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This paper looks at current projects in the field of Blockchain in education, their specific areas of application, possible advantages and weaknesses. Three examples developed by the team of authors are introduced in detail. First: Gallery-Defender a Serious Game, which was adapted to serve as a demonstrator in a stand-alone version to show the possibility to carry out exams directly from within the game and store the grades and meta-data on Blockchain. Second: Art-Quiz, an e-learning tool, which can be integrated into existing LMS systems and map exam results and further data using Blockchain technologies. Both were developed following an iterative design process. And third: The results of a focus group, which simulated the assignment of grades after an oral online exam. The three examples presented here are based on the Blockchain system Ardor/Childchain Ignis, but each demonstrator has a different set of features and approaches.
In addition, the integration of various Blockchain solutions was conceptually designed to make a Multi-Chain model possible.
Dieses Paper ist eine überarbeitete Kurzfassung der Bachelorarbeit, welche 2019 von der Autorin unter dem gleichen Titel geschrieben wurde. Sie setzt sich mit der Herausforderung, kleine Zahlungen effizient mithilfe der Blockchain umzusetzen, auseinander. Ziel ist dabei, verschiedene Ansätze vorzustellen und ihr Potenzial zu prüfen. Prinzipiell hat der Einsatz von Micropayment-Schemas das Ziel, (häufige) Zahlungen von Kleinbeträgen in der Abwicklung möglichst effizient zu gestalten. Das Ungleichgewicht, dass die Kosten einer Zahlung den zu zahlenden Betrag übersteigen, gilt es insbesondere auf der Blockchain zu vermeiden. In diesem Paper werden verschiedene Ansätze für Micropayments vorgestellt und nach verschiedenen Punkten untersucht werden. Dabei wird unter anderem Wert auf die Kostenminimierung, Sicherheit und dezentrale Umsetzbarkeit gelegt. Aber auch die Anwendbarkeit und Ressourcenanforderung der verschiedenen Schemata sollen in dieser Arbeit betrachtet werden.
With the increasing usage of blockchain technology, legal challenges such as GDPR compliance arise. Especially the right of erasure is considered challenging as blockchains are tamperproof by design. Several approaches investigated
possibilities to weaken the tamperproof aspect of blockchains in favor of GDPR compliance. This paper presents several approaches, then focuses on chameleon hash functions by evaluating the possibility to use these specific functions in a private blockchain. The goal of the built system is to take a step towards the digitization of the bill of lading used in international trade. This paper describes the developed software as well as the core considerations around the system such as network design or block structure.
Both cryptocurrency researchers and early adopters of cryptocurrencies agree that they possess a special kind of materiality, based on the laborious productive process of digital ‘mining’ [1]. This idea first appears in the Bitcoin White Paper [2] that encourages Bitcoin adopters to construct and justify its value in metaphoric comparison to gold mining. In
this paper, I explore three material aspects of blockchain: physical infrastructure, human language and computer code. I apply the concept of 'continuous materiality' [3] to show how these three aspects interact in practical implementations of blockchain such as Bitcoin and Ethereum. I start from the concept of ‘digital metallism’ that stands for ‘fundamental value’ of cryptocurrencies, and end with the move of Ethereum to ‘proof-of-stake’, partially as a countermeasure against ‘evil miners’. I conclude that ignoring material aspects of blockchain technology can only further problematize complicated relations between their technical, semiotic and social materiality.