Carry-forward effect: providing proactive scaffolding to learning processes

被引:0
|
作者
Sharma, Kshitij [1 ]
Giannakos, Michail [1 ]
机构
[1] Norwegian Univ Sci & Technol, Dept Comp Sci, Trondheim, Norway
关键词
Multi-modal data; sensors; educational technologies; learning analytics; debugging; eye-tracking; motion-based games; AI agent; WRITTEN CORRECTIVE FEEDBACK; COGNITIVE LOAD; FORMATIVE ASSESSMENT; SOCIAL-INTERACTION; EDUCATIONAL GAMES; EYE-MOVEMENTS; SUPPORT; DESIGN; SELF; STUDENTS;
D O I
10.1080/0144929X.2024.2411592
中图分类号
TP3 [计算技术、计算机技术];
学科分类号
0812 ;
摘要
Multimodal data enables us to capture the cognitive and affective states of students to provide a holistic understanding of learning processes in a wide variety of contexts. With the use of sensing technology, we can capture learners' states in near real-time and support learning. Moreover, multimodal data allows us to obtain early predictions of learning performance, and support learning in a timely manner. In this contribution, we utilise the notion of 'carry forward effect', an inferential and predictive modelling approach that utilises multimodal data measurements detrimental to learning performance to provide timely feedback suggestions. Carry forward effect can provide a way to prioritise conflicting feedback suggestions in a multimodal data-based scaffolding tool. We showcase the empirical proof of the carry forward effect with the use of three different learning scenarios: game-based learning, individual debugging, and collaborative debugging.
引用
收藏
页数:40
相关论文
共 50 条
  • [41] Buildup and release from proactive interference: The forward testing effect in children's spatial memory
    Aslan, Alp
    Kubik, Veit
    JOURNAL OF EXPERIMENTAL CHILD PSYCHOLOGY, 2024, 240
  • [42] Age difference in the forward testing effect: The roles of strategy change and release from proactive interference
    Dang, Xixi
    Yang, Chunliang
    Chen, Yinghe
    COGNITIVE DEVELOPMENT, 2021, 59
  • [43] Effect of the teaching and learning mathematics strategy based on metacognitive scaffolding on instructional efficiency
    Turmudi, T.
    Susanti, E.
    Abdussakir, A.
    Tajudin, N. M.
    ANNUAL CONFERENCE OF SCIENCE AND TECHNOLOGY, 2019, 1375
  • [44] The Effect of Learning English Idioms using Scaffolding Strategy through Situated Learning Supported by Augmented Reality
    Chew, Sie Wai
    Jhu, Jun-Yu
    Chen, Nian-Shing
    2018 IEEE 18TH INTERNATIONAL CONFERENCE ON ADVANCED LEARNING TECHNOLOGIES (ICALT 2018), 2018, : 390 - 394
  • [45] Forward testing effect on new learning in older adults
    Wang Tangsheng
    Yang Chunliang
    Zhong Nian
    ACTA PSYCHOLOGICA SINICA, 2020, 52 (11) : 1266 - 1277
  • [46] The effect of age on visuomotor learning processes
    Vachon, Chad Michael
    Modchalingam, Shanaathanan
    t Hart, Bernard Marius
    Henriques, Denise Y. P.
    PLOS ONE, 2020, 15 (09): : e0239032
  • [47] Semiparametrical Gaussian Processes Learning of Forward Dynamical Models for Navigating in a Circular Maze
    Romeres, Diego
    Jha, Devesh K.
    DallaLibera, Alberto
    Yerazunis, Bill
    Nikovski, Daniel
    2019 INTERNATIONAL CONFERENCE ON ROBOTICS AND AUTOMATION (ICRA), 2019, : 3195 - 3202
  • [48] The Forward Effect of Delayed Judgments of Learning Is Influenced by Difficulty in Memory and Category Learning
    Wang, Xun
    Liu, Xinyue
    Chen, Luyao
    Feng, Kaiqi
    Ye, Qun
    Zhu, Haoliang
    JOURNAL OF INTELLIGENCE, 2023, 11 (06)
  • [49] Associations between technological scaffolding and micro-level processes of self-regulated learning: A workplace study
    Siadaty, Melody
    Gasevic, Dragan
    Hatala, Marek
    COMPUTERS IN HUMAN BEHAVIOR, 2016, 55 : 1007 - 1019
  • [50] Measuring the impact of technological scaffolding interventions on micro-level processes of self-regulated workplace learning
    Siadaty, Melody
    Gasevic, Dragan
    Hatala, Marek
    COMPUTERS IN HUMAN BEHAVIOR, 2016, 59 : 469 - 482