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首页> 外文期刊>Journal of organizational behavior >Dynamic patterns of flow in the workplace: Characterizing within-individual variability using a complexity science approach
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Dynamic patterns of flow in the workplace: Characterizing within-individual variability using a complexity science approach

机译:工作场所流动的动态模式:使用复杂性科学方法表征个体内部的变异性

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摘要

As a result of the growing interest in studying employee well-being as a complex process that portrays high levels of within-individual variability and evolves over time, this present study considers the experience of flow in the workplace from a nonlinear dynamical systems approach. Our goal is to offer new ways to move the study of employee well-being beyond linear approaches. With nonlinear dynamical systems theory as the backdrop, we conducted a longitudinal study using the experience sampling method and qualitative semi-structured interviews for data collection; 6981 registers of data were collected from a sample of 60 employees. The obtained time series were analyzed using various techniques derived from the nonlinear dynamical systems theory (i.e., recurrence analysis and surrogate data) and multiple correspondence analyses. The results revealed the following: 1) flow in the workplace presents a high degree of within-individual variability; this variability is characterized as chaotic for most of the cases (75%); 2) high levels of flow are associated with chaos; and 3) different dimensions of the flow experience (e.g., merging of action and awareness) as well as individual (e.g., age) and job characteristics (e.g., job tenure) are associated with the emergence of different dynamic patterns (chaotic, linear and random).
机译:由于人们越来越关注研究员工的幸福感,因为它是刻画个人内部高水平变异并随着时间而发展的复杂过程,因此本研究考虑了非线性动力系统方法在工作场所中的流动经验。我们的目标是提供新的方法,使员工福利研究超越线性方法。以非线性动力学系统理论为背景,我们采用经验抽样方法和定性半结构化访谈进行了纵向研究,以进行数据收集。从60名员工的样本中收集了6981个数据记录。使用从非线性动力学系统理论衍生的各种技术(即递归分析和替代数据)以及多次对应分析来分析获得的时间序列。结果表明:1)工作场所的流动呈现出高度的内部个体差异性;在大多数情况下(75%),这种变异性被认为是混乱的; 2)高流量与混乱相关; 3)流动经验的不同维度(例如行动和意识的融合)以及个人(例如年龄)和工作特征(例如工作任期)与不同动态模式(混沌,线性和动态)的出现相关随机)。

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