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Winslow, Joyce – Science and Children, 2000
Introduces three design challenges for fourth, fifth, and sixth grade students created by the Challenger Center for Space Science Education. Presents information on Space Day and the National Classroom and provides Internet site addresses. (YDS)
Descriptors: Cooperative Learning, Intermediate Grades, Mathematics Education, Problem Solving
Childress, Vincent W. – Journal of Technology Education, 1996
An experimental group of 17 eighth graders and 16 controls conducted 2 iterations of an activity to design wind collectors. Experimentals received science and math instruction between iterations. The control group scored better on the posttest. Interviews showed the experimentals tried to apply science concepts; the controls depended on what they…
Descriptors: Grade 8, Integrated Curriculum, Intermediate Grades, Mathematics Education

Smith, Ruth Baynard – Gifted Child Today Magazine, 1994
Intermediate level academically talented students learn essential elements of computer programming by working with robots at enrichment workshops at Dwight-Englewood School in Englewood, New Jersey. The children combine creative thinking and problem-solving skills to program the robots' microcomputers to perform a variety of movements. (JDD)
Descriptors: Academically Gifted, Creative Thinking, Enrichment Activities, Intermediate Grades
Bliss, Clifford; Giles, Bob – 1995
This unit for fourth grade and high school includes elements of careers, economics and free enterprise for fourth graders and elements of problem solving and design, manufacturing, drafting, and woodworking for high school students. The unit is taught in both the fourth grade and the high school classrooms. The unit involves planning, designing,…
Descriptors: Career Exploration, Design, Economics, Grade 4
Miller, Lucy – 1998
Design technology integrates problem solving with an awareness of the effects of technology on society and the environment. This book places problem solving in a realistic context and addresses situations that are meaningful to students. Design technology aims to develop confidence in problem solving and competence in using technology wisely. This…
Descriptors: Design, Educational Resources, Educational Technology, Hands on Science
Oklahoma State Dept. of Vocational and Technical Education, Stillwater. Curriculum and Instructional Materials Center. – 1991
This curriculum guide provides technology learning activities designed to prepare students in grades 6-10 to work in the world of the future. The 8-day course provides exploratory, hands-on learning activities and information that can enhance the education of students of all types in an integrated curriculum that provides practical applications of…
Descriptors: Creative Thinking, Critical Thinking, Decision Making Skills, Integrated Curriculum
Peel Board of Education, Mississauga (Ontario). – 1996
This book promotes an integrated curriculum to assist students in grades 6-9 in seeing the links between different subject areas and in a larger context, the direct relevance of what they are learning in school to their needs later in life. The book uses a problem-solving approach that is "technological" in nature: the book provides…
Descriptors: Academic Achievement, Construction Materials, Curriculum Enrichment, Design
Garey, Robert W. – 1992
The Randolph, New Jersey Intermediate School updated its industrial arts program to reflect the challenges and work force of the Twentieth Century in which students apply a design/problem-solving process to solve real-world problems. In the laboratory portion of the program, students circulate between workstations to define problems, complete…
Descriptors: Computer Assisted Instruction, Curriculum Development, Curriculum Evaluation, Educational Objectives
Czerneda, Julie, Ed. – 1996
Technology's impact on society is growing everyday. The need to include technology education as core material for all students has been recognized by educators around the world. This book is a practical guide to using the problem-solving approaches integral to the design process in order to integrate technology education into all subject areas for…
Descriptors: Art, Cooperative Learning, Curriculum Enrichment, Curriculum Guides