Fairness in Assessment: Identifying a Complex Adaptive System.

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2023-01-01 DOI:10.5334/pme.993
Nyoli Valentine, Steven J Durning, Ernst Michael Shanahan, Lambert Schuwirth
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引用次数: 2

Abstract

Introduction: Assessment design in health professions education is continuously evolving. There is an increasing desire to better embrace human judgement in assessment. Thus, it is essential to understand what makes this judgement fair. This study builds upon existing literature by studying how assessment leaders conceptualise the characteristics of fair judgement.

Methods: Sixteen assessment leaders from 15 medical schools in Australia and New Zealand participated in online focus groups. Data collection and analysis occurred concurrently and iteratively. We used the constant comparison method to identify themes and build on an existing conceptual model of fair judgement in assessment.

Results: Fairness is a multi-dimensional construct with components at environment, system and individual levels. Components influencing fairness include articulated and agreed learning outcomes relating to the needs of society, a culture which allows for learner support, stakeholder agency and learning (environmental level), collection, interpretation and combination of evidence, procedural strategies (system level) and appropriate individual assessments and assessor expertise and agility (individual level).

Discussion: We observed that within the data at fractal, that is an infinite pattern repeating at different scales, could be seen suggesting fair judgement should be considered a complex adaptive system. Within complex adaptive systems, it is primarily the interaction between the entities which influences the outcome it produces, not simply the components themselves. Viewing fairness in assessment through a lens of complexity rather than as a linear, causal model has significant implications for how we design assessment programs and seek to utilise human judgement in assessment.

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评估中的公平性:识别一个复杂的自适应系统。
导言:卫生专业教育的评估设计在不断发展。人们越来越希望在评估中更好地接受人类的判断。因此,有必要了解是什么使这一判断公平。本研究建立在现有文献的基础上,通过研究评估领导者如何概念化公平判断的特征。方法:来自澳大利亚和新西兰15所医学院的16名评估负责人参与在线焦点小组。数据收集和分析同时迭代进行。我们使用持续比较方法来确定主题,并建立在评估中公平判断的现有概念模型上。结果:公平是一个由环境、制度和个人三个层面组成的多维结构。影响公平的因素包括与社会需求相关的明确和商定的学习成果,允许学习者支持的文化,利益相关者代理和学习(环境层面),证据的收集,解释和组合,程序策略(系统层面)以及适当的个人评估和评估员的专业知识和敏捷性(个人层面)。讨论:我们观察到,在分形的数据中,这是一个在不同尺度上重复的无限模式,可以看到公平判断应该被认为是一个复杂的适应系统。在复杂的适应性系统中,主要是实体之间的相互作用影响其产生的结果,而不仅仅是组件本身。通过复杂性而不是线性因果模型来看待评估中的公平性,对于我们如何设计评估计划和寻求在评估中利用人类判断具有重要意义。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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