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Dorn, William S.; Edwards, Judith B. – J Educ Data Process, 1969
Descriptors: Autoinstructional Aids, Computer Assisted Instruction, Computer Programs, Mathematics Curriculum
Johnson, John W. – 1975
Engineering mechanics is recognized as one of the core subject matter areas of most engineering and technology educational programs. The study of mechanics and particularly the applications of problem solving to rigid bodies at rest (statics) has proven to be troublesome to students. Systematic problem solving includes analysis, synthesis, and…
Descriptors: Autoinstructional Aids, Computer Assisted Instruction, Engineering Education, Higher Education
Peer reviewed Peer reviewed
Wagman, Morton – Journal of Counseling Psychology, 1980
An experimental test of the self-paced interactive PLATO computer-based Dilemma Counseling System (PLATO DCS) was conducted. PLATO DCS counseling resulted in greater improvement in clients than did counseling in controlled conditions. Subjects rated the PLATO DCS as interesting and not too impersonal. (Author)
Descriptors: Autoinstructional Aids, College Students, Computer Assisted Instruction, Counseling Techniques
Dyman, Daniel J. – 1979
A description of the Didactor, a "computer-type teaching machine," is given. Also included are results of a comparison of student test results for Didactor-taught and control groups receiving instruction through an audio-tape tutorial mode. (MK)
Descriptors: Audiovisual Aids, Autoinstructional Aids, Computer Assisted Instruction, Educational Media
Learning, 1983
Thirty-five outstanding educational programs were identified by a panel composed of educators, parents, and students. Computer programs are listed in the areas of reading and language arts, mathematics, general problem solving, science, social studies, creative arts, foreign languages, and computer literacy. (PP)
Descriptors: Autoinstructional Aids, Computer Assisted Instruction, Computer Literacy, Computer Programs
Reif, Frederick; Scott, Lisa A. – 1997
The acquisition of factual knowledge is increasingly insufficient to prepare students to cope in this complex and rapidly changing world. Students need to learn effective ways of thinking so they can use their acquired knowledge flexibly, solve diverse problems, and become good independent learners. Two pervasive educational problems limit the…
Descriptors: Academic Achievement, Autoinstructional Aids, Cognitive Processes, Computer Assisted Instruction
Peer reviewed Peer reviewed
Lee, Seong-Soo; Lee, Y. H. K. – Journal of Educational Psychology, 1991
The assumption that learners are the best judges of learning needs in computer-assisted instruction was tested by assigning 55 eleventh graders to learner-control or program-control conditions. Results indicate that efficiency of the learner-control strategy cannot be taken for granted and emphasize the importance of prior knowledge. (SLD)
Descriptors: Autoinstructional Aids, Chemistry, Comparative Analysis, Computer Assisted Instruction
Clark, Kevin A. – 1993
This report examines the effects of feedback, through the use of computer-assisted instruction, on the problem-solving abilities of "at-risk" college students, i.e., students identified as academically disadvantaged. Study subjects were 30 male and female undergraduate students aged 18 to 23 years. The study used two computer-assisted…
Descriptors: Autoinstructional Aids, Comparative Analysis, Computer Assisted Instruction, Educationally Disadvantaged
Moursund, David – 1983
Designed to help elementary and middle school teachers increase their level of computer-education literacy, this book discusses the capabilities, limitations, applications, and possible impact of computers in education. Chapter 1 briefly defines what a computer is and explains the book's goals and applications. Chapter 2 provides a technical…
Descriptors: Autoinstructional Aids, Calculators, Computer Assisted Instruction, Computer Literacy