Theory-Driven Design of an IT-Based Peer Assessment to Assess High Cognitive Levels of Educational Objectives in Large-Scale Learning Services
ISBN
978-3-00-050284-2
Type
conference paper
Date Issued
2015
Author(s)
Research Team
IWI6
Abstract
Due to increasing numbers of students at German universities large-scale learning services are still a common default. These learning services lack interaction as well as feedback to assess learners’ knowledge on the cognitive levels of educational objectives. This situation is alarming, since interaction and feedback in order to assess the own learning progress are important factors for individual learning success and satisfaction. The use of an IT-based peer assessment as a learning instrument can help overcome these challenges by increasing interaction and feedback without massively increasing the workload of lecturers. In this research-in-progress paper we present a theory-driven design of an IT-based peer assessment aiming to increase interaction and feedback as well as assess learners’ knowledge on high cognitive levels of educational objectives in large-scale learning services. We fol- low a design science research approach and rely on insights from theory of interaction and feedback in order to gather requirements as well as derive design elements to create the IT-based peer assessment. As a next step, we will use the instrument in our large-scale learning service aiming to evaluate whether the IT-based peer assessment is useful to assess high cognitive levels of educational objectives, hence supporting learners during their learning process.
Language
English
Keywords
Peer Assessment
Technology-mediated Learning
Educational Objectives
HSG Classification
contribution to scientific community
Book title
ECIS 2015 Research-in-Progress Papers
Publisher
Association for Information Systems
Publisher place
AIS Electronic Library (AISeL)
Event Title
23rd European Conference on Information Systems (ECIS) 2015
Event Location
Münster, Germany
Event Date
26.-29.05.2015
Official URL
Subject(s)
Division(s)
Eprints ID
247877
File(s)![Thumbnail Image]()
open.access
Name
JML_507.pdf
Size
2.66 MB
Format
Adobe PDF
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