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Peer reviewedHervey, Margaret A.; Litwiller, Bonnie H. – Arithmetic Teacher, 1971
Descriptors: Elementary School Mathematics, Graphs, Instruction, Number Concepts
Thompson, Robert I. – Independ Sch Bull, 1969
Descriptors: Grade 7, Graphs, Linear Programing, Mathematics Curriculum
Kramarski, B. – Learning and Instruction, 2004
The present study investigates the differential effects of cooperative learning with or without metacognitive instruction on making sense of graphs. Participants were 196 eighth-graders who studied in six classrooms. Data were analyzed by using quantitative and qualitative methods. Results indicated that students who were exposed to the…
Descriptors: Teaching Methods, Methods, Graphs, Group Dynamics
Farkas, N.; Ramsier, R. D. – Physics Education, 2006
We present a simple activity that permits students to determine the coefficient of restitution of bouncing balls using only a stopwatch, a metre stick and graphical analysis. The experiment emphasizes that simple models, in combination with careful attention to how students make measurements, can lead to good results in a straightforward way.
Descriptors: Physics, Teaching Methods, Graphs, Learning Activities
McLane, Kathleen – National Center on Student Progress Monitoring, 2008
There are a number of steps that parents can take to ensure that a child realizes the benefits of Curriculum-Based Measurement (CBM). The first is to become familiar with CBM. This article describes steps for parents both when CBM has not been implemented in the classroom and following adoption.
Descriptors: Curriculum Based Assessment, Elementary Education, Parents, Parent School Relationship
Sampson, Demetrios G., Ed.; Spector, J. Michael, Ed.; Ifenthaler, Dirk, Ed.; Isaías, Pedro, Ed. – International Association for Development of the Information Society, 2017
These proceedings contain the papers of the 14th International Conference on Cognition and Exploratory Learning in the Digital Age (CELDA 2017), 18-20 October 2017, which has been organized by the International Association for Development of the Information Society (IADIS) and endorsed by the Japanese Society for Information and Systems in…
Descriptors: Conference Papers, Student Journals, Diaries, Self Management
Terwel, Jan; van Oers, Bert; van Dijk, Ivanka; van den Eeden, Pieter – Educational Research and Evaluation, 2009
With regard to transfer, is it better to provide pupils with ready-made representations or is it more effective to scaffold pupils' thinking in the process of generating their own representations with the help of peers and under the guidance of a teacher in a process of guided co-construction? The sample comprises 10 classes and 239 Grade 5…
Descriptors: Control Groups, Mathematics Education, Graphs, Grade 5
Lovell, M.S. – Physics Education, 2007
This paper presents a derivation of all five Lagrange points by methods accessible to sixth-form students, and provides a further opportunity to match Newtonian gravity with centripetal force. The predictive powers of good scientific theories are also discussed with regard to the philosophy of science. Methods for calculating the positions of the…
Descriptors: Motion, Physics, Scientific Concepts, Science Instruction
Abramovich, Sergei; Ehrlich, Amos – Journal of Computers in Mathematics and Science Teaching, 2007
Inequalities are considered among the most useful tools of investigation in pure and applied mathematics; yet their didactical aspects have not received much attention in mathematics education research until recently. An important aspect of teaching problem solving at the secondary level deals with the notion of equivalence of algebraic…
Descriptors: Computer Software, Graphs, Misconceptions, Mathematics Education
Marchand, R. J.; McDevitt, T. J.; Bosse, Michael J.; Nandakumar, N. R. – PRIMUS, 2007
Many popular mathematical software products including Maple, Mathematica, Derive, Mathcad, Matlab, and some of the TI calculators produce incorrect graphs because they use complex arithmetic instead of "real" arithmetic. This article expounds on this issue, provides possible remedies for instructors to share with their students, and demonstrates…
Descriptors: Computer Software, Arithmetic, Computer Assisted Instruction, Graphs
Waugh, Michael – Science Teacher, 2007
The purpose of this article is to describe a simple laboratory activity in which students collect a series of measurements and then use graphical analysis to determine the nature of the relationship between an object's mass and the volume of water it displaces. In this activity, students explore the relationships between the mass of a floating…
Descriptors: Scientific Concepts, Models, Science Activities, Science Laboratories
King, Kenneth P. – Science Scope, 2007
The inertial balance is one device that can help students to quantify the quality of inertia--a body's resistance to a change in movement--in more generally understood terms of mass. In this hands-on activity, students use the inertial balance to develop a more quantitative idea of what mass means in an inertial sense. The activity also helps…
Descriptors: Science Instruction, Hands on Science, Teaching Methods, Scientific Concepts
Doto, Julianne; Golbeck, Susan – Science and Children, 2007
Collecting data and analyzing the results of experiments is difficult for children. The authors found a surprising way to help their third graders make graphs and draw conclusions from their data: digital photographs. The pictures bridged the gap between an abstract graph and the plants it represented. With the support of the photos, students…
Descriptors: Grade 3, Data Analysis, Graphs, State Standards
Burns, Marilyn – Instructor, 1986
Graphing skills are growing in importance in our information society, presenting facts and concepts in newspapers, magazines, and on television. Graphs incorporated into teaching develop children's problem-solving skills. Ways to use graphs in the classroom are discussed, and examples are given. (MT)
Descriptors: Elementary Education, Elementary School Mathematics, Graphs, Problem Solving
Peer reviewedAllison, Joe Frank – Mathematics Teacher, 1972
Descriptors: Graphs, Instruction, Mathematics, Number Systems

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