Cognitive load theory examines the mental effort a learning task places on working memory. It distinguishes three kinds of load: intrinsic load, the inherent difficulty of the material itself; extraneous load, added unnecessarily by how the material is presented or the task is designed; and germane load, the effort spent building lasting knowledge structures, or schemas, in long-term memory. Because working memory can hold only a small amount of new information at once, the theory argues that instruction should cut extraneous load and manage intrinsic load so more capacity is left for germane load. John Sweller developed the theory in the late 1980s from research on problem solving, and it has since become one of the most cited frameworks in instructional design, though later researchers have questioned whether the three loads simply add together as the original model proposed. This description is adapted from Wikipedia contributors under CC BY-SA 4.0; changes were made. https://creativecommons.org/licenses/by-sa/4.0/
Facts
Core ClaimWorking memory has severe limits on capacity and duration, so instructional materials and conditions should be structured to reduce extraneous cognitive load and to manage intrinsic cognitive load, leaving more capacity for the germane load of building durable knowledge. 1 Connections
Associated With
Both are cognitivist accounts of how the mind manages limited information-processing capacity during learning.
Developed By
Source Wikipedia: Cognitive load
In Approach
Includes
Source Wikipedia: Cognitive load
Sources
1. Wikipedia: Cognitive load
Wikimedia FoundationTheory section
Working memory, however, is extremely limited in both capacity and duration.
Categories section
The primary aim of the theory is to guide the effective use of this limited cognitive resource by structuring learning conditions and instructional materials in ways that reduce extraneous cognitive load and optimize intrinsic cognitive load.
References, Sweller 1988 citation
Sweller, John (April 1988). Cognitive Load During Problem Solving: Effects on Learning. Cognitive Science, vol. 12, no. 2, pp. 257-285.
View the Source Reader Challenges (0)
No disputes yet. Spotted an error or a better source? Open the first one.
Sign in to dispute this or suggest a correction.