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Kamsa, Imane; Elouahbi, Rachid; El Khoukhi, Fatima – Journal of Information Technology Education: Research, 2017
Aim/Purpose: To identify and rectify the learning difficulties of online learners. Background: The major cause of learners' failure and non-acquisition of knowledge relates to their weaknesses in certain areas necessary for optimal learning. We focus on e-learning because, within this environment, the learner is mostly affected by these…
Descriptors: Foreign Countries, Graduate Students, Masters Programs, Learning Disabilities
Hartman, JudithAnn R.; Dahm, Donald J.; Nelson, Eric A. – Journal of Chemical Education, 2015
Studies in cognitive science have verified that working memory (where the brain solves problems) can manipulate nearly all elements of knowledge that can be recalled automatically from long-term memory, but only a few elements that have not previously been well memorized. Research in reading comprehension has found that "lecture notes with…
Descriptors: Science Instruction, High Schools, Secondary School Science, Undergraduate Study
Ortiz, Enrique – International Journal for Mathematics Teaching and Learning, 2014
Students start to memorize arithmetic facts from early elementary school mathematics activities. Their fluency or lack of fluency with these facts could affect their efforts as they carry out mental calculations as adults. This study investigated participants' levels of brain activation and possible reasons for these levels as they solved…
Descriptors: Brain Hemisphere Functions, Arithmetic, Problem Solving, Measurement Equipment
Cox, Brian D.; And Others – 1987
As an aid to contemporary research, this paper examines historical ideas about young children's use of strategies for memorization and the transfer of such strategies to different contexts. Discussion focuses on (1) current approaches to inducing transfer of strategies; (2) Thorndike and Woodworth's concept of identical elements; (3) Gestalt…
Descriptors: Cognitive Processes, Memorization, Problem Solving, Theories
McKean, Kevin – Discover, 1983
Discusses current research (including that involving amnesiacs and snails) into the nature of the memory process, differentiating between and providing examples of "fact" memory and "skill" memory. Suggests that three brain parts (thalamus, fornix, mammilary body) are involved in the memory process. (JN)
Descriptors: Cognitive Processes, Memorization, Memory, Neurology
Patti, Paul J. – 1994
This study identified 10 savants with developmental disabilities and an exceptional ability to calculate calendar dates. These "calendar calculators" were asked to demonstrate their abilities, and their strategies were analyzed. The study found that the ability to calculate dates into the past or future varied widely among these…
Descriptors: Autism, Cognitive Processes, Computation, Developmental Disabilities

Powell, Stuart – Educational Psychology, 1987
Reviews questions that arise when considering critical thinking in the process of education. Key issues discussed include the definition of critical thought and effective ways to facilitate critical thinking skills. Concludes with an analysis of how children use thinking skills and the factors teachers need to consider when designing…
Descriptors: Cognitive Processes, Critical Thinking, Evaluative Thinking, Foreign Countries

Whitebread, David – European Journal of Psychology of Education, 1999
Reports on two related studies intended to explore the interactions among children's metacognitive abilities, their working memory capacity, the development and selection of strategies, and their performance on problem-solving tasks. Explains that in study 1 children performed a reclassification task, and in study 2 children performed a…
Descriptors: Child Development, Children, Cognitive Processes, Educational Research
Chi, Michelene T. H. – Human Development, 1985
Explanations for memory development have tended to focus on acquistion of general strategies and metaknowledge. Recently, emphasis has been given to the knowledge base as a whole, including general world-knowledge and domain-specific knowledge and procedures. Evidence is presented from the memory development literature showing why strategies and…
Descriptors: Cognitive Development, Cognitive Processes, Educational Research, Elementary Secondary Education

Moses, Monte C.; Thomas, Jan – NASSP Bulletin, 1986
Outlines leadership capabilities that effective principals can exert to improve the teaching of higher level thinking skills to students. An important initial step is to make the development of student thinking skills a building priority at the school. (MD)
Descriptors: Cognitive Development, Cognitive Processes, Critical Thinking, Curriculum Development
Deutsch, Shirley – 1982
Approaches to helping students remember concepts in secondary mathematics are presented. The eleven points listed are: 1) distinguishing between natural and whole numbers; 2) remembering isosceles triangles have two equal sides; 3) finding all possible pairs of integral factors of a given number; 4) recalling the meaning of reflexive, symmetric,…
Descriptors: Cognitive Processes, Equations (Mathematics), Mathematical Concepts, Mathematics Instruction
Chang, Moon K. – 1986
Undoubtedly test anxiety is a troublesome condition found to be prevalent today among college students. Over the years various attempts have been made to explore how test anxiety influences academic achievement. This paper discusses the extent to which test anxiety affects academic achievement of college students, and the techniques found to be…
Descriptors: Academic Achievement, Attention, Cognitive Processes, Grades (Scholastic)

Van Devender, Evelyn M. – School Science and Mathematics, 1992
Describes three activities that the teacher can employ to help students develop thinking skills through mathematics instruction: (1) memorization using the technique of chunking; (2) higher order thinking with magic squares; and (3) predicting games. Identifies eight facets of the teacher's role in promoting thinking skills. (MDH)
Descriptors: Abstract Reasoning, Cognitive Development, Cognitive Processes, Discovery Processes