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Peer reviewedOst, David H. – School Science and Mathematics, 1985
Discusses the nature of technological literacy, considering its relationship to science education, mathematics education, and computer science education. Indicates that technological literacy is a skill and an attitude which is basic to contemporary society. Problems related to cognitive development are noted. (JN)
Descriptors: Cognitive Development, Computer Science Education, Mathematics Education, Science Education
Huber, Leonard N. – Classroom Computer Learning, 1985
Discusses Piaget's pre-operational, concrete operational, and formal operational stages and shows how this information sheds light on how children approach computers and computing, particularly with the LOGO programming language. (JN)
Descriptors: Cognitive Development, Computer Science Education, Computer Software, Developmental Stages
Shi, Fuqian; Wei, Jincai – International Education Studies, 2008
In the current teaching activities on curriculum, teachers taught all kinds of computer language at the most of the time. Students also focus on a variety of examinations, but the real time to train students' independent software developing skill is very limited. This has resulted in the students only to copy other people's systems design ideas,…
Descriptors: Programming, Creative Thinking, Creative Development, Science Activities
Peer reviewedPerry, Margaret – NASSP Bulletin, 1986
A grant-funded program to use computers to develop thinking skills in gifted sixth- and seventh-grade students is described. Students learn to apply different types of thinking, use different types of software, and develop their own programs and programs for teachers in other classes. (PGD)
Descriptors: Cognitive Development, Computer Oriented Programs, Computer Science Education, Computer Uses in Education
Felleisen, Matthias; Findler, Robert Bruce; Flatt, Matthew; Krishnamurthi, Shriram – Computer Science Education, 2004
The TeachScheme! Project aims to reform three aspects of introductory programming courses in secondary schools. First, we use a design method that asks students to develop programs in a stepwise fashion such that each step produces a well-specified intermediate product. Second, we use an entire series of sublanguages, not just one. Each element of…
Descriptors: Programming, Programming Languages, Computer Science Education, Program Implementation

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