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Carroll, Norine – ProQuest LLC, 2017
By the year 2025, 75% of the workforce will consist of Generation Y (Kim, 2017). With the major shift in the workforce, organizations must consider the different learning styles and expectations of the Y generation, as compared to the previous, dominant generations (Tulgan, 2009). In order to determine if there is a difference in short-term and…
Descriptors: Retention (Psychology), Generational Differences, Pretests Posttests, Computer Assisted Instruction
Leh, Jayne M.; Jitendra, Asha K. – Learning Disability Quarterly, 2013
This study compared the effectiveness of computer-mediated instruction (CMI) and teacher-mediated instruction (TMI) on the word problem-solving performance of students struggling in mathematics. Both conditions integrated cognitive modeling that focused on the problem structure using visual representations with critical instructional elements…
Descriptors: Instructional Effectiveness, Mathematics Achievement, At Risk Students, Achievement Tests
Proske, Antje; Narciss, Susanne; McNamara, Danielle S. – Journal of Research in Reading, 2012
Research on expert performance suggests that deliberate practice provides optimal opportunities for expertise development. This study examined whether the provision of computer-based scaffolding (CBS) guiding deliberate practice facilitates students' development of writing expertise. A CBS environment "escribo" was designed to externally…
Descriptors: Writing Instruction, Feedback (Response), Writing Research, Expertise
Sossi, Dino; Jamalian, Azadeh; Richardson, Shenetta – Journal of Mathematics Education at Teachers College, 2011
This exploratory study compared a computer-based mathematics education intervention with two more traditional approaches with the purpose of improving instruction in perimeter and area. Kidspiration software, tile/stick manipulatives and pencil/paper-based copying/drawing of shapes were implemented in a 3rd Grade New York City public school…
Descriptors: Intervention, Mathematics Education, Computer Managed Instruction, Conventional Instruction
Shavelson, Richard J.; Winkler, John D. – 1982
Claims that computers and other high technology can replace teachers and staff, thereby reducing educational costs, are unwarranted for several reasons. First, most cost analyses focus on hardware costs, which are not the major factor directing the cost of computer assisted instruction (CAI). Second, technology is more likely to change the skill…
Descriptors: Computer Assisted Instruction, Computer Managed Instruction, Computer Programs, Computers
Zuberman, Lea K. – 1983
This critical review and evaluation of the literature covers the field of computer assisted instruction (CAI) and reading from its inception to the present day. Seventeen research studies are discussed as well as four surveys of previous research in this field. Major issues addressed include the effectiveness of CAI and computer managed…
Descriptors: Ability, Age, Attitudes, Check Lists

Kulik, James A.; And Others – Computers in Human Behavior, 1985
This metaanalysis of 32 comparative studies shows that computer-based education has generally had positive effects on the achievement of elementary school pupils. However, these effects are different for off-line computer managed instruction and interactive computer assisted instruction (CAI); interactive CAI produces greater increases in student…
Descriptors: Academic Achievement, Classification, Computer Assisted Instruction, Computer Managed Instruction