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Problem-Solving Behaviors during a Genetics Computer Simulation: Beyond the Expert/Novice Dichotomy.
Peer reviewedSimmons, Patricia E.; Lunetta, Vincent N. – Journal of Research in Science Teaching, 1993
The problem-solving behaviors and genetics concepts employed by experts and novices during interaction with the computer simulation CATLAB, were examined. Thirteen subjects (3 experts and 10 novices) investigated a common hypothesis on a specific genetic trait during the computer activity. Using naturalistic research methods, general patterns of…
Descriptors: Biology, Computer Assisted Instruction, Computer Simulation, Educational Research
Peer reviewedCavallo, Ann M. L.; Tice, Craig J. – Journal of Science Teacher Education, 1993
Describes and suggests the use of a problem-solving model that improves communication between student teachers and supervisors through the student teaching practicum. The aim of the model is to promote experimentation with various teaching techniques and to stimulate thinking among student teachers about their teaching experiences. (PR)
Descriptors: Educational Innovation, Elementary Secondary Education, Higher Education, Preservice Teacher Education
Peer reviewedBrewer, Carol A.; Beiswenger, Jane M. – American Biology Teacher, 1993
Describes exercises to examine the global carbon cycle. Students are asked to predict consequences of increased carbon dioxide emissions into the atmosphere and to suggest ways to mitigate problems associated with these higher levels of atmospheric carbon dioxide. A comparison modeling exercise examines some of the variables related to the success…
Descriptors: Agriculture, Biology, College Science, Ecology
Peer reviewedChiras, Daniel D. – American Biology Teacher, 1992
Outlines 11 rules of critical thinking and offers suggestions of teaching them in biology and environmental science classrooms. (MDH)
Descriptors: Biology, Cognitive Processes, Critical Thinking, Educational Principles
Peer reviewedCronin, Jim – Science Scope, 1993
Describes an approach to teaching the scientific method where an outbreak of cholera within the school is simulated. Students act like epidemiologists in an attempt to track down the source of the contamination. (PR)
Descriptors: Biology, Epidemiology, Intermediate Grades, Learning Activities
Peer reviewedPace, Glennellen; Larson, Connie – Science and Children, 1992
Discusses a child-centered science project in which first-grade students integrate design drawing, construction, mathematics, and language arts to solve engineering problems related to constructing robots. Describes the construction of the robots, follow-up activities, and educational research that supports this approach to teaching. (10…
Descriptors: Cooperative Learning, Design, Grade 1, Integrated Activities
Peer reviewedHerold, James M. – Science Scope, 1992
Describes activities integrating science and art education in which students examine slides of impressionist paintings or photographs of meteorological phenomena to determine the weather conditions depicted and to make and defend weather predictions. Includes a reproducible worksheet. (MDH)
Descriptors: Aesthetic Values, Art Education, Impressionism, Integrated Activities
Peer reviewedChristopher, Mary – Gifted Child Today Magazine, 1999
Describes a unit of study for gifted fifth graders that connects architecture to the content areas of history, mathematics, and science. Emphasis was on problem solving of real-world problems as recommended in major reports on mathematics instruction. The unit also used technology in innovative ways, including computer-drawn images and digital…
Descriptors: Architecture, Computer Uses in Education, Gifted, Grade 5
Peer reviewedStanley, Ethel D.; Waterman, Margaret A. – Journal of College Science Teaching, 2000
Discusses curriculum reforms and appropriate teaching methods for adult learners. Explains a curricular material called "LifeLines Online" which was developed for two-year college faculty to test problem-based curricular materials. Presents a scenario on an alternative way of teaching ecology with Investigative Cased-Based Learning…
Descriptors: Adult Education, Biology, Case Method (Teaching Technique), Curriculum Development
Peer reviewedEylon, Bat-Sheva; And Others – Journal of Science Education and Technology, 1996
Explores the potential of the RAY learning environment in improving learning about optics. Results indicate that this environment, which includes a flexible ray-tracing simulation, had a significant effect on the spontaneous and correct use of the model by students in solving problems and a limited effect on conceptual understanding, but promoted…
Descriptors: Case Studies, Computer Uses in Education, Educational Technology, Foreign Countries
Peer reviewedBrowne, Lois M.; Blackburn, Edward V. – Journal of Chemical Education, 1999
Describes attempts to adapt collaborative-learning techniques and a problem-solving approach to large introductory organic chemistry course sections at the University of Alberta. (WRM)
Descriptors: Cooperative Learning, Course Descriptions, Educational Change, Foreign Countries
Maxwell, Sheryl A. – Mathematics Teaching in the Middle School, 2006
This article explores how students learned to measure tall objects using a clinometer and some basic calculations. Such activities provide opportunities for students and teachers to learn the usefulness of linking mathematics content and science content to real-world problem-solving situations. (Contains 7 figures.)
Descriptors: Discovery Learning, Measurement Techniques, Computation, Mathematics Instruction
Mahan, Eric J.; Nading, Mary Alice – Journal of Chemical Education, 2006
This experiment was designed to help students improve the critical thinking skills that are required to analyze and discuss the results of an organic chemistry experiment in an effective manner. The initial objective indicated in the prelab handout for this puzzle experiment was the synthesis of methyl 4-bromobenzoate using the Fischer…
Descriptors: Organic Chemistry, Laboratory Manuals, Reference Materials, Critical Thinking
Hung, Woei; Jonassen, David H. – International Journal of Science Education, 2006
College students often experience difficulties in solving physics problems. These difficulties largely result from a lack of conceptual understanding of the topic. The processes of conceptual learning reflect the nature of the causal reasoning process. Two major causal reasoning methods are the covariational and the mechanism-based approaches.…
Descriptors: Physics, College Students, College Science, Attribution Theory
Quitadamo, Ian J.; Kurtz, Martha J. – CBE - Life Sciences Education, 2007
Increasingly, national stakeholders express concern that U.S. college graduates cannot adequately solve problems and think critically. As a set of cognitive abilities, critical thinking skills provide students with tangible academic, personal, and professional benefits that may ultimately address these concerns. As an instructional method, writing…
Descriptors: Writing Assignments, Science Laboratories, Biology, Critical Thinking

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