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Cognitive Learning01:21

Cognitive Learning

517
Cognitive learning is based on purposive behavior, incidental learning, and insight learning.
E. C. Tolman's theory of purposive behavior emphasizes that much behavior is goal-directed. He argued that to understand behavior, we must look at the entire sequence of actions leading to a goal. For instance, high school students study hard, not just due to past reinforcement but also to achieve the goal of getting into a good college.
Tolman introduced the idea that behavior is influenced by...
517
Piaget's Stage 3 of Cognitive Development01:17

Piaget's Stage 3 of Cognitive Development

651
During Piaget's concrete operational stage, from ages 7 to 11, children exhibit a marked increase in logical thinking skills, specifically in relation to tangible, real-world events. This stage is characterized by the development of several essential cognitive concepts, including conservation, reversibility, and classification, all of which support the child's evolving capacity for structured thought.
Conservation and Constancy of Quantity
A significant cognitive milestone in the...
651
Piaget's Stage 4 of Cognitive Development01:19

Piaget's Stage 4 of Cognitive Development

133
The formal operational stage, as described in Piaget's cognitive development theory, begins around age 11 and extends into adulthood. It marks the emergence of advanced cognitive abilities that differentiate adolescent and adult thinking from those of younger children. This stage is characterized by abstract reasoning, hypothetical-deductive reasoning, and a more complex understanding of self and others.
Abstract Reasoning and Hypothetical-Deductive Thinking
Unlike the concrete operational...
133
Piaget's Stage 2 of Cognitive Development01:14

Piaget's Stage 2 of Cognitive Development

225
The preoperational stage, the second of Jean Piaget's four stages of cognitive development, spans approximately ages 2 to 7 and is characterized by the emergence of symbolic thinking. During this stage, children use language, images, and symbols to represent objects and concepts, enabling them to engage in imaginative and pretend play. This symbolic thinking supports children's ability to perform make-believe actions, such as imagining a broom as a horse or their hand as a phone, blending...
225
Piaget's Stage 1 of Cognitive Development01:14

Piaget's Stage 1 of Cognitive Development

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The sensorimotor stage, the initial phase of Jean Piaget's theory of cognitive development, spans the first two years of a child's life. During this period, infants actively engage with their surroundings, building cognitive awareness through direct interaction with the world. This interaction is primarily based on sensory perception and motor actions, allowing infants to gradually understand basic physical properties and predict how objects interact within their environment.
Exploration...
778
Associative Learning01:27

Associative Learning

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Associative learning is a fundamental concept in behavioral psychology, wherein a connection is established between two stimuli or events, leading to a learned response. This process is critical in understanding how behaviors are acquired and modified. Conditioning, the mechanism through which associations are formed, can be divided into two main types: classical conditioning and operant conditioning, each elucidating different aspects of associative learning.
Classical conditioning, also known...
572

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相关实验视频

Updated: Sep 11, 2025

Assessment of Social Cognition in Non-human Primates Using a Network of Computerized Automated Learning Device ALDM Test Systems
08:42

Assessment of Social Cognition in Non-human Primates Using a Network of Computerized Automated Learning Device ALDM Test Systems

Published on: May 5, 2015

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在子中,几何和数字学习之间的认知桥梁.

Jessica F Cantlon1, Logan R Brownell1, Jialin Li1

  • 1Psychology Department, Carnegie Mellon University, Pittsburgh, PA 15213.

Proceedings of the National Academy of Sciences of the United States of America
|August 18, 2025
PubMed
概括
此摘要是机器生成的。

子学习了数字和空间概念,表明空间学习支持数字理解. 这表明这些灵长类动物的认知能力有着共同的进化基础.

关键词:
认知发展 认知发展数学能力: 数学能力是指数学能力.数字认知 数字认知灵长类动物的认知能力空间认知 空间认知

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相关实验视频

Last Updated: Sep 11, 2025

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科学领域:

  • 认知科学 认知科学
  • 比较心理学比较心理学
  • 神经科学是一个神经科学.

背景情况:

  • 人类发展显示了数字和空间认知之间的强烈联系,通常受到数字线等文化工具的影响.
  • 新出现的证据表明,这些联系可能有进化根源,甚至在没有文化工具的情况下出现.

研究的目的:

  • 研究灵长类动物如何在没有事先任务经验的情况下学习空间和数值概念.
  • 探索非人类灵长类动物的空间和数值学习之间的相互作用.

主要方法:

  • 无从做过任务的子被训练在数值和几何任务上.
  • 分析了学习轨迹和可歧视性影响.
  • 交叉滞后分析检查了两项任务中学习之间的预测关系.

主要成果:

  • 子成功地学习了数值和几何概念.
  • 抽象的定量特征比视觉相似性更好地预测性能,表明抽象的处理.
  • 在几何任务中学习显著预测了数量表现的未来收益.

结论:

  • 灵长类动物的空间和数值学习取决于相互连接的认知过程.
  • 这些发现表明人类数字空间认知桥梁的进化基础.