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Peer reviewedAllen, Joseph R. – Language in Society, 1992
Describes the acquisition and use of a Chinese metalanguage with which ambiguous spoken words are graphically contextualized. The metalanguage is composed of strategies that range from the actual writing of the Chinese graph (character) to those where the graph is accommodated in a verbal presentation. (12 references) (JL)
Descriptors: Chinese, Graphs, Ideography, Language Acquisition
Peer reviewedAigrain, Philippe; Longueville, Veronique – Information Processing and Management, 1992
Describes a general framework for the evaluation of sets of links for user navigation between images in pictorial data banks and gives an example of the construction of a connection graph in a large image bank. A study of user navigation behavior in this set of links is described and the results are discussed. (18 references) (LAE)
Descriptors: Databases, Evaluation Methods, Graphs, Hypermedia
Peer reviewedSpencer, Ian; Krizel, Peter – Child Development, 1994
Children, ages 9 to 13 years, made judgments of proportion with a variety of graphical elements in 2 experiments. A characteristic pattern of over- and underestimation was observed; this pattern was also present, but previously unnoticed, in judgments made by adults. (MDM)
Descriptors: Adults, Age Differences, Children, Cognitive Development
Peer reviewedKo, Raphael H.; Bean, Charles P. – Physics Teacher, 1991
Described is how the crumpling of paper balls exhibits the concept of a topological dimension similar to fractals. The mass of the crumpled paper ball is found to be proportional to its diameter raised to a nonintegral power. (KR)
Descriptors: Fractals, Graphs, Physics, Problem Solving
Peer reviewedEvans, Howard E. II – Physics Teacher, 1991
An exercise which relates particle scattering and the calculation of cross-sections to answer the following question--"Do you get wetter by walking or running through the rain?"--is described. The calculations used to answer the question are provided. (KR)
Descriptors: Geometry, Graphs, Learning Activities, Physics
Burns, Marilyn – Writing Notebook: Creative Word Processing in the Classroom, 1991
Describes a learning strategy which asks students to write questions that can be answered from the information posted on a graph that they created. (MG)
Descriptors: Graphs, Intermediate Grades, Learning Strategies, Mathematics Instruction
Peer reviewedGilyarevskii, R. S.; Subbotin, M. M. – Journal of the American Society for Information Science, 1993
Describes the logical construction of several Russian hypertext systems, and discusses the navigational algorithms used, nodes selected, and coherence demanded. Several illustrative graphs are included, and an overview of the development of linking structures producing logical-semantic models is given. (20 references) (EA)
Descriptors: Algorithms, Coherence, Foreign Countries, Graphs
Peer reviewedPaisley, William – Journal of the American Society for Information Science, 1993
Reviews the characteristics of electronic communications technologies and their role in knowledge utilization. The uses of various technologies, relationships among technologies, and success in the marketplace are addressed; and issues for knowledge utilization research are discussed. (17 references) (EA)
Descriptors: Communications, Computer System Design, Graphs, Information Dissemination
Peer reviewedGoosen, Kenneth R.; Kusel, Jimie – Simulation & Gaming, 1993
Presents an interpolation methodology that duplicates and improves the results of mathematical functional relationships useful for designing business enterprise simulations and argues that interpolation is effective over the entire range of production and sales activity. (six references) (EA)
Descriptors: Algorithms, Business, Design, Economic Factors
Peer reviewedDoerr, Helen M.; Rieff, Cathieann; Tabor, Jason – Mathematics Teaching in the Middle School, 1999
Many students have difficulties in interpreting position versus time graphs. Presents an activity involving calculator-based motion labs that allows students to bring these graphs to life by turning their own motion into a graph that can be analyzed, investigated, and interpreted in terms of how they actually moved. (ASK)
Descriptors: Data Interpretation, Educational Technology, Graphing Calculators, Graphs
Peer reviewedJohnson, Art – Mathematics Teaching in the Middle School, 1999
Presents different real-world mathematics activities on data display and data analysis with pie charts from different time periods. (ASK)
Descriptors: Charts, Data Analysis, Data Interpretation, Graphs
Peer reviewedJackson, Raymond – Journal of Economic Education, 1999
Observes that the efficiency case against vouchers in textbook comparisons with income transfers is frequently incorrectly stated, or overstated. Clarifies the debate by deriving the algebraic relations under which a voucher is equivalent to an income transfer, generates no welfare loss, and when conventional views of income transfer superiority…
Descriptors: Economics, Economics Education, Graphs, Higher Education
Peer reviewedRoth, Wolff-Michael; Bowen, G. Michael – Science, Technology, and Human Values, 1999
Presents the results of a series of studies on the production, transformation, and interpretation of graphical representations from grade 8 to professional scientific practice in formal testing situations (inside) and in the course of field/laboratory work (outside). (Author/CCM)
Descriptors: Computer Graphics, Grade 8, Graphs, Higher Education
Peer reviewedWilkinson, Leland – Counseling Psychologist, 1999
Highlights effective graphical methods for screening and cleaning data, exploring and identifying models, and displaying data in counseling-psychology publications. Argues that graphs are not ancillary to scientific publications but are essential and, in some cases, sufficient expositions of results. (Author/GCP)
Descriptors: Counseling Psychology, Data Analysis, Data Interpretation, Graphs
Peer reviewedRaggett, Matthew – Physics Education, 2000
Stresses the value of graphing and computer algebra systems calculators when teaching about waves. Discusses how to input data into these calculators. Highlights the Texas Instruments' (TI) Web site at http://www.ti.com. (YDS)
Descriptors: Educational Technology, Grade 8, Graphing Calculators, Graphs


