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Simeen Sattar – Journal of Chemical Education, 2024
Lakes are artists' pigments made from colorants bound to an inert substrate, usually hydrated aluminum oxide. Before the late 19th century, lakes were made from natural pigments extracted from plants and insects, extracted either directly from the dyestuff or indirectly from waste materials generated in the manufacture of dyed textiles. The first…
Descriptors: Color, Science Experiments, Laboratory Experiments, Science Education
Matthew R. Anderson; Cammi J. Dargatz; Tuhina Banerjee; Natasha M. DeVore – Biochemistry and Molecular Biology Education, 2024
Green fluorescent protein has long been a favorite protein for demonstrating protein purification in the biochemistry lab course. The protein's vivid green color helps demonstrate to students the concept(s) behind affinity or ion exchange chromatography. We designed a series of introduction to biochemistry labs utilizing a thermostable green…
Descriptors: Science Education, Biochemistry, Laboratory Experiments, Color
Brian Zacher; Sam Ferrante; Rances Romero – Journal of Chemical Education, 2023
The dissolution of cobalt(II) chloride in an appropriate binary alcohol solvent yields an equilibrium mixture, consisting of the differently colored octahedral (pink in color) and tetrahedral (blue in color) cobalt(II) coordination complexes, which can exhibit a brilliant and reversible pink-to-blue color transition over a ~10 °C window - i.e.,…
Descriptors: Chemistry, Science Education, Thermodynamics, Spectroscopy
Sofia F. Palme; Andrew H. Johnson; Graeme R. A. Wyllie – Journal of Chemical Education, 2024
A major challenge when designing new experiments for the general chemistry laboratory is introducing students to the necessary techniques while keeping the experiment engaging and accessible. This work presents a new multiweek activity designed to introduce students to advanced instrumentation in the form of high-performance liquid chromatography…
Descriptors: Chemistry, Science Education, Color, Food
Danielle L. Pearson; Russell R. A. Kitson – Journal of Chemical Education, 2022
An introductory normal phase column chromatography experiment is described and evaluated for second year undergraduate chemistry laboratory class. The experiment involves a nucleophilic substitution yielding a crude mixture of reactant and one product, both of which are brightly colored and contrasting, creating a clearly visual separation when…
Descriptors: Undergraduate Study, Visual Aids, College Science, Science Education
Tianli Han; Shanshan Yang; Liying Zhu; Xirong Lin; Jinyun Liu – Journal of Chemical Education, 2023
An experimental design by combining hydrogel and ethylenediaminetetraacetic acid disodium salt (EDTA) for visually displaying chemical complexation reactions is developed. The Na[superscript +] ions on the [alpha]-l-guluronic acid (G) unit of the sodium alginate molecule undergo an ion exchange with a divalent cation, so that the G units are…
Descriptors: Chemistry, Science Education, Teaching Methods, Science Experiments
Masatada Matsuoka; Jun Koga; Ayaki Miyahara – Journal of Chemical Education, 2023
Thin-layer chromatography, which involves the movement of dyes along a silica-coated plate, is used to observe the progress of chemical reactions and to separate mixtures. We took advantage of this phenomenon to devise a method for generating patterns in the shape of numbers with dots (dot matrix). We prepared the azo dyes necessary for generating…
Descriptors: Color, Scientific Concepts, Chemistry, Visual Aids
Lena Geuer; Niklas Erdmann; Monika Lorenz; Hannah Albrecht; Tom Schanne; Marcel Cwienczek; Doris Geib; Dorina Strieth; Roland Ulber – Journal of Chemical Education, 2023
In the course of combining the Sustainable Development Goals (SDGs) with the science education curriculum, the relevance of the micro- and macroalgae in education is based on the biotechnological future-oriented significance and the ever-growing trend toward plant-based nutrition. So, the micro- and macroalgae are finding their way onto the food…
Descriptors: Color, Biology, Food, Biotechnology
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
Carvalho, Paulo Simeão; Hahn, Marcelo – Physics Teacher, 2016
The result of additive colors is always fascinating to young students. When we teach this topic to 14- to 16-year-old students, they do not usually notice we use maximum light quantities of red (R), green (G), and blue (B) to obtain yellow, magenta, and cyan colors in order to build the well-known additive color diagram of Fig. 1. But how about…
Descriptors: Science Experiments, Teaching Methods, Hands on Science, Color
Sanchez, Jose Francisco; Quiles, Maria Jose – Journal of Biological Education, 2006
This paper describes an easy experiment to study the absorption and action spectrum of photosynthesis, as well as the inhibition by heat, high light intensity and the presence of the herbicide 3-(3,4-dichlorophenyl)-1,1-dimethylurea (DCMU) on the photosynthetic process. The method involves measuring the chlorophyll fluorescence emitted by intact…
Descriptors: Color, Inhibition, Physiology, Botany
Peer reviewedPenteado, Jose C.; Angnes, Lucio; Masini, Jorge C.; Oliveira, Paulo C. C. – Journal of Chemical Education, 2005
This article describes the reaction between nitrite and safranine O. This sensitive reaction is based on the disappearance of color of the reddish-orange azo dye, allowing the determination of nitrite at the mg mL-1 level. A factorial optimization of parameters was carried out and the method was applied for the quantification of nitrite in…
Descriptors: Science Activities, Science Education, Laboratory Experiments, Spectroscopy
Peer reviewedBricker, Clark E.; Sloop, Gregory T. – Journal of Chemical Education, 1985
Describes an experiment (carried out in less than two hours) in which the merits of countercurrent extraction are immediately evident by visible colors. The experiment requires eight 125-ml separatory funnels, 250ml of 1-butanol, 250ml of 0.1-0.5 molar hydrochloric acid, and a small amount of Sheaffer's Skrip blue-black soluble ink. (JN)
Descriptors: Chemistry, Chromatography, College Science, Color
Peer reviewedGalus, Pamela J. – Science Scope, 2000
Describes an inquiry-based experiment on the heat absorption of color that is developed from a scientific misconception. Uses three cans colored white, gray, and black and observes and compares the temperature changes of water in cans when placed under 100 watt lamps. (YDS)
Descriptors: Color, Heat, Middle Schools, Science Activities
Texley, Juliana – Science and Children, 2005
Colors are powerful tools for engaging children, from the youngest years onward. We hang brightly patterned mobiles above their cribs and help them learn the names of colors as they begin to record their own ideas in pictures and words. Colors can also open the door to an invisible world of electromagnetism, even when children can barely imagine…
Descriptors: Color, Plants (Botany), Science Education, Science Activities

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