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de Bruin, Anique B. H.; Roelle, Julian; Carpenter, Shana K.; Baars, Martine – Educational Psychology Review, 2020
An exponential increase in the availability of information over the last two decades has asked for novel theoretical frameworks to examine how students optimally learn under these new learning conditions, given the limitations of human processing ability. In this special issue and in the current editorial introduction, we argue that such a novel…
Descriptors: Cognitive Processes, Difficulty Level, Independent Study, Metacognition
Chen, Bodong – Journal of Learning Analytics, 2015
In this commentary on Van Leeuwen (2015, this issue), I explore the relation between theory and practice in learning analytics. Specifically, I caution against adhering to one specific theoretical doctrine while ignoring others, suggest deeper applications of cognitive load theory to understanding teaching with analytics tools, and comment on…
Descriptors: Data Collection, Data Analysis, Theory Practice Relationship, Learning Theories
Wraga, William G. – Online Submission, 2010
This analysis identifies six problems with the the popular terms "rigorous academic curriculum" and "academic rigor": they bear multiple meanings, they contain negative connotations, they are survivals from the discredited learning theory called mental discipline, they have more to do with status than substance, they refer to an over-narrow…
Descriptors: Curriculum, Difficulty Level, Educational Change, Problems
Viau, Rolland; Clark, Richard E. – Performance and Instruction, 1987
Discusses new theories of feedback which suggest that all students may not benefit from immediate, positive feedback, depending on their level of ability and the difficulty of the task. Cognitive interpretations of feedback research are reviewed, including motivation to learn, and applications to instructional design are presented. (LRW)
Descriptors: Academic Ability, Aptitude Treatment Interaction, Computer Assisted Instruction, Difficulty Level

Moore, David S. – Educational Theory, 1982
The hierarchical structure of the cognitive domain presented in Benjamin S. Bloom's taxonomy of educational objectives does not reflect the actual nature of the learning process. Attempts to apply the classification levels to student learning in mathematics and other subjects place the taxonomy's usefulness in question. (PP)
Descriptors: Classification, Cognitive Objectives, Difficulty Level, Elementary Secondary Education
Chipman, Susan F. – 1986
This paper discusses higher-order cognitive skills, provides examples of appropriate test item content in various subject areas, and describes higher-level cognitive skills which might be tested by the National Assessment of Educational Progress (NAEP). Higher-order cognitive skills are said to be more difficult to measure than simpler skills;…
Descriptors: Achievement Tests, Cognitive Ability, Cognitive Measurement, Cognitive Processes
Miller, George A. – 1986
In assessing the quality of science teaching for an effort such as the National Assessment of Educational Progress (NAEP), it is important to understand what is meant by scientific thinking--the search for explanations. Instruction should involve higher-order cognitive skill development, but it is difficult to measure reasoning and understanding…
Descriptors: Cognitive Processes, Difficulty Level, Educational Assessment, Educational Testing