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References: 1. Technical Whitepaper Harmony Team Version 2. https://harmony.one/whitepaper.pdf 2. Alangot B., Suresh M., Raj A. S. Reliable collective cosigning to scale blockchain with strong consistency. Proceedings of the Network and Distributed System Security Symposium (DISS'18), 2018. 3. David K. Gifford, Doctoral Dissertation, Information Storage in a Decentralized Computer System. 4. Kokoris-Kogias E., Jovanovic P., Gailly N., Khoffi I., Gasser L. and B. Ford. Enhancing Bitcoin Security and Performance with Strong Consistency via Collective Signing. In Proceedings of the 25th USENIX Conference on Security Symposium, 2016. 5. Kiayias A., I. Konstantinou, A. Russell, B. David, and R. Oliynykov. Ouroboros: A provably secure proof-of-stake blockchain protocol. Cryptology ePrint Archive, Report 2016/889, 2016. http://eprint.iacr.org/ 6. Loi Luu, Viswesh Narayanan, Chaodong Zheng, Kunal Baweja, Seth Gilbert, and Prateek Saxena. A secure sharding protocol for open blockchains. In Proceedings of the 2016 ACM SIGSAC Conference on Computer and Communications Security, CCS '16, pages 17–30, New York, NY, USA, 2016. ACM. 7. David K. Gifford, Doctoral Dissertation, Information Storage in a Decentralized Computer System.
Abstract The article develops a scenario approach to the digitalisation of education based on the use of blockchain technology as an approach to governance, reflecting with a sufficient degree of similarity the implementing structure of the homeostat.
blockchain technology, digitalisation of education, governance
blockchain technology, digitalisation of education, governance
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