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Sumrall, William J. – Science Teacher, 1998
Presents three problems based on the price of aluminum designed to encourage students to be cooperative and to use an investigative approach to learning. Students collect and synthesize information, analyze results, and draw conclusions. (AIM)
Descriptors: Chemical Analysis, Chemistry, Computer Uses in Education, Cooperative Learning
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Robinson, William R.; Niaz, Mansoor – International Journal of Science Education, 1991
The performance of two groups of chemistry students, one taught using the traditional lecture method and the other interactive, in solving stoichiometry problems is described. The interactive instruction appears more effective for students who are less adept at information processing. The interaction apparently does not challenge better students,…
Descriptors: Cognitive Ability, Foreign Countries, Interaction, Learning Processes
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Niaz, Mansoor – Journal of Research in Science Teaching, 1995
Exposure of an experimental group of (n=33) college freshmen to teaching experiments dealing with stoichiometry problems based on the concept of limiting reagent showed greater improvement in posttests than the (n=39) student control group and observed that some students protect their core beliefs by ignoring conflicting data. (Author/MKR)
Descriptors: Academic Achievement, Beliefs, Chemistry, Cognitive Processes
Inner London Education Authority (England). – 1983
This unit on the mole is one of 10 first year units produced by the Independent Learning Project for Advanced Chemistry (ILPAC). The unit, designed to help students consolidate some of the ideas about the mole learned in previous courses, consists of two levels. The first level focuses on: (1) relative mass; (2) the concept of the mole as the unit…
Descriptors: Chemical Reactions, Chemistry, High Schools, Independent Study
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Ramette, R. W. – Journal of Chemical Education, 1988
Describes a take-home exam story problem based on stoichiometry. Requires the student to determine the percentage of phosphoric acid in a large container of nitric acid if a man fell into it. Provides assumptions, clues, and an acceptable solution. (MVL)
Descriptors: Chemical Analysis, Chemistry, College Science, Computation
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Huann-Shyang, Lin; Sung, Tao Lee; Treagust, David – Journal of Chemical Education, 2005
A study was conducted to assess junior and high school students learning achievement in the topic of stoichiometry by using The Student Conceptual Understanding Test (SCUT). The low student achievement on the SCUT test deserves special attention from chemistry teachers, and it is stated that effective teaching strategies to promote student…
Descriptors: Teaching Methods, Teacher Effectiveness, Chemistry, High School Students
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Rios, Angel; And Others – Journal of Chemical Education, 1986
Describes a method of flow injection analysis intended for calculation of complex-formation and redox reaction stoichiometries based on a closed-loop configuration. The technique is suitable for use in undergraduate laboratories. Information is provided for equipment, materials, procedures, and sample results. (JM)
Descriptors: Chemical Reactions, Chemistry, College Science, Higher Education
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Alick, Bonita; Atwater, Mary M. – School Science and Mathematics, 1988
Discusses problem-solving strategies and the successful strategy used to solve stoichiometric problems in general college chemistry courses. Reports that rereading problems, recalling a related concept, and reasoning deductively/inductively are the most heavily used strategies among 13 categories. (YP)
Descriptors: Blacks, Chemistry, Cognitive Processes, College Science
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Sumrall, William J. – Science Teacher, 1991
Presents four stoichiometric problems and their solutions that use spot metal prices quoted from the newspaper to integrate economics and chemistry. (MDH)
Descriptors: Chemical Reactions, Chemistry, Computation, Cooperative Learning
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Bergandine, David R.; And Others – Science Teacher, 1991
The outline for a unit on the chemistry of fitness and nutrition is presented. Topics discussed include the organic basis of life, functional groups, kitchen experiments, micronutrients, energetics, fitness vs. fatness, current topics, and evaluation. This unit reviews the basic concepts of chemical bonding, acid-base chemistry, stoichiometry, and…
Descriptors: Biochemistry, Chemical Reactions, Chemistry, Course Content
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Kumar, David D. – Journal of Science Education and Technology, 1993
Results of a HyperCard method for assessing the performance of expert and novice high school chemistry students solving stoichiometric chemistry problems (balancing chemical equations) is reported. MANOVA results indicate significant difference between expert and novice students solving the five stoichiometric chemistry problems using…
Descriptors: Chemistry, Computer Assisted Instruction, Educational Research, High Schools
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Figueira, Alvaro Rocha; And Others – Journal of Chemical Education, 1988
Examines the thermal decomposition of sodium bicarbonate to sodium carbonate. Encourages students to predict the end products and to use the stoichiometric results to determine if their predictions are correct. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Poole, Richard L. – Journal of Chemical Education, 1989
Presents a method to teach stoichiometry where a problem is broken down into four factors and two cycles. Offers grams of known, moles of known, moles of unknown, and grams of unknown as the factors. Uses factor labeling as the second cycle. (MVL)
Descriptors: Chemical Analysis, Chemical Nomenclature, Educational Strategies, Instruction
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Gold, Marvin – Journal of Chemical Education, 1988
Describes a simple laboratory procedure for changing sodium carbonate into sodium chloride by adding concentrated HCl to cause the reaction and then evaporating the water. Claims a good stoichiometric yield can be obtained in one three-hour lab period. Suggests using fume hood for the reaction. (ML)
Descriptors: Chemistry, College Science, High Schools, Higher Education
Orna, Mary Virginia, Ed.; And Others – 1994
ChemSource is designed as a strategy to help preservice and inservice high school chemistry teachers promote student learning more effectively. Its major premise is that well-designed laboratory investigations are an important avenue for cultivating student interest, engagement, and meaningful learning in chemistry. The SourceBook component of…
Descriptors: Chemistry, Computer Uses in Education, Demonstrations (Science), Disabilities
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