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Teaching Science, 2015
From star systems to social systems, CONASTA 64 connects teachers to researchers and scientists working on the cutting edge of modern science. We asked two CONASTA 64 Keynote speakers, Steven Tingay and Ian Walker to share their passion for their work and their dedication for giving back to the science community.
Descriptors: Astronomy, Interviews, STEM Education, Faculty Development
Ollerton, Mike – Mathematics Teaching, 2010
In this article, the author explores what Assessing Pupils' Progress (APP) is about. He contends that the predilection for testing is a catastrophe as far as the teaching and learning of mathematics is concerned; it is an outcome of the drive for collecting so-called "data" on pupils. What those people, who should know better, either choose to…
Descriptors: Mathematics Education, Testing, Students, Data Collection
Yates, Gregory C. R. – Australasian Journal of Special Education, 2008
Principles of scientific data accumulation and evidence-based practices are vehicles of professional enhancement. In this article, the author argues that a scientific knowledge base exists descriptive of the relationship between teachers' activities and student learning. This database appears barely recognised however, for reasons including (a)…
Descriptors: Qualitative Research, Data Collection, Teaching Methods, Psychology

Kohler, Fred E. – 1979
The document describes the use of weather maps and data in teaching introductory college courses in synoptic meteorology. Students examine weather changes at three-hour intervals from data obtained from the "Monthly Summary of Local Climatological Data." Weather variables in the local summary include sky cover, air temperature, dew point, relative…
Descriptors: Data Collection, Educational Media, Geography Instruction, Higher Education

Groth, Randall E.; Powell, Nancy N. – Mathematics Teacher, 2004
While helping high school students develop statistical thinking, teachers need to engage them in all phases of investigative cycle. Students should master some of the nonmathematical elements of the cycle involved in identifying a problem, creating a plan of attack and gathering necessary data.
Descriptors: High School Students, Student Research, Research Projects, Problem Solving
Tresidder, Gwen – Mathematics Teaching Incorporating Micromath, 2006
When marking GCSE data handling coursework, the author was repeatedly reminded just how poor the level of statistical understanding is among students. In response to a feeling that the teaching of handling data topics was limited, the author and her colleague designed a project with Y8 students to try to teach statistics for a deeper…
Descriptors: Statistics, Mathematics Instruction, Mathematics Teachers, Classroom Techniques

Atwood, Virginia A. – Social Education, 1985
Social studies instruction using a variety of data sources engages elementary school children in relatively autonomous collecting, organizing, and evaluating of data--processes necessary for exercising sound judgment and taking appropriate action. (RM)
Descriptors: Data, Data Collection, Data Interpretation, Decision Making

Platt, Penny – Art Education, 1991
Describes how art teachers can conduct their own scholarly research in the classroom. Outlines the design of a Grapho-Linguistics program aimed at teaching reading through art. Describes art strategies development, administrative reactions, sample and data collection methods, testing techniques, and procedures for achieving publication of…
Descriptors: Art Education, Classroom Research, Data Collection, Educational Philosophy
Sullivan, Mary M. – 1993
Traditional elementary statistics instruction for non-majors has focused on computation. Rarely have students had an opportunity to interact with real data sets or to use questioning to drive data analysis, common activities among professional statisticians. Inclusion of data gathering and analysis into whole class and small group activities…
Descriptors: Constructivism (Learning), Data Collection, Discussion (Teaching Technique), Higher Education
Jamieson, Ian – Kamehameha Journal of Education, 1995
Technology can be useful in physics classrooms, though teachers must be careful not to let technology remove students from first-hand experiences with nature through observation and experimentation. The paper examines how to enhance physics instruction using computers as graphing tools, for data collection, and as real-world simulators. (SM)
Descriptors: Class Activities, Computer Assisted Instruction, Computer Graphics, Computer Simulation
Newman, Denis; Torzs, Frederic – 1991
Arguing that the development of a notion of sense-making is of critical importance to improving science learning, this paper examines science teaching in four Boston (Massachusetts)-area classrooms that participated in an experiment on ways of integrating technology into a sixth-grade science curriculum on the earth's seasons. The task of the…
Descriptors: Computer Assisted Instruction, Computer Simulation, Computer System Design, Curriculum Design
Scott-Jones, Diane – 1985
There is a need for educational research even during financial difficulties. Wisdom and efficiency in spending, careful data collection, and collaboration among agencies should be important goals while resources are scarce. Considering the situation, this paper describes critical issues in elementary and secondary education and the manner in which…
Descriptors: Adolescent Development, Bilingual Education, Child Development, Computers
Rosica, Thomas C. – 1986
The papers presented at this conference review current research on effective educational practices for low-achieving students and identify those that might be applied to programs funded under Chapter 1 of the Education Consolidation and Improvement Act of 1981. A function assumed by several conference participants was to act as reactor to papers…
Descriptors: Academic Achievement, Accountability, Compensatory Education, Data Collection