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相关概念视频

Piaget's Stage 2 of Cognitive Development01:14

Piaget's Stage 2 of Cognitive Development

31
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,...
31
Working Memory01:24

Working Memory

107
Working memory refers to a combination of components, including short-term memory and attention, that allow an individual to hold information temporarily as we perform cognitive tasks. It is an essential cognitive function that enables the execution of complex tasks such as problem-solving, comprehension, and reasoning. Unlike short-term memory, which simply involves the storage of information for a brief period, working memory involves the active manipulation and processing of this...
107
Information Processing Approach01:30

Information Processing Approach

26
The information-processing theory of cognitive development centers on fundamental mental processes, including attention, memory, and problem-solving skills. Researchers in this field examine how cognitive abilities, such as working memory, evolve and influence children's overall development. Studies indicate that children with stronger working memory tend to excel in reading comprehension, math, and problem-solving compared to peers with less efficient memory skills. Low working memory is...
26
Storage01:23

Storage

57
A schema is a mental framework that helps individuals organize and interpret information. Schemata, formed from previous experiences, influence how we process new information: how we encode it, the inferences we make, and how we retrieve it. For instance, a schema for what a typical classroom looks like might include desks, a teacher's desk, a whiteboard, and students in such an environment. This expectation helps us quickly understand and navigate new classrooms without needing to analyze...
57
Signal Flow Graphs01:18

Signal Flow Graphs

154
Signal-flow graphs offer a streamlined and intuitive approach to representing control systems, providing an alternative to traditional block diagrams. These graphs use branches to symbolize systems and nodes to represent signals, effectively illustrating the relationships and interactions within the system.
In a signal-flow graph, branches denote the system's transfer functions, while nodes represent the signals. The direction of signal flow is indicated by arrows, with the corresponding...
154
Piaget's Stage 3 of Cognitive Development01:17

Piaget's Stage 3 of Cognitive Development

526
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...
526

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相关实验视频

Updated: May 22, 2025

RBDT: A Computerized Task System based in Transposition for the Continuous Analysis of Relational Behavior Dynamics in Humans
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通过符号,情境和口头表示进行动态数学处理.

Omid Khatin-Zadeh1, Zahra Eskandari2, Danyal Farsani3

  • 1School of Foreign Languages, University of Electronic Science and Technology of China, Chengdu, China. khatinzadeh.omid@yahoo.com.

Integrative psychological & behavioral science
|March 12, 2025
PubMed
概括

这项研究探讨了三种数学处理模式:象征性,情境和语言. 它引入了动态交叉类型的表示转换,一种通过整合这些模式来增强数学问题解决的认知过程.

关键词:
动态交叉类型表示转换的动态交叉类型表示转换执行职能 执行职能 执行职能情境处理情况处理.象征性处理是一种象征性处理.语言处理 语言处理

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相关实验视频

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科学领域:

  • 认知科学 认知科学
  • 神经科学是一个神经科学.
  • 数学教育教育 数学教育

背景情况:

  • 数学处理涉及不同的符号,情境和语言表示.
  • 符号处理是以压抑为导向的,情境处理是以感应和感官运动为导向的,口头处理是以语言为导向的.

研究的目的:

  • 引入和定义动态交叉类型表示转换 (DCR T).
  • 提出这三个处理模式可以动态集成.
  • 探索DCR T在数学思维中的认知益处.

主要方法:

  • 象征性,情境和口头数学表示的概念分析.
  • 为动态交叉类型表示转换开发理论框架.
  • 讨论认知能力和大脑网络参与.

主要成果:

  • 确定了三种不同的数学处理模式 (象征性,情境性,口头).
  • 动态交叉类型表示转换 (DCR T) 允许同时使用这些模式.
  • DCR T增强了认知能力和大脑网络的运用,用于数学任务.

结论:

  • 动态交叉类型表示转换 (DCR T) 是一个高层次的认知过程.
  • DCR T允许在数学表示之间进行灵活的转换.
  • 这种动态过程是执行职能的一个组成部分.