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Showing 1 to 15 of 22 results Save | Export
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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
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Ramos, Cristiana V.; Samelo, Jaime; Martins, Patri´cia A. T.; Moreno, Maria João – Journal of Chemical Education, 2022
The amount of protein in complex matrices such as food products is an important characteristic, at both a nutritional and a pedagogical level. There are several methods available for protein quantification, from simple UV absorption to mass spectrometry. The most common are based on the interaction of the proteins with colored compounds followed…
Descriptors: Chemistry, Science Instruction, Food, Color
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Yao Wu; Chengxu Hu; Yan Hu; XiLian Cao; Jiaxin Zhang; Menglu Wang; Jun Cao; Ronghui Que – Journal of Chemical Education, 2024
Practical experiments enhance students' understanding of basic concepts and promote deep learning experiences in chemistry. The smartphone application of Lab4Chemistry was utilized to replace colorimeters with smartphone camera sensors. Low-cost and readily available materials, including anthocyanin (fresh red cabbage) and common kitchen…
Descriptors: Science Experiments, Chemistry, Science Instruction, Telecommunications
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Filgueiras, Matheus Fernandes; Borges, Endler Marcel – Journal of Chemical Education, 2022
Students quantified the protein content in beer, milk, powdered milk, and whey protein using the Bradford assay. The assay was carried out using absorbance measured at 595 nm (standard method) and 96-well-plate images (proposed method). They built analytical curves using bovine serum albumin (BSA) and casein and determined that protein type…
Descriptors: Chemistry, Color, Visual Aids, Science Instruction
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Jaconiano, Yasmim R.; Goulart, Juliana S.; Barros, José C.; Michel, Ricardo C. – Journal of Food Science Education, 2021
It began in 1869, and today we have 118 elements listed in the Periodic table, thanks to Mendeleev's work. Carbon, hydrogen, oxygen, and nitrogen are elements presented in many organic compounds. Some of them can exhibit photophysical and photochemical properties. Herein, we proposed an easy to make an experiment in chemistry classes to connect…
Descriptors: Chemistry, Food, Color, Scientific Concepts
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Wallee Naimi; Gail A. Vinnacombe-Willson; Stanley Saldana; Lionnel Ronduen; Heather Domjan; Naihao Chiang – Journal of Chemical Education, 2024
Stimulating interest in science at an early age is important for STEM education. This work details an educational activity utilizing the anthocyanins found in butterfly pea flowers ("Clitoria ternatea"). This activity was developed for use in official classroom settings, online, and/or at-home with parental or educator guidance. Primary…
Descriptors: Science Instruction, Chemistry, STEM Education, Fundamental Concepts
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Quang, Ngo Khoa – Physics Teacher, 2022
This article describes a simple way to introduce nanomaterials using the presence of carbon nanodots (CNDs) in widely available food. Budweiser® beer and Coca-Cola®, commercial foods that are commonly accessible, were utilized to demonstrate the optical property of nanoparticles. Specifically, green and violet laser pointers were employed for the…
Descriptors: Science Instruction, Food, Scientific Concepts, Teaching Methods
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Ibarra-Rivera, Tannya R.; Delgado-Montemayor, Cecilia; Oviedo-Garza, Fernando; Pérez-Meseguer, Jonathan; Rivas-Galindo, Veronica M.; Waksman-Minsky, Noemi; Pérez-López, Luis Alejandro – Journal of Chemical Education, 2020
In light of the COVID-19 pandemic situation, the separation of the primary colors of ink markers and food coloring was performed using a simplified column chromatography setup at home to accomplish the educational outcome of the course. The virtual class instruction, for the students enrolled in the "Organic Techniques Laboratory"…
Descriptors: Science Experiments, Laboratory Experiments, Organic Chemistry, Color
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Rosa, Clarissa H.; Antelo, Francine; Rosa, Gilber R. – Journal of Food Science Education, 2018
A 4-week mini-project is proposed for an experimental Physical Chemistry course applied in Food Science training. Activities include preparation of beet extract for the extraction of betanins and analysis of the kinetics of betanins in thermal degradation at three temperatures (60, 70, and 80 ºC). In addition to developing common laboratory…
Descriptors: Food, Chemistry, Science Instruction, Science Activities
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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
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Staiger, Felicia A.; Peterson, Joshua P.; Campbell, Dean J. – Journal of Chemical Education, 2015
Erioglaucine dye (FD&C Blue #1) can be used instead of methylene blue in the classic "blue-bottle" demonstration. Food items containing FD&C Blue #1 and reducing species such as sugars can therefore be used at the heart of this demonstration, which simply requires the addition of strong base such as sodium hydroxide lye.
Descriptors: Science Instruction, Color, College Science, Undergraduate Study
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Briju, Betsy J.; Wyatt, Sarah E. – American Biology Teacher, 2015
Instructors often present Mendelian genetics and molecular biology separately. As a result, students often fail to connect the two topics in a tangible manner. We have adopted a simple experiment to help link these two important topics in a basic biology course, using red and white onions bought from a local grocery store. A lack of red coloration…
Descriptors: Genetics, Molecular Biology, Science Laboratories, Science Experiments
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Galloway, Kelli R.; Bretz, Stacey Lowery; Novak, Michael – Journal of Chemical Education, 2015
A variety of fruits and vegetables, including raspberries, blueberries, Concord grapes, blackberries, strawberries, peaches, eggplant, red cabbage, and red onions, contain flavonoid compounds known as anthocyanins that are responsible for the blue-red color and the astringent taste associated with such foods. In addition, anthocyanins exhibit a…
Descriptors: Science Instruction, Spectroscopy, Organic Chemistry, Science Laboratories
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Trujilo-de Santiago, Grissel; Rojas-de Gante, Cecillia; García-Lara, Silverio; Ballesca´-Estrada, Adriana; Alvarez, Marion Moise´s – Journal of Chemical Education, 2014
A simple experiment designed to study mixing of a material of complex rheology in a stirred tank is described. Non-Newtonian suspensions of blue maize flour that naturally contain anthocyanins have been chosen as a model fluid. These anthocyanins act as a native, wide spectrum pH indicator exhibiting greenish colors in alkaline environments, blue…
Descriptors: Science Experiments, Science Instruction, Scientific Concepts, Chemistry
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Blatchly, Richard A.; Delen, Zeynep; O'Hara, Patricia B. – Journal of Chemical Education, 2014
In the last decade, our understanding of the chemistry of olive oil has dramatically improved. Here, the essential chemistry of olive oil and its important minor constituents is described and related to the typical sensory categories used to rate and experience oils: color, aroma, bitterness, and pungency. We also describe experiments to explore…
Descriptors: Chemistry, Science Experiments, Food, Sensory Experience
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