HOW WORKING MEMORY CAPACITY AFFECTS PROBLEM SOLVING

被引:79
作者
Wiley, Jennifer [1 ]
Jarosz, Andrew F. [1 ]
机构
[1] Univ Illinois, Dept Psychol, Chicago, IL 60607 USA
来源
PSYCHOLOGY OF LEARNING AND MOTIVATION, VOL 56 | 2012年 / 56卷
关键词
SHORT-TERM-MEMORY; ADVANCED PROGRESSIVE MATRICES; GENERAL FLUID INTELLIGENCE; ARITHMETIC WORD-PROBLEMS; EYE-MOVEMENT ANALYSIS; INDIVIDUAL-DIFFERENCES; EXECUTIVE FUNCTIONS; SECONDARY MEMORY; MENTAL SET; CHILDREN;
D O I
10.1016/B978-0-12-394393-4.00006-6
中图分类号
B84 [心理学];
学科分类号
04 ; 0402 ;
摘要
Working memory capacity (WMC) is important for many cognitive processes including problem solving. This chapter compiles the current literature regarding WMC and problem solving, and discusses the various ways in which WMC can help and hinder people as they go about solving problems of varying types. In particular, three types of problem solving are examined: mathematical problem solving, problem solving as it relates to the Raven Progressive Matrices (RPM), and creative problem solving. One of the main benefits across both math and RPM problem solving seems to be that WMC helps solvers to focus their attention, resist distraction, or narrow their search through a problem space. Conversely, several lines of evidence are now showing that too much focus can actually harm performance on creative or insightful problem-solving tasks. It is suggested that in order to account for the differing relationships between WMC and different types of problem solving, a dual-process, analytical/insightful model of problem solving is required.
引用
收藏
页码:185 / 227
页数:43
相关论文
共 158 条
[51]  
Finke R., 1992, CREATIVE COGNITION
[52]   Working memory demands in insight versus analytic problem solving [J].
Fleck, Jessica I. .
EUROPEAN JOURNAL OF COGNITIVE PSYCHOLOGY, 2008, 20 (01) :139-176
[53]   The effects of approach and avoidance motor actions on the elements of creative insight [J].
Friedman, RS ;
Förster, J .
JOURNAL OF PERSONALITY AND SOCIAL PSYCHOLOGY, 2000, 79 (04) :477-492
[54]   Separate roles for executive and phonological components of working memory in mental arithmetic [J].
Fürst, AJ ;
Hitch, GJ .
MEMORY & COGNITION, 2000, 28 (05) :774-782
[55]   Simple predictions fueled by capacity limitations: When are they successful? [J].
Gaissmaier, Wolfgang ;
Schooler, Lael J. ;
Rieskamp, Joerg .
JOURNAL OF EXPERIMENTAL PSYCHOLOGY-LEARNING MEMORY AND COGNITION, 2006, 32 (05) :966-982
[56]   Attending to the big picture: Mood and global versus local processing of visual information [J].
Gasper, K ;
Clore, GL .
PSYCHOLOGICAL SCIENCE, 2002, 13 (01) :34-40
[57]   Working memory deficits in children with low achievements in the national curriculum at 7 years of age [J].
Gathercole, SE ;
Pickering, SJ .
BRITISH JOURNAL OF EDUCATIONAL PSYCHOLOGY, 2000, 70 :177-194
[58]   NUMERICAL COGNITION - ON THE CONVERGENCE OF COMPONENTIAL AND PSYCHOMETRIC MODELS [J].
GEARY, DC ;
WIDAMAN, KF .
INTELLIGENCE, 1992, 16 (01) :47-80
[59]   Numerical and arithmetical cognition: Patterns of functions and deficits in children at risk for a mathematical disability [J].
Geary, DC ;
Hoard, MK ;
Hamson, CO .
JOURNAL OF EXPERIMENTAL CHILD PSYCHOLOGY, 1999, 74 (03) :213-239
[60]   Numerical and arithmetical cognition: A longitudinal study of process and concept deficits in children with learning disability [J].
Geary, DC ;
Hamson, CO ;
Hoard, MK .
JOURNAL OF EXPERIMENTAL CHILD PSYCHOLOGY, 2000, 77 (03) :236-263