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D Sperber

Publications and source records attributed to D Sperber.

6 recordsLinked to original sources

Relevance theory explains the selection task.

We propose a general and predictive explanation of the Wason Selection Task (where subjects are asked to select evidence for testing a conditional "rule"). Our explanation is based on a reanalysis of the task, and on Relevance Theory. We argue that subjects' selections in all true versions of the Selection Task result from the following procedure. Subjects infer from the rule directly testable consequences. They infer them in their order of accessibility, and stop when the resulting interpretation of the rule meets their expectations of relevance. Subjects then select the cards that may test the consequences they have inferred from the rule. Order of accessibility of consequences and expectations of relevance vary with rule and context, and so, therefore, does subjects' performance. By devising appropriate rule-context pairs, we predict that correct performance can be elicited in any conceptual domain. We corroborate this prediction with four experiments. We argue that past results properly reanalyzed confirm our account. We discuss the relevance of the Selection Task to the study of reasoning.

Choice Behavior

Impact of parental terminal cancer on adolescents.

Psychological and emotional concerns of adolescents during a parent's terminal cancer are described. Compared to younger children, the adolescents' greater cognitive and emphatic capacities allowed them to be more aware of losses and of the parent's physical and emotional pain. Parental illness also precipitated conflict around issues of developmentally appropriate separation. The capacity to use intellectual defenses, search for meaning and deeper understanding, and seek help were potent coping abilities. Contrary to the prevailing view, most of the adolescents coped with stress without resorting to severe acting out.

Acting Out

Pragmatics.

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Communication

Influence of high steady magnetic fields on the electrical activity of the electric fish Apteronotus.

We have investigated the influence of strong dc. magnetic fields--ranging up to 10 Tesla--on the weak sinusoidal electric signals which the electro-fish Apteronotus is known to emit. We made the following observations: 1. The amplitude of the sinusoidal electric signals rises with the application of the dc. magnetic fields, increasing by about 8% in a field of 10 Tesla. 2. The frequency of the signals of about 570 Hz was not at all affected by the field but remained constant in fields up to 10 Tesla. Since the electric signals of Apteronotus are of neural origin our experiments indicate an influence of strong dc. magnetic fields on the nervous system of this electric fish.

Animals