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Chen, Yu; Kim, Hee Ra; Ahn, Yu Jin; Kim, Jung Bog – Physics Teacher, 2022
The laser pointer has been widely used to demonstrate some simple optics phenomena, like reflection, refraction, total reflection, and diffraction. However, the rays of laser light cannot be seen in the air because the scattered light is too weak. Many physics teachers use milk or smoke to visualize rays of laser light in physics labs, but it is…
Descriptors: Science Experiments, Physics, Optics, Light
Hanisch, C.; Ziese, M.; Oehme, W. – Physics Teacher, 2021
White light refracted by a glass edge or a prism might be split into the colors of the rainbow but, when restricted by a suitable arrangement of edges, might also yield a sequence of colors complementary to the rainbow. We studied the creation of these color fields experimentally with a setup consisting of RGB light-emitting diodes that cover all…
Descriptors: Science Instruction, Light, Color, Science Experiments
Longoni, Margherita; Bruni, Silvia – Journal of Chemical Education, 2021
The identification of coloring substances is a relevant task in the field of conservation and restoration, but it can be challenging as in real samples the target analytes are inserted in a very complex matrix made of binders and additives. Understanding this concept is fundamental for upper-division undergraduate students interested in…
Descriptors: Chemistry, Science Instruction, Science Laboratories, Science Experiments
Thysiadou, Anna; Gaki, Vaso – Journal of Technology and Science Education, 2021
The introduction of the computer into the educational process is a fact. The educational use of new technologies creates a new, more appealing and enjoyable learning environment. The introduction of new technologies into school differentiates the role of the professor by giving him/her a guiding character in a process of experiential approach to…
Descriptors: Instructional Effectiveness, Science Instruction, Chemistry, Scientific Concepts
Destino, Joel F.; Cunningham, Katie – Journal of Chemical Education, 2020
In light of COVID-19 in spring 2020, we developed a simple and versatile inquiry-based, laboratory-style active learning colorimetry experiment amenable to at-home quantitative analysis. In this experiment, students acquire an external calibration method using aqueous solutions of a self-selected chromophoric analyte from household products using…
Descriptors: Science Instruction, Chemistry, Science Laboratories, COVID-19
Sattar, Simeen – Journal of Chemical Education, 2019
Pigments, dyes, and transition-metal compounds are made in courses across the undergraduate chemistry curriculum, but student characterization of these compounds' most striking features, their colors, seldom goes beyond verbal descriptions. Affordable, hand-held, fiber-optic reflectance spectrophotometers make it possible to advance students'…
Descriptors: Chemistry, Science Instruction, Undergraduate Students, Color
Rezende, Marcos Caroli; Aliaga, Carolina; Barriga, German; Vidal, MatÃas – Journal of Chemical Education, 2018
Unlike the large number of laboratory experiments on phase-transfer catalysis (PTC) that focus on a catalyzed chemical process, the present laboratory emphasizes the mechanism of phase transfer catalysis itself. Students can follow visually the actual transfer of the reagent by the catalyst, and its consumption in the organic phase, in a…
Descriptors: Science Instruction, Inquiry, Organic Chemistry, College Science
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
Theilmann, Florian; Grusche, Sascha – Physics Education, 2013
Teaching prismatic colours usually boils down to establishing the take-home message that white light consists of "differently refrangible" coloured rays. This approach explains the classical spectrum of seven colours but has its limitations, e.g. in discussing spectra from setups with higher resolution or in understanding the well…
Descriptors: Science Instruction, Physics, Color, Scientific Principles
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
Olympiou, Georgios; Zacharia, Zacharias C. – Science Education, 2012
This study aimed to investigate the effect of experimenting with physical manipulatives (PM), virtual manipulatives (VM), and a blended combination of PM and VM on undergraduate students' understanding of concepts in the domain of "Light and Color." A pre-post comparison study design was used for the purposes of this study that involved 70…
Descriptors: Concept Formation, Science Experiments, Science Laboratories, Chemistry

Mebane, Robert C.; Rector, Bronwyn – Science and Children, 1991
Presents activities that utilize balloons to encourage students to explore questions related to scientific concepts. Concepts explored include light, heat, charged ions, polarization, and the sense of smell. (MDH)
Descriptors: Chemistry, Color, Concept Formation, Discovery Learning