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Leutzinger, Larry P. – Arithmetic Teacher, 1985
The four-step method of problem solving is described: read the problem, represent or diagram, set up the calculations and compute, and write the answer. Other problem-solving tips are also included. (MNS)
Descriptors: Elementary Education, Elementary School Mathematics, Learning Activities, Mathematics Instruction
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Kimberling, Clark – Mathematics Teacher, 1985
The progression from simple interest to compound interest leads naturally and quickly to the number e, involving mathematical discovery learning through writing programs. Several programs are given, with suggestions for a teaching sequence. (MNS)
Descriptors: Computer Software, Discovery Learning, Learning Activities, Mathematics Instruction
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Henry, Thomas – Social Studies, 1985
Role playing Congress provides high school American government students with a unique opportunity not only to learn the workings of the Congress, but also to be active participants in the learning process. Research studies have shown that students enjoy those classes in which they are actively participating. (RM)
Descriptors: High Schools, Learning Activities, Relevance (Education), Simulation
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Schlegel, Ronald D. – Technology Teacher, 1986
This article discusses the procedure, historical development, and applications of holography, and discusses the feasibility and value of implementing a unit or course of study of laser holography into an existing photography laboratory and curriculum. An equipment and supplies list, giving supplies and cost, is included. (CT)
Descriptors: Curriculum Development, Curriculum Evaluation, Holography, Lasers
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Trussell, Margaret Edith – Journal of Geography, 1986
Presents a unit on map and compass activities which introduces compass direction, magnetic declination and conversion of map measurement to familiar units. Requires four, one-hour class meetings and may be followed by a half-day orienteering activity. (Author/JDH)
Descriptors: Geography, Higher Education, Learning Activities, Map Skills
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Lesson, Neville – Australian Mathematics Teacher, 1985
Some examples for investigating shapes in the environment are given. Circular objects, triangulation, symmetrical designs, and further investigations are listed. (MNS)
Descriptors: Discovery Learning, Elementary Education, Elementary School Mathematics, Geometric Concepts
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Gardiner, Tony – Mathematics in School, 1986
Exploring the strategies used in simple games for two players is discussed. Six games are briefly described, followed by suggestions for analyzing them. (MNS)
Descriptors: Educational Games, Elementary Education, Elementary School Mathematics, Learning Activities
Classroom Computer Learning, 1986
Presents seven computer-oriented activities. Although some of the activities assume a certain level of computer expertise, all of them can be easily adapted for students in any grade. Activity topics include electronic geoboard, codes/coding, probing problems, looping, metrics, Logo databases, and writing Cinquain poetry. Program listings are…
Descriptors: Computer Science Education, Computer Software, Databases, Elementary Secondary Education
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Handelsman, Mitchell M. – Teaching of Psychology, 1985
Described is an exercise that will help college-level psychology students learn abstract and relational thinking skills. The exercise will provide students with a new way to handle compare-and-contrast questions. (RM)
Descriptors: Abstract Reasoning, Comparative Analysis, Concept Formation, Course Descriptions
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Smith, Gregory L. – Social Studies, 1985
Many junior and senior high school students think that up and down are related to the directions north and south. Ways to correct this directional misconception of students are discussed. (RM)
Descriptors: Geography Instruction, Learning Activities, Locational Skills (Social Studies), Map Skills
Marchionini, Gary – Computing Teacher, 1985
Presents a developmental approach to teaching programing at all educational levels which stresses concepts rather than syntax; provides motivation, relevant examples, and activities; proceeds from concrete to pictorial to abstract according to age and experience of learners; and utilizes increasingly complex activities building upon and extending…
Descriptors: Abstract Reasoning, Fundamental Concepts, Learning Activities, Programing
Sharp, Pamela – Classroom Computer Learning, 1984
Outlines four dual art and computer-art lessons, presenting lesson objectives, activities, and suggested instructional strategies. The lessons focus on the usefulness of shared images, how moving an object affects its shape, creating the illusion of depth on a two-dimensional surface, and the relationship of parts to the whole. (JN)
Descriptors: Art Activities, Computer Oriented Programs, Computer Science Education, Elementary Education
Classroom Computer Learning, 1984
Presents six computer-oriented classroom activities. They include: surveying a house for products using microprocessors, writing a program to display a flag, experimenting with LOGO's graphics capabilities, writing stories on the computer, using FOR/NEXT commands to create a blinking object, and teaching the Milton Bradley Big Trak to play…
Descriptors: Class Activities, Computer Graphics, Computer Science Education, Elementary Education
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Eichelman, Fred R. – Social Education, 1984
Philography, or autograph collecting, is a good way to liven up social studies classes. For example, after watching the TV miniseries "Winds of War," students wrote to famous real life participants in the war asking them a variety of questions. The response rate was nearly 100 percent. (RM)
Descriptors: Educational Innovation, Elementary Secondary Education, History Instruction, Learning Activities
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Simmons, Barbara J. – Childhood Education, 1984
Describes activities to stimulate elementary school students' and kindergarten children's interest in mixing colors and selecting attribute cards. Suggests ways to encourage parents and other adults to participate in positive activities with children. (RH)
Descriptors: Elementary Education, Elementary School Students, Learning Activities, Painting (Visual Arts)
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