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International Journal of Big Data Intelligent Technology, 2020, 1(1); doi: 10.38007/IJBDIT.2020.010104.

Multimedia Smart Teaching of Blockchain and Interactive Teaching Nanomaterial Devices

Author(s)

Rajite Ragaba

Corresponding Author:
Rajite Ragaba
Affiliation(s)

Vellore Institute of Technology, India

Abstract

The blockchain and interactive teaching nanomaterial device refers to a device that combines blockchain technology with nanomaterials. This paper aims to apply it to multimedia smart teaching to solve the existing development problems of the interactive teaching market. This paper first introduces the meaning of nanomaterials and how their mechanisms are characterized, and then gives an overview of the theory of blockchain technology, and finally compare and test the multimedia smart teaching and traditional teaching based on blockchain and interactive teaching nanomaterial devices. The results showed that the teaching method proposed in this paper achieves more than 8 points in the experience score of both teachers and students, which verifies its feasibility.

Keywords

Blockchain Technology, Nanomaterials Device, Multimedia Smart Teaching, Interactive Teaching

Cite This Paper

Rajite Ragaba. Multimedia Smart Teaching of Blockchain and Interactive Teaching Nanomaterial Devices. International Journal of Big Data Intelligent Technology (2020), Vol. 1, Issue 1: 57-72. https://doi.org/10.38007/IJBDIT.2020.010104.

References

[1] Zhang W ,  Tao K X ,  Li J F. Modeling and Prediction of Stock Price with Convolutional Neural Network Based on Blockchain Interactive Information. Wireless Communications and Mobile Computing, 2020, 2020(2):1-10. https://doi.org/10.1155/2020/6686181

[2] Zhang J . Interaction design research based on large data rule mining and blockchain communication technology. Soft Computing, 2020, 24(21):16593-16604.

[3] Zhang Z ,  Yuan Z ,  Ni G. The quality traceability system for prefabricated buildings using blockchain: An integrated framework. Frontiers of Engineering Management, 2020, 7(4):528-546. https://doi.org/10.1007/s42524-020-0127-z

[4] Jingxia, Wu, Yang. The applications of carbon nanomaterials in fiber-shaped energy storage devices. Journal of Semiconductors, 2018, 01(v.39):52-60.

[5] Lin Y ,  Yuan G ,  Fang F. Recent progress on printable power supply devices and systems with nanomaterials. Nano Research, 2018, 11(006):3065-3087. https://doi.org/10.1007/s12274-018-2068-y

[6] Dinh N N ,  Khanh T ,  Long L M. Nanomaterials for Organic Optoelectronic Devices: Organic Light-Emitting Diodes, Organics Solar Cells and Organic Gas Sensors. MATERIALS TRANSACTIONS, 2020, 61(8):1422-1429.

[7] Iansiti M ,  Lakhani K R . The Truth About Blockchain:. Harvard business review, 2017, 95(1):118-127.

[8] Sikorski J J ,  Haughton J ,  Kraft M . Blockchain technology in the chemical industry: Machine-to-machine electricity market. Applied Energy, 2017, 195(JUN.1):234-246.

[9] Kshetri, Nir. Can Blockchain Strengthen the Internet of Things?. It Professional, 2017, 19(4):68-72. https://doi.org/10.1109/MITP.2017.3051335

[10] Dorri A ,  Steger M ,  Kanhere S S. BlockChain: A Distributed Solution to Automotive Security and Privacy. IEEE Communications Magazine, 2017, 55(12):119-125.

[11] Olnes S ,  Ubacht J ,  Janssen M . Blockchain in government: Benefits and implications of distributed ledger technology for information sharing. Government Information Quarterly An International Journal of Information Technology Management Policies & Practices, 2017, 34(3):355-364. https://doi.org/10.1016/j.giq.2017.09.007

[12] Mengelkamp E ,  Notheisen B ,  Beer C . A blockchain-based smart grid: towards sustainable local energy markets. Computer Science - Research and Development, 2018, 33(1-2):207-214. https://doi.org/10.1007/s00450-017-0360-9

[13] Sharma P K ,  Singh S ,  Jeong Y S. DistBlockNet: A Distributed Blockchains-Based Secure SDN Architecture for IoT Networks. IEEE Communications Magazine, 2017, 55(9):78-85.

[14] Mser M ,  Soska K ,  Heilman E. An Empirical Analysis of Traceability in the Monero Blockchain. Proceedings on Privacy Enhancing Technologies, 2018, 2018(3):143-163. https://doi.org/10.1515/popets-2018-0025

[15] Miraz M H ,  Ali M . Applications of Blockchain Technology beyond Cryptocurrency. Annals of Emerging Technologies in Computing, 2018, 2(1):1-6. https://doi.org/10.33166/AETiC.2018.01.001

[16] Aune R T ,  Krellenstein A , M O’Hara, et al. Footprints on a Blockchain: Trading and Information Leakage in Distributed Ledgers. Journal of Trading, 2017, 12(3):5-13. https://doi.org/10.3905/jot.2017.12.3.005

[17] Peck M E . Blockchain world - Do you need a blockchain? This chart will tell you if the technology can solve your problem. IEEE Spectrum, 2017, 54(10):38-60. https://doi.org/10.1109/MSPEC.2017.8048838

[18] Beck R ,  Avital M ,  Rossi M. Blockchain Technology in Business and Information Systems Research. Business & Information Systems Engineering: The International Journal of WIRTSCHAFTSINFORMATIK, 2017, 59(6):381-384.

[19] Kshetri N . Blockchain's roles in strengthening cybersecurity and protecting privacy. Telecommunications Policy, 2017, 41( 10):1027-1038. https://doi.org/10.1016/j.telpol.2017.09.003

[20] Palanisamy P ,  K  Paavizhi,  Saravanakumar A R . Techno Pedagogical Skills For Teaching-Learning Process In Smart Class. Talent Development and Excellence, 2020, 12(1):4984-4994.

[21] Ratnaparkhi, Rubina, Wiznitzer, et al. Evaluation of Weekly Dose of Development, a Multimedia Curriculum Teaching Pediatric Developmental Milestones: Is a Weekly Dose Enough?. Journal of developmental and behavioral pediatrics, 2018, 39(2):S19-S19.