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Peer reviewedRansom, Peter – Mathematics in School, 1998
Describes two problem-solving activities for small groups that motivate through the use of sundials. Includes practical work. (ASK)
Descriptors: Elementary Secondary Education, Group Activities, Mathematics Education, Mathematics History
Peer reviewedSapp, D. David – Journal of Creative Behavior, 1997
Presents a model of the relationship between the presented problem parameters of art assignments and the creative processes of students. Parameter types of instructions include incomplete, overly and inadequately restrictive, and expanding/contracting parameters. Parameters of student responses are categorized as disregarded, self-imposed, and…
Descriptors: Art Education, Creative Art, Creative Thinking, Creativity
Jansen, Barbara A. – Big6 Newsletter, 1997
Explains how to teach students to select information from sources without copying sentences verbatim. This use of information is related to one step in the Big6 information problem-solving process, a high-level task that requires students to evaluate content in relation to a topic or question. (LRW)
Descriptors: Content Analysis, Evaluation Methods, Information Literacy, Information Skills
Eisenberg, Mike; Spitzer, Kathy – Big6 Newsletter, 1998
Explains the Big6 approach to information problem-solving based on exercises that were developed for college or upper high school students that can be completed during class sessions. Two of the exercises relate to personal information problems, and one relates Big6 skill areas to course assignments. (LRW)
Descriptors: Assignments, Class Activities, Higher Education, Information Literacy
Peer reviewedBarab, Sasha A.; Hay, Kenneth E.; Duffy, Thomas M – TechTrends, 1998
Educators are adopting learner-centered instruction in which students, facilitated by technology, collaborate with peers and engage in problem solving and inquiry. This article discusses ways to use technology in authentic learner inquiry as an information resource, content contextualizer, communication tool, construction kit, and…
Descriptors: Computer Uses in Education, Cooperative Learning, Educational Environment, Educational Technology
Pineda, Ernest M. – American School & University, 1999
Discusses ways to help resolve the Y2K problem and avoid disruptions in school security and safety. Discusses computer software testing and validation to determine its functionality after year's end, and explores system remediation of non-compliant fire and security systems. (GR)
Descriptors: Computer Software, Elementary Secondary Education, Fire Protection, Problem Solving
Gembala, Walter W. – American School & University, 1999
Examines the signs of school indoor air quality (IAQ) problems, why the problems exist, and control methods to use. Human physical symptoms to look for when an IAQ problem is present are highlighted and IAQ management planning techniques are discussed. (GR)
Descriptors: Disease Control, Elementary Secondary Education, Indoor Air Pollution, Problem Solving
Peer reviewedCroft, Frank M. Jr. – Engineering Design Graphics Journal, 1998
Evaluates the use of modern CAD methods to solve geometric problems. Solves descriptive geometry problems using the layout and position of the successive auxiliary views from the projection of three-dimensional figures onto a two-dimensional plane of paper. (CCM)
Descriptors: Computer Assisted Design, Engineering Graphics, Geometric Concepts, Mathematics Activities
Peer reviewedOlson, Melfried – Teaching Children Mathematics, 1998
Presents a problem for students in grades 1-6 concerning the concept of probability. Discusses the student problem-solving process, and provides some responses to the problem published in the January 1998 issue of this journal. (ASK)
Descriptors: Elementary Education, Elementary School Mathematics, Mathematics Activities, Mathematics Instruction
Peer reviewedTorres, Bayardo B. – Biochemical Education, 1998
Recommends utilizing biochemistry problems to develop students' abilities to clearly identify the relevant questions hidden in problematic situations and to select the information required to solve them. This procedure is highly motivating and offers students a tool for evaluating their achievements. (Author/CCM)
Descriptors: Biochemistry, Higher Education, Learning Strategies, Problem Solving
Peer reviewedChang, Chun-Yen; Barufaldi, James P. – International Journal of Science Education, 1999
Reports on the effects of a problem-solving-based instructional model on earth science students' (n=172) achievement and alternative frameworks. Results revealed that the problem-solving-based instructional model significantly improved the achievement of students, especially at the application level. Students in the treatment group experienced…
Descriptors: Academic Achievement, Earth Science, Foreign Countries, Misconceptions
Peer reviewedGlasman, Naftaly S.; Glasman, Lynette D. – Peabody Journal of Education, 1997
Introduces the topic of school leadership, examining common definitions of leadership, identifying specific leadership behaviors hypothesized to be directly related to these definitions, describing college and university preparation programs for school leadership, and providing an example of a key element common to both educational leadership…
Descriptors: Administrator Education, Administrator Qualifications, Elementary Secondary Education, Higher Education
Peer reviewedBrown, Helen; Meyers, Bernice; Schmidt, William – Hoosier Science Teacher, 1999
Marbles were successfully used to help primary students develop concepts of motion. Marble-unit activities began with shaking and rattling inference bags and predicting by listening just how many marbles were in each bag. Students made qualitative and quantitative observations of the marbles, manipulated marbles with a partner, and observed…
Descriptors: Concept Teaching, Elementary Education, Energy, Motion
Peer reviewedConte, Anthony E.; Weber, Robert E. – Technology Teacher, 1999
Sponsored by the National Science Foundation, the New Jersey Statewide Systemic Initiative for Achieving Excellence in Mathematics, Science, and Technology Education helped teachers learn to integrate the three subjects. (JOW)
Descriptors: Elementary Secondary Education, Integrated Curriculum, Mathematics Education, Problem Solving
Peer reviewedWicklein, Robert C.; Rojewski, Jay W. – Journal of Industrial Teacher Education, 1999
A Delphi panel of 25 engineers, scientists, and educators rated the importance of mental methods for technology education curriculum. Defining, analyzing, and communicating were rated very important; 21 others were considered important. Results could form the basis of a mental processes-based curriculum involving solution of technological…
Descriptors: Cognitive Processes, Curriculum Development, Delphi Technique, Elementary Secondary Education


