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Dodonova, Yulia A.; Dodonov, Yury S. – Intelligence, 2013
Using more complex items than those commonly employed within the information-processing approach, but still easier than those used in intelligence tests, this study analyzed how the association between processing speed and accuracy level changes as the difficulty of the items increases. The study involved measuring cognitive ability using Raven's…
Descriptors: Difficulty Level, Intelligence Tests, Cognitive Ability, Accuracy
Partchev, Ivailo; De Boeck, Paul – Intelligence, 2012
Responses to items from an intelligence test may be fast or slow. The research issue dealt with in this paper is whether the intelligence involved in fast correct responses differs in nature from the intelligence involved in slow correct responses. There are two questions related to this issue: 1. Are the processes involved different? 2. Are the…
Descriptors: Intelligence, Intelligence Tests, Reaction Time, Accuracy
Kaufman, Scott Barry; DeYoung, Colin G.; Reis, Deidre L.; Gray, Jeremy R. – Intelligence, 2011
The existence of general-purpose cognitive mechanisms related to intelligence, which appear to facilitate all forms of problem solving, conflicts with the strong modularity view of the mind espoused by some evolutionary psychologists. The current study assessed the contribution of general intelligence ("g") to explaining variation in…
Descriptors: Intelligence, Logical Thinking, Accuracy, Reaction Time
Goldhammer, Frank; Klein Entink, Rinke H. – Intelligence, 2011
The study investigates empirical properties of reasoning speed which is conceived as the fluency of solving reasoning problems. Responses and response times in reasoning tasks are modeled jointly to clarify the covariance structure of reasoning speed and reasoning ability. To determine underlying abilities, the predictive validities of two…
Descriptors: Thinking Skills, Test Wiseness, Individual Differences, Responses
Fiori, Marina; Antonakis, John – Intelligence, 2012
We examined how general intelligence, personality, and emotional intelligence--measured as an ability using the MSCEIT--predicted performance on a selective-attention task requiring participants to ignore distracting emotion information. We used a visual prime in which participants saw a pair of faces depicting emotions; their task was to focus on…
Descriptors: Emotional Intelligence, Stimuli, Reaction Time, Attention
Dodonov, Yury S.; Dodonova, Yulia A. – Intelligence, 2012
In the present study, speeded tasks with differing assumed difficulties of the trials are regarded as a special class of simple cognitive tasks. Exploratory latent growth modeling with data-driven shape of a growth curve and nonlinear structured latent curve modeling with predetermined monotonically increasing functions were used to analyze…
Descriptors: Intelligence, Intervals, Reaction Time, Cognitive Ability
Johnson, Wendy; Deary, Ian J. – Intelligence, 2011
The idea that information processing speed is related to cognitive ability has a long history. Much evidence has been amassed in its support, with respect to both individual differences in general intelligence and developmental trajectories. Two so-called elementary cognitive tasks, reaction time and inspection time, have been used to compile this…
Descriptors: Intelligence, Reaction Time, Cognitive Processes, Cognitive Ability
Unsworth, Nash; Redick, Thomas S.; Lakey, Chad E.; Young, Diana L. – Intelligence, 2010
A latent variable analysis was conducted to examine the nature of individual differences in lapses of attention and their relation to executive and fluid abilities. Participants performed a sustained attention task along with multiple measures of executive control and fluid abilities. Lapses of attention were indexed based on the slowest reaction…
Descriptors: Intelligence, Short Term Memory, Attention Control, Individual Differences
Ivie, Jennifer L.; Embretson, Susan E. – Intelligence, 2010
Spatial ability tasks appear on many intelligence and aptitude tests. Although the construct validity of spatial ability tests has often been studied through traditional correlational methods, such as factor analysis, less is known about the cognitive processes involved in solving test items. This study examines the cognitive processes involved in…
Descriptors: Spatial Ability, Cognitive Processes, Test Items, Construct Validity
Jensen, A. R. – Intelligence, 2011
Mental chronometry (MC) studies cognitive processes measured by time. It provides an absolute, ratio scale. The limitations of instrumentation and statistical analysis caused the early studies in MC to be eclipsed by the "paper-and-pencil" psychometric tests started by Binet. However, they use an age-normed, rather than a ratio scale, which…
Descriptors: Reaction Time, Intelligence Quotient, Measures (Individuals), Factor Analysis
Neubauer, Aljoscha C.; Bergner, Sabine; Schatz, Martina – Intelligence, 2010
The well-documented sex difference in mental rotation favoring males has been shown to emerge only for 2-dimensional presentations of 3-dimensional objects, but not with actual 3-dimensional objects or with virtual reality presentations of 3-dimensional objects. Training studies using computer games with mental rotation-related content have…
Descriptors: Computer Simulation, Brain, Gender Differences, Males
Madison, Guy; Forsman, Lea; Blom, Orjan; Karabanov, Anke; Ullen, Fredrik – Intelligence, 2009
Psychometric intelligence correlates with reaction time in elementary cognitive tasks, as well as with performance in time discrimination and judgment tasks. It has remained unclear, however, to what extent these correlations are due to top-down mechanisms, such as attention, and bottom-up mechanisms, i.e. basic neural properties that influence…
Descriptors: Intelligence, Intervals, Reaction Time, Psychometrics
Fox, Mark C.; Roring, Roy W.; Mitchum, Ainsley L. – Intelligence, 2009
Elementary cognitive tasks (ECTs) are simple tasks involving basic cognitive processes for which speed of performance typically correlates with IQ. Inspection time (IT) has the strongest IQ correlations and is considered critical evidence for neural speed underlying individual differences in intelligence. However, results from Bors et al. [Bors,…
Descriptors: Intelligence, Intelligence Quotient, Cognitive Processes, Correlation
Ratcliff, Roger; Schmiedek, Florian; McKoon, Gail – Intelligence, 2008
The worst performance rule for cognitive tasks [Coyle, T.R. (2003). IQ, the worst performance rule, and Spearman's law: A reanalysis and extension. "Intelligence," 31, 567-587] in which reaction time is measured is the result that IQ scores correlate better with longer (i.e., 0.7 and 0.9 quantile) reaction times than shorter (i.e., 0.1 and 0.3…
Descriptors: Reaction Time, Intelligence Quotient, Correlation, Models
Sculthorpe, Lauren D.; Stelmack, Robert M.; Campbell, Kenneth B. – Intelligence, 2009
The relation between mental ability and the ability to detect auditory pattern violations was examined using event-related potential measures, specifically P300 and mismatch negativity (MMN). Thirty female volunteers were presented with a two tone alternating pattern containing infrequent repetition violations in passive (ignore) then active…
Descriptors: Reaction Time, Cognitive Development, Cognitive Ability, Intelligence