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Advance CTE: State Leaders Connecting Learning to Work, 2020
The Strengthening Career and Technical Education for the 21st Century Act (Perkins V) pushes states to improve the public accessibility of Career Technical Education (CTE) data. According to the law, state agencies, as well as local recipients, must share data on the performance of all CTE students, and subgroups of learners, and make this…
Descriptors: Vocational Education, Federal Legislation, Educational Legislation, Data Collection

Galus, Pamela – Science Teacher, 2001
Using movie scenes about being trapped in quicksand as a starting point, this inquiry-oriented lesson engages students in a novel study of density. Students collect and graph data collected on a variety of objects placed in a mixture of sand and water. From their findings, students consider misconceptions about quicksand and its real dangers. (DLH)
Descriptors: Data Collection, Density (Matter), Graphs, Inquiry

Somers, Kay; And Others – Mathematics Teacher, 1996
Presents an activity to help students overcome mathematics anxiety by collecting and organizing data through summarization and graphic representation. (MKR)
Descriptors: Data Collection, Graphs, Higher Education, Learning Activities

Duncan, David R.; And Others – School Science and Mathematics, 1976
Weather data gathered from the local newspaper can be used in teaching a unit on statistics. (SD)
Descriptors: Data Collection, Graphs, Instruction, Mathematical Applications

Young, Victoria – Mathematics Teacher, 2002
Presents an activity in which students gather and analyze data involving the compatibility of human blood types. Uses student surveys, Venn diagrams, and random numbers. Includes activity sheets. (Author/NB)
Descriptors: Data Analysis, Data Collection, Graphs, Mathematics Activities

Forkey, Carole – Science Teacher, 1996
Presents the "Before Technology and After Technology" lab where students first complete a simple lab and graph the data by hand and then repeat the lab using graphing calculators. Enables students to see how technology can make data collecting, graphing, and analyzing more fun. (JRH)
Descriptors: Data Analysis, Data Collection, Graphing Calculators, Graphs

Friedler, Yael; McFarlane, Angela E. – Journal of Computers in Mathematics and Science Teaching, 1997
Presents a study that introduces data logging using portable computers as part of an investigative approach to science. Working with control and experimental classes of 14- and 16-year-olds, results suggest that data logging can have an impact on graphing skills at age 14 which is not necessarily repeatable at age 16. (Author/AIM)
Descriptors: Computer Uses in Education, Data Collection, Graphs, Microcomputers

Educational Studies in Mathematics, 1978
The students in a low-ability first-year classroom of a secondary school use a questionnaire and punched cards to collect and organize data about their classmates. The first five minutes and the first four minutes after the first quarter of an hour of the resulting class discussion are included. (MN)
Descriptors: Activity Units, Data, Data Collection, Data Processing

Dengerud-Au, Mary – Mathematics Teacher, 2000
Presents a lesson involving the measurement of wood beams and the prediction and testing of their stress limits. Provides an example of a problem with multiple solutions, each with different consequences. (KHR)
Descriptors: Data Analysis, Data Collection, Force, Graphs

Barrett, Gloria; And Others – Mathematics Teacher, 1988
A fairly traditional precalculus problem is modified to address some common concerns with the teaching of problem solving. Areas of problem solving which are illustrated include: posing the problem; modeling the problem; transforming the data; and examining the solution. (PK)
Descriptors: Data Analysis, Data Collection, Graphs, Mathematical Applications

Rogers, Laurence T. – School Science Review, 1995
Discusses the important role of graphs in conveying scientific information and the use of computer software in amplifying the value of graphs as tools for scientific investigation. Topics discussed include: skills required for analyzing and interpreting graphs, software design, and teaching and learning strategies. (JRH)
Descriptors: Computer Software, Computer Uses in Education, Data Analysis, Data Collection
New York State Education Dept., Albany. Bureau of General Education Curriculum Development. – 1977
Graphical representation of statistical data is the focus of this resource handbook. Only graphs which present numerical information are discussed. Activities involving the making, interpreting, and use of various types of graphs and tables are included. Sections are also included which discuss statistical terms, normal distribution and…
Descriptors: Activity Units, Data Collection, Data Processing, Graphs

Palmer, Alfred C. – Science Teacher, 1986
Describes an activity for determining how long and when a tree lived by comparing its ring sizes with local precipitation records. Suggests benefits for this type of dendrochronology activity. (TW)
Descriptors: Climate, Data Analysis, Data Collection, Data Interpretation
Goodwin, Peter – 1990
This resource manual focuses on physics labs that relate to the world around us and utilize simple equipment and situations. Forty-five laboratories are included that relate to thermodynamics, electricity, magnetism, dynamics, optics, wave transmission, centripetal force, and atomic physics. Each lab has three sections. The first section…
Descriptors: Atomic Theory, Data Analysis, Data Collection, Electricity

Jenkins, Randy A. – Physics Teacher, 1993
Presents an experiment that measures the acceleration and velocity of a model rocket. Lift-off information is transmitted to a computer that creates a graph of the velocity. Discusses the analysis of the computer-generated data and differences between calculated and experimental velocity and acceleration of several rocket types. (MDH)
Descriptors: Acceleration (Physics), Computation, Computer Oriented Programs, Computer Uses in Education
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