Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual Evaluation

Items that are chained, or blocked, together appear on many of the conceptual assessments utilized for physics education research. However, when items are chained together there is the potential to introduce local dependence between those items, which would violate the assumption of item independenc...

Full description

Bibliographic Details
Main Authors: Philip Eaton, Barrett Frank, Shannon Willoughby
Format: Article
Language:English
Published: American Physical Society 2020-10-01
Series:Physical Review Physics Education Research
Online Access:http://doi.org/10.1103/PhysRevPhysEducRes.16.020122
id doaj-266dbde734104e04a709c65bda15c6a6
record_format Article
spelling doaj-266dbde734104e04a709c65bda15c6a62020-11-25T03:25:31ZengAmerican Physical SocietyPhysical Review Physics Education Research2469-98962020-10-0116202012210.1103/PhysRevPhysEducRes.16.020122Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual EvaluationPhilip EatonBarrett FrankShannon WilloughbyItems that are chained, or blocked, together appear on many of the conceptual assessments utilized for physics education research. However, when items are chained together there is the potential to introduce local dependence between those items, which would violate the assumption of item independence required by classical test theory, unidimensional item response theory, and other measurement theories. Local dependence can be divided into two categories: (i) underlying local dependence, which can be adequately modeled with multidimensional measurement theories, and (ii) surface local dependence (SLD), which cannot be modeled using multidimensional measurement theories. The act of chaining items is thought to be one of the many potential sources of SLD between items. Using previous local dependence research results, this study proposes two methods for detecting the presence of local dependence and SLD between items on an assessment. These methods were applied to the Force Concept Inventory (FCI) and the Force and Motion Conceptual Evaluation (FMCE). It was found that the assumption of item independence was violated for both assessments, implying that unidimensional measurement theories may not adequately model either the FCI or FMCE. Further, both detection methods identified the potential for a minimal amount of SLD present for FCI and a significant amount of SLD present for the FMCE. This implies that even multidimensional measurement theories may not be capable of adequately modeling the FMCE when scoring items individually. This result supports the claim made by Thornton et al. that the items on the FMCE should be scored in groups; however, the currently proposed grading scheme was found to be inadequate.http://doi.org/10.1103/PhysRevPhysEducRes.16.020122
collection DOAJ
language English
format Article
sources DOAJ
author Philip Eaton
Barrett Frank
Shannon Willoughby
spellingShingle Philip Eaton
Barrett Frank
Shannon Willoughby
Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual Evaluation
Physical Review Physics Education Research
author_facet Philip Eaton
Barrett Frank
Shannon Willoughby
author_sort Philip Eaton
title Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual Evaluation
title_short Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual Evaluation
title_full Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual Evaluation
title_fullStr Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual Evaluation
title_full_unstemmed Detecting the influence of item chaining on student responses to the Force Concept Inventory and the Force and Motion Conceptual Evaluation
title_sort detecting the influence of item chaining on student responses to the force concept inventory and the force and motion conceptual evaluation
publisher American Physical Society
series Physical Review Physics Education Research
issn 2469-9896
publishDate 2020-10-01
description Items that are chained, or blocked, together appear on many of the conceptual assessments utilized for physics education research. However, when items are chained together there is the potential to introduce local dependence between those items, which would violate the assumption of item independence required by classical test theory, unidimensional item response theory, and other measurement theories. Local dependence can be divided into two categories: (i) underlying local dependence, which can be adequately modeled with multidimensional measurement theories, and (ii) surface local dependence (SLD), which cannot be modeled using multidimensional measurement theories. The act of chaining items is thought to be one of the many potential sources of SLD between items. Using previous local dependence research results, this study proposes two methods for detecting the presence of local dependence and SLD between items on an assessment. These methods were applied to the Force Concept Inventory (FCI) and the Force and Motion Conceptual Evaluation (FMCE). It was found that the assumption of item independence was violated for both assessments, implying that unidimensional measurement theories may not adequately model either the FCI or FMCE. Further, both detection methods identified the potential for a minimal amount of SLD present for FCI and a significant amount of SLD present for the FMCE. This implies that even multidimensional measurement theories may not be capable of adequately modeling the FMCE when scoring items individually. This result supports the claim made by Thornton et al. that the items on the FMCE should be scored in groups; however, the currently proposed grading scheme was found to be inadequate.
url http://doi.org/10.1103/PhysRevPhysEducRes.16.020122
work_keys_str_mv AT philipeaton detectingtheinfluenceofitemchainingonstudentresponsestotheforceconceptinventoryandtheforceandmotionconceptualevaluation
AT barrettfrank detectingtheinfluenceofitemchainingonstudentresponsestotheforceconceptinventoryandtheforceandmotionconceptualevaluation
AT shannonwilloughby detectingtheinfluenceofitemchainingonstudentresponsestotheforceconceptinventoryandtheforceandmotionconceptualevaluation
_version_ 1715219181286195200