew; Wilson, Brian – Physical Review Physics Education Research, 2017
We measured the personality type of the students in a large introductory physics course of mostly life science students using the True Colors instrument. We found large correlations of personality type with performance on the precourse Force Concept Inventory (FCI), both term tests, the postcourse FCI, and the final examination. We also saw…
Descriptors: Personality Traits, Introductory Courses, Physics, Science Instruction
Tsivitanidou, Olia E.; Constantinou, Costas P.; Labudde, Peter; Rönnebeck, Silke; Ropohl, Mathias – European Journal of Psychology of Education, 2018
The aim of this study was to investigate how reciprocal peer assessment in modeling-based learning can serve as a learning tool for secondary school learners in a physics course. The participants were 22 upper secondary school students from a gymnasium in Switzerland. They were asked to model additive and subtractive color mixing in groups of two,…
Descriptors: Secondary School Students, Peer Evaluation, Feedback (Response), Physics
Grusche, Sascha – International Journal of Science Education, 2017
Prismatic refraction is a classic topic in science education. To investigate how undergraduate students think about prismatic dispersion, and to see how they change their thinking when observing dispersed images, five teaching experiments were done and analysed according to the Model of Educational Reconstruction. For projection through a prism,…
Descriptors: Science Instruction, Physics, Learning Activities, Undergraduate Students
Aguiar, Joana G.; Correia, Paulo R. M. – Chemistry Education Research and Practice, 2016
In this paper, we explore the use of concept maps (Cmaps) as instructional materials prepared by teachers, to foster the understanding of chemistry. We choose fireworks as a macroscopic event to teach basic chemical principles related to the Bohr atomic model and matter-energy interaction. During teachers' Cmap navigation, students can experience…
Descriptors: Concept Mapping, Science Instruction, Cues, Chemistry
Alves, H.; Manhita, A.; Dias, C. Barrocas; Ferreira, T. – Chemistry Education Research and Practice, 2014
This paper describes a mini-project developed with 10th grade Portuguese students where, by using an experimental activity involving the use of natural dyes to colour wool, students acquired a better understanding of the concepts and relationship between the colour, the electromagnetic spectrum, and chemical bonding. As demonstrated by the results…
Descriptors: Foreign Countries, Grade 10, Secondary School Science, Science Experiments
Viennot, L.; de Hosson, C. – International Journal of Science Education, 2012
This research documents the aims and the impact of a teaching experiment concerning colour phenomena. This teaching experiment is designed in order to make students consider not only the spectral composition of light but also its intensity, and to consider the absorption of light by a pigment as relative, instead of as total or zero. Eight…
Descriptors: Science Instruction, Physics, Color, Light
Martinez-Borreguero, Guadalupe; Perez-Rodriguez, Angel Luis; Suero-Lopez, Maria Isabel; Pardo-Fernandez, Pedro Jose – International Journal of Science Education, 2013
We study the misconceptions about colour that most people hold, determining the general phenomenological laws that govern them. Concept mapping was used to combat the misconceptions which were found in the application of a test specifically designed to determine these misconceptions, while avoiding the possible misleading inductions that could…
Descriptors: Color, Misconceptions, Scientific Concepts, Foreign Countries

Martinez-Anton, J. C.; And Others – Physics Teacher, 1995
Describes a system that demonstrates how a color may be generated and specified in mathematical terms. Illustrates the mixing of primary colors as well as the concepts of saturation, luminance, and illumination. (JRH)
Descriptors: Color, Elementary Secondary Education, Foreign Countries, Higher Education
Huang, Ding-wei; Huang, Wei-neng; Tseng, Hsiang-chi – Physics Education, 2005
Students of General Physics often complain that the course is too abstract and remote from daily life. As teachers, we emphasize that the abstract concepts of physics are indispensable for understanding our daily experiences, and we try to give the impression that quantitative descriptions can be achieved by adopting concrete mathematical…
Descriptors: Physics, Problem Solving, Science Education, Mathematical Formulas

Chauvet, Francoise – European Journal of Teacher Education, 1996
Describes a practicum-based course for teaching Applied Arts students about color that considered students' previous ideas about color when devising experiments and assignments. The conceptual content was chosen to integrate scientific, technical, and perceptual aspects of color. Results of student evaluations and implications for classroom…
Descriptors: Color, Elementary Secondary Education, Foreign Countries, Higher Education