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METHOD FOR DIAGNOSIS OF INTELLECTUAL POTENCY Educational (groups of learners) and subsequent correction IMPACT TRAINING

机译:诊断智力倾向的方法教育(学习者群体)和随后的矫正冲击训练

摘要

FIELD: medicine.;SUBSTANCE: invention refers to psychology, namely to educational psychology, and can be used to obtain objective data of the training process, digestion of material, cognitive activity of the trainees in the process of trainings. A group of trainees is presented with educational information; the physiological parameters being uncontrolled consciously when digesting the educational information are measured and recorded. Each group of the trainees is presented with the educational information with the maximum and minimum degree of complexity; the physiological parameters being uncontrolled consciously are measured for both complexities, and the derived values are used to determine upper and lower limits of a reference passage for each of m variables of the training environment. In the process of training, for each of m variable conditions, group current physical parameters are compared to the upper and lower limits of the reference passage, as well as to an average value of the reference passage. If observing a deviation from the average reference passage, the training effect is corrected by selecting one of (n±j), j∈N of the pre-set complexities of the limited amount of training information, so that the group current physical parameters tend to the average reference passage.;EFFECT: method enables higher quality of training by an optimum combination of complexity of the material of interest and the physiological parameters, and extends the trainer's possibilities to control the effectiveness of the effect.;3 cl, 5 dwg, 1 ex
机译:领域:医学。物质:发明是指心理学,即教育心理学,并且可以用于获得训练过程的客观数据,物质的消化,训练过程中学员的认知活动。向一组学员介绍了教育信息;测量并记录在消化教育信息时有意识地不受控制的生理参数。向每组学员提供最大程度和最小程度的复杂性的教育信息;针对这两种复杂性测量不受控制的有意识的生理参数,并且将导出的值用于确定训练环境的m个变量中每个变量的参考通道的上限和下限。在训练过程中,对于m个可变条件中的每一个,都将组当前的物理参数与参考通道的上限和下限以及参考通道的平均值进行比较。如果观察到与平均参考通道的偏离,则通过选择有限数量的训练信息的预设复杂度的(n±j),j∈N中的一个来校正训练效果,从而使组当前的物理参数趋于效果:通过将目标材料的复杂性和生理参数进行最佳组合,该方法可以实现更高质量的训练,并扩展了教练控制效果的可能性。; 3 cl,5 dwg ,1前

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