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The book traces the origins of the idea of individual differences in general mental ability to 19th century researchers Herbert Spencer and Francis Galton. Charles Spearman is credited for inventing factor analysis in the early 20th century, which enabled statistical testing of the hypothesis that general mental ability is required in all mental efforts.
The subsequent formulation was that the magnitude of the black-white difference on tests of cognitive ability is entirely or mainly a function of the extent to which a test measures general mental ability, or g. [2] Spearman's hypothesis has been criticized on methodological and empirical grounds. It has also been used to support scientific racism.
Psychomotor learning is the relationship between cognitive functions and physical movement.Psychomotor learning is demonstrated by physical skills such as movement, coordination, manipulation, dexterity, grace, strength, speed—actions which demonstrate the fine or gross motor skills, such as use of precision instruments or tools, and walking.
The test was used in 1944 for assessing general intelligence, and was part of the Army Individual Test of General Ability. [3] In the 1950s [ 4 ] [ 5 ] researchers began using the test to assess cognitive dysfunction stemming from brain damage , and it has since been incorporated into the Halstead–Reitan battery . [ 3 ]
Motor skills are movements and actions of the muscles. There are two major groups of motor skills: Gross motor skills [2] – require the use of large muscle groups in our legs, torso, and arms to perform tasks such as: walking, balancing, and crawling. The skill required is not extensive and therefore are usually associated with continuous tasks.
The challenge point framework, created by Mark A. Guadagnoli and Timothy D. Lee (2004), provides a theoretical basis to conceptualize the effects of various practice conditions in motor learning. This framework relates practice variables to the skill level of the individual, task difficulty, and information theory concepts.
The existence of motor equivalence, i.e., the ability to perform the same action in multiple ways for instance using different muscles or the same muscles under different conditions. This suggests that a general code specifying the final output exists which is translated into specific muscle action sequences
Neil Fleming, a New Zealand teacher and educational theorist, designed the VARK model (visual, aural or auditory, read/write and kinesthetic). [2] According to Fleming's model, kinesthetic learners are similar to tactile learners in that they like hands-on experiential learning.