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Paulson, Donald R.; And Others – Journal of Chemical Education, 1974
Descriptors: Biochemistry, Chemistry, Laboratory Experiments, Laboratory Procedures
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Trainor, Kevin – Australian Science Teachers Journal, 1971
Descriptors: Biology, Chemistry, Laboratory Procedures, Science Activities
Vinson, Joe A.; Hocker, Edward K. – J Chem Educ, 1969
Descriptors: Chemistry, Laboratory Procedures, Measurement, Science Activities
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Bayliss, Alex; McCormac, Gerry; van der Plicht, Hans – Physics Education, 2004
Radiocarbon dating has been central to the construction of archaeological chronologies for over 50 years. The archaeological, scientific and (increasingly) statistical methods for interpreting radiocarbon measurements to produce these chronologies have become ever more sophisticated. The accurate measurement of the radiocarbon content of an…
Descriptors: Laboratories, Archaeology, Physics, Laboratory Procedures
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Eichler, Jack F. – Journal of Chemical Education, 2009
A guided-inquiry exercise conducted in both the lecture and laboratory components of a college introductory chemistry course for non-science majors is described. The exercise gave students the opportunity to independently determine the relationship between the temperature of water in an aluminum soda can and the intensity of implosion upon placing…
Descriptors: Integrated Activities, Student Interests, Chemistry, Lecture Method
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McIntosh, Amy V.; Richter, Stephen C. – Science Activities: Classroom Projects and Curriculum Ideas, 2007
Many topics in the secondary science classroom can be difficult to introduce to students in a manner that fully engages them, especially when presented using traditional teaching methods. However, with a little innovation and an emphasis on inquiry, even dry subjects can be presented in an appealing way. The authors developed an inquiry-based…
Descriptors: Science Instruction, Laboratory Procedures, Floriculture, Anatomy
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Clennan, Malgorzata M.; Clennan, Edward L. – Journal of Chemical Education, 2007
The nitration of six benzene derivatives having a range of substituents that differ in electronic effects were followed by GC-MS analyses of the crude reaction mixtures and adapted for the second-year organic laboratory. Students pool their results and identify the products by analyzing the mass spectral data of the isomers and by comparing them…
Descriptors: Organic Chemistry, College Science, Undergraduate Students, Undergraduate Study
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Gandhari, Rajani; Maddukuri, Padma P.; Thottumkara, Vinod K. – Journal of Chemical Education, 2007
The experiment demonstrating the feasibility of using water as a solvent for organic reactions which highlights the cost and environmental benefits of its use is presented. The experiment encourages students to think in terms of the reaction mechanism of the oxidation of aldehydes knowing that potassium persulfate is the active oxidant in Oxone…
Descriptors: Chemistry, Organic Chemistry, Water, Laboratory Experiments
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Latimer, Devin – Journal of Chemical Education, 2007
Preparation of phenylmagnesium bromide described by Eckert, addition of three equivalents of Grignard reagent to diethyl carbonate to form triphenylmethanol and a series of GC-MS procedures that form intermediates. The analysis is consistent with a gas chromatogram and mass spectrum for each of the expected intermediates and final product of the…
Descriptors: Chemistry, Laboratory Experiments, Science Experiments, Organic Chemistry
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Ramette, R. W. – Journal of Chemical Education, 2007
The exocharmic reactions that can be observed microscopically are discussed. The students can discover the optimal concentration of an acidic lead nitrate solution, so that a crystal of potassium iodide, nudged to the edge of a drop, results in glinting golden hexagons of lead iodide.
Descriptors: Chemistry, Science Instruction, Science Experiments, Science Activities
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Goran, Morris – Journal of College Science Teaching, 1972
Descriptors: College Science, Instruction, Laboratory Procedures, Nonmajors
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Price, F. W. – American Biology Teacher, 1972
Descriptors: Biochemistry, Chemistry, Instruction, Laboratory Procedures
Johnston, W. L. – Sch Shop, 1969
A comparison is made between industrial plant practices and those taught or used in an industrial arts laboratory with emphasis on: (1) control of raw material, (2) space utilization, (3) production methods, (4) employee selection, and (5) product purpose. (GR)
Descriptors: Industrial Arts, Industry, Laboratory Procedures, School Shops
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Wagoner, Norma E.; Romero-O'Connell, Josina M. – Anatomical Sciences Education, 2009
Students often attain memorable experiences from cadaver dissections through reflective writing. For many, facing a dissection for the first time elicits a wide range of emotions. These may include thoughts of their own mortality to the sheer admiration of knowing that someone cared enough to help others learn about the body, even in death. Poems…
Descriptors: Medical Students, Student Attitudes, Reflection, Human Body
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Booth, Paula; Henderson-Begg, Stephanie – Journal of Interactive Learning Research, 2011
Invited as a paper from E-Learn 2009 This study compared two programmes developed as a learning tool for students to practise basic laboratory procedures. One was a Flash simulation programme, the other a Second Life virtual reality programme. A cohort of 93 bioscience students participated in the between trial. A control group was used to…
Descriptors: Foreign Countries, Educational Technology, Laboratory Procedures, Science Instruction
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