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Nielsen, Rudi P.; Sørensen, Jens L.; Simonsen, Morten E.; Madsen, Henrik T.; Muff, Jens; Strandgaard, Morten; Søgaard, Erik G. – Journal of Chemical Education, 2016
Chemical engineering is mostly taught using traditional classroom teaching and laboratory experiments when possible. Being a wide discipline encompassing topics such as analytical chemistry, process design, and microbiology, it may be argued that brewing of beer has many relations to chemical engineering topic-wise. This work illustrates how…
Descriptors: Chemical Engineering, Science Instruction, Scientific Principles, Microbiology
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Aguilar, Horacio Munguía; Maldonado, Rigoberto Franco – Physics Education, 2015
A simple capacitive cell for dielectric constant measurement in liquids is presented. As an illustrative application, the cell is used for measuring the degradation of overheated edible oil through the evaluation of their dielectric constant.
Descriptors: Physics, Measurement Techniques, Heat, Fuels
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Navratil, Zdenek; Dosoudilova, Lenka; Jurmanova, Jana – Physics Education, 2013
In this paper an experiment to study Planck's radiation law is presented. The spectra of a heated furnace and of a halogen lamp under various conditions were measured with a small USB grating spectrometer and fitted using Planck's law. The temperature determined from the fit was then compared with the results of comparative temperature…
Descriptors: Spectroscopy, Science Instruction, Science Experiments, Radiation
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Dintzner, Matthew R.; Kinzie, Charles R.; Pulkrabek, Kimberly A.; Arena, Anthony F. – Journal of Chemical Education, 2011
SIPCAn, an acronym for separation, isolation, purification, characterization, and analysis, is presented as a one-term, integrated project for the first-term undergraduate organic laboratory course. Students are assigned two mixtures of unknown organic compounds--a mixture of two liquid compounds and a mixture of two solid compounds--at the…
Descriptors: Organic Chemistry, Science Laboratories, College Science, Science Instruction
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Shell, Thomas A.; Shell, Jennifer R.; Poole, Kathleen A.; Guetzloff, Thomas F. – Journal of Chemical Education, 2011
A microwave-assisted synthesis of "N"-phenylsuccinimide has been developed for the second-semester organic teaching laboratory. Utilizing this procedure, "N"-phenylsuccinimide can be synthesized in moderate yields (40-60%) by heating a mixture of aniline and succinic anhydride in a domestic microwave oven for four minutes. This technique reduces…
Descriptors: Reaction Time, Organic Chemistry, Science Laboratories, Science Instruction
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Coursindel, Thibault; Martinez, Jean; Parrot, Isabelle – Journal of Chemical Education, 2010
In this laboratory activity, students are introduced to a three-step synthesis of hydantoin (imidazolidine-2,4-dione), a moiety that is found in many biologically active compounds. Using a microwave oven and solid-support technology, this synthetic experiment is designed for masters-degree candidates working in organic chemistry or upper-level…
Descriptors: Organic Chemistry, Science Instruction, Science Laboratories, Biology
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Anzivino, Barbara; Tilley, Leon J.; Ingalls, Laura R.; Hall, Adam B.; Drugan, John E. – Journal of Chemical Education, 2009
An undergraduate organic chemistry experiment demonstrating real-life application of GC-MS to arson accelerant identification is described. Students are given the task of comparing a sample recovered from a "crime scene" to that from a "suspect's clothing". Accelerants subjected to different conditions are recovered using a quick and simple…
Descriptors: Organic Chemistry, Classification, Anxiety, College Science
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Wieder, Milton J.; Barrows, Russell – Journal of Chemical Education, 2008
Treatment of phenylacetic acid with 90% HNO[subscript 3] yields a product, I, whose observed melting point is 175-179 degrees C and whose equivalent weight is approximately 226 grams. Treatment of phenylacetic acid with 70% HNO[subscript 3] yields a product, II, whose observed melting point is 106-111 degrees C and whose equivalent weight is…
Descriptors: Organic Chemistry, Science Laboratories, Heat, Spectroscopy
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Kirk, Sarah R.; Silverstein, Todd P.; McFarlane Holman, Karen L. – Journal of Chemical Education, 2008
This laboratory project is one component of a semester-long advanced biochemistry laboratory course that uses several complementary techniques to study tRNA[superscript Phe] conformational changes induced by ligand binding. In this article we describe a set of experiments in which the thermal unfolding of tRNA[superscript Phe] is studied with…
Descriptors: Biochemistry, Laboratory Experiments, Science Laboratories, Science Experiments