Smart Contracts in IoT (Blockchain Smart Contracts for IoT)

Smart Contracts in IoT (Blockchain Smart Contracts for IoT)

1.

Subject title

Smart Contracts in IoT (Blockchain Smart Contracts for IoT)

Паметни договори во IoT (Blockchain Smart Contracts for IoT)

2.

Code

m23_w_067

3.

Study program

Cloud Computing, IT management, Bioinformatics, Data science in computer science and engineering, Security, Cryptography and Coding, Еducation with ICT, Eco-informatics, Inteligent Systems, Internet Technologies and cyber security, Computer Science, Statistics and Data Analytics, Software Engineering, Cloud Computing, IT management, Bioinformatics, Security, Cryptography and Coding, Statistics and Data Analytics, Software Engineering, Software for embedded systems,

4.

Organizer of the study program (unit, institute, department, division)

Faculty of Information Sciences and Computer Engineering

5.

Study cycle (first, second, third)

Втор циклус

6.

Academic year / semester

5 / Зимски

7. Number of ECTS credits

6.0

8.

Instructor

9.

Prerequisites for enrollment

10.

Subject goals and competencies:


Upon completion of the course, students will be blocked with blockchain technology and the full steak that enables it. They will additionally learn how to use smart contracts to create distributed IoT apps.

11.

Subject content:


Introduction to IoT. Introduction to blockchain. Ethereum. Developing ethereum applications. Introduction to ICO (Crowdsale). Blockchain and cryptocurrencies. Data layer. Network layer. A layer of consensus. Application layer and writing smart contracts. Integration of smart contracts to create smart distributed applications (SMART DAPPS).

12.

Learning methods:


Предавања поддржани со презентации преку слајдови, интерактивни предавања, вежби (користење на опрема и софтверски пакети), тимска работа, пример случаи, поканети гости предавачи, самостојна изработка и одбрана на проектна задача и семинарска работа, учење во електронско опкружување (форуми, консултации).

13.

Total available time fund

6.0 ECTS x 30 hours = 180 hours

14.

Time distribution

45 + 15 + 30 + 50 + 40 = 180 hours

15.

Forms of teaching activities

15.1.

Lectures - theoretical teaching

45 hours

15.2.

Exercises (laboratory, classroom), seminars, team work

15 hours

16.

Other forms of activities

16.1.

Project tasks

50 hours

16.2.

Independent tasks

30 hours

16.3.

Homework

40 hours

17.

Grading method

17.1.

Tests

45 points

17.2.

Seminar work / project (presentation: written and oral)

50 points

17.3.

Activities and learning

10 points

17.4.

Final exam

0 points

18.

Grading criteria (points / grade)

up to 50 points

5 (five) (F)

from 51 to 60 points

6 (six) (E)

from 61 to 70 points

7 (seven) (D)

from 71 to 80 points

8 (eight) (C)

from 81 to 90 points

9 (nine) (B)

from 91 to 100 points

10 (ten) (A)

19.

Condition for signature and taking final exam

реализирани активности 15 и 16

20.

Language of instruction

македонски и англиски

21.

Quality assurance method

механизам на интерна евалуација и анкети

22.

Literature

22.1.

Mandatory literature

No.

Author

Title

Publisher

Year

7844

Terry Parker

Smart Contracts: The Ultimate Guide To Blockchain Smart Contracts - Learn How To Use Smart Contracts For Cryptocurrency Exchange

CreateSpace Independent Publishing Platform

2016

7845

Roger Wattenhofer

The Science of the Blockchain

CreateSpace Independent Publishing Platform

2016

7846

Henning Diedrich

Ethereum: Blockchains, Digital Assets, Smart Contracts, Decentralized Autonomous Organizations

CreateSpace Independent Publishing Platform

2016

22.2.

Additional literature

No.

Author

Title

Publisher

Year