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Rye, James A. – Science Teacher, 1997
Details an investigation concerned with the composition of a grape to illustrate how food and nutrition topics can drive inquiry-oriented science learning. Students design experiments that surround the development of a fictitious new beverage. (DDR)
Descriptors: Data Analysis, Data Collection, Elementary Secondary Education, Food
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Greenbowe, Thomas J.; Meltzer, David E. – International Journal of Science Education, 2003
Analyzes student performance on solution calorimetry problems in an introductory university chemistry class. Includes data from written classroom exams for 207 students and an extensive longitudinal interview with a student. Indicates learning difficulties, most of which appear to originate from failure to understand, that net increases and…
Descriptors: Chemical Bonding, Chemistry, Cognitive Processes, Energy
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DiPasquale, Dana M.; Mason, Cheryl L.; Kolkhorst, Fred W. – Journal of College Science Teaching, 2003
Describes an inquiry-based teaching method implemented in an undergraduate exercise physiology laboratory course. Indicates students' strong, positive feelings about the inquiry-based teaching method and shows that inquiry-based learning results in a higher order of learning not typically observed in traditional style classes. This teaching method…
Descriptors: Concept Formation, Higher Education, Inquiry, Physiology
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Donalson-Sams, Marilyn – Science and Children, 1988
Describes activities which help students understand several basic scientific concepts regarding water. Outlines objectives, materials needed, procedures, and questions to ask about student observations. Investigations include working with the self-sealing property of water, talcum powder, paper clips, and making water wetter. (RT)
Descriptors: Elementary School Science, Experiential Learning, Motivation Techniques, Physical Sciences
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Froschauer, Linda – Science and Children, 1988
Introduces a lesson that can be used for teaching the scientific process with excitement and in a natural learning environment. Suggests activities for classifying, observing, measuring, inferring, collecting data, interpreting, discussing, concluding, and communicating. Supplies a list with pictures and descriptions of types of monuments. (RT)
Descriptors: Elementary School Science, Experiential Learning, Interdisciplinary Approach, Problem Solving
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Grote, Michael – Physics Teacher, 1995
Describes the activities of the kNights of Physics, a group of preservice teachers, whose goal is to spread the knowledge of the fun of physics to elementary students and their parents. (JRH)
Descriptors: Elementary Education, Grade 4, Parent Participation, Physics
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Kjersdam, Finn – European Journal of Engineering Education, 1994
Evaluates the results of an experiment with comprehensive project-organized and problem-based engineering education at Aalborg University that has lasted for 20 years. Several independent evaluations show that the graduates are more readily adaptable, with strong qualities in the field of problem-solving, cooperation, communication, and…
Descriptors: Engineering Education, Higher Education, Problem Solving, Program Effectiveness
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Hewitt, Paul G. – Physics Teacher, 1994
Stresses the importance of teaching physics concepts over having students work on word problems. (MVL)
Descriptors: Higher Education, Learning Strategies, Physics, Problem Solving
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Stump, Daniel R. – Physics Teacher, 1995
Presents four examples of physics problems that can be solved with a graphing calculator. Problems included deal with motion, harmonic oscillations, sound waves, and blackbody radiation. (JRH)
Descriptors: Acoustics, Graphing Calculators, Graphs, Light
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Roy, Darlene – Science Teacher, 1995
Describes an activity that challenges students to apply their knowledge of motion to designing and constructing roller coasters. Emphasizes the processes students go through to communicate their ideas and the problem-solving skills they develop. (JRH)
Descriptors: Acceleration (Physics), Motion, Problem Solving, Science Activities
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West, Steve A. – School Science Review, 1992
This article defines and presents a rationale for problem-based learning in science teaching. The process of problem-based learning is outlined and its benefits explored. The use of problem-based learning in the classroom is illustrated to support it as a feasible teaching strategy for secondary school science. (Author/PR)
Descriptors: Educational Strategies, Problem Based Learning, Problem Solving, Science Education
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Watts, Mike; West, Alan – School Science Review, 1992
Describes using problem solving in science instruction and the advantages derived from this approach. Authors' experience suggests there are many problem-solving approaches in physics, technology, and biology but that chemists have not yet made an impact. Presents two case studies in problem solving in chemistry from the Creativity in Science and…
Descriptors: Chemistry, Educational Strategies, Foreign Countries, Problem Solving
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O'Brien, Thomas – American Biology Teacher, 1992
Discusses biological bafflers that can be used with any curriculum to motivate and instill a sense of wonder about the world. The following are some bafflers discussed: animal lovemaking--risky business; animal-size appetites; digging for gold; drinking, the unquenchable thirst; eating; hearing is believing; jumping and lifting contenders;…
Descriptors: Biology, Elementary Secondary Education, Higher Education, Problem Solving
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Padgett, Wendy T. – Physics Teacher, 1991
Provides a list of 33 problem-solving steps extracted from physics textbooks and arranged within the following 3 categories: setup, solution, and checks. (MDH)
Descriptors: Cognitive Processes, High Schools, Learning Strategies, Physics
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Rybka, Jan Dillon – Science Teacher, 1991
Describes a learning module designed to help students use the factor labeling method in problem solving. (ZWH)
Descriptors: Earth Science, Equations (Mathematics), Learning Activities, Learning Modules
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