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Smart Technologies

Smart Technologies

6B06202 Smart Technology

Profile subjects: Mathematics, Physics.

Threshold Score (Grant): 85.

Objective of Educational Programm

Training of highly qualified specialists for innovative and knowledge-intensive sectors of the economy in the field of telecommunications, possessing theoretical and practical knowledge, skills and abilities necessary for their implementation in professional activities that meet the needs of the domestic and world markets for intellectual labor.

List of a specialist’s positions

  • Telecommunication Systems Engineer
  • Communication Systems Designer
  • Network Engineer
  • Circuit Engineer
  • Embedded Systems Engineer
  • Smart Systems Engineer
  • Specialtist in the field of cloud technologies

Learning outcomes

  • To be able to apply the functionality of modern microprocessors, sensors and microcontrollers; analyze and synthesize technical hardware and software solutions.
  • Ability to analyze various sources of information, ideas and concepts, and organize sources for the purpose of writing academic papers and reports, oral presentations and negotiations.
  • To be able to apply modern theoretical and experimental research methods in order to create new promising tools for computerized intelligent systems. Know different conceptual approaches of data storage, application scenarios of different database classes.
  • To be able to analyze and develop software in areas related to cloud computing, artificial intelligence and machine learning, Internet of things, cybersecurity and networking to effectively design computer systems of varying complexity
  • To know the main classes of ICT systems, tasks and tools, to understand the domain areas of their application and to justify the choice when solving production or business problems. Know how to work in a specific operating system, and be able to organise application support in other operating systems. Know how to organise device support, hardware drivers, network operating systems.
  • To be able to participate as part of a team in the performance of laboratory, stands, polygons, submit -accept, and other types of testing of systems and means of operation, maintenance, repair, and intelligent systems.
  • To be able to identify a business niche and carry out technical and economic analysis and commercialization of technological solutions. Develop entrepreneurial thinking and management skills.
  • To be able to apply mathematical methods in software development and in the construction of qualitative and quantitative models
  • To know the principles of construction and description of algorithms. To be able to create, test, debug, and deploy programs in different programming languages. Knowledge of the main platforms, technologies and hardware and software tools for implementing systems.
  • To be able to design components, processes for systems, solutions for signal processing, pattern recognition, embedded systems that meet the specified needs. Justify the decisions made and implemented in the operation of intelligent systems and devices, is able to apply the results in practice.
  • To be able to develop mobile and web applications. Know the basics of creating and using mobile and web applications that use the graphical user interface, event handling, persistent data storage, multimedia handling, and communication interfaces available on devices.
  • To be able to design, deploy, administer and protect computer network solutions. Develop and implement security policies and management-related measures to protect computers and networks.
  • Have a systemic understanding of the role of individuals and events in shaping the current situation; the ability to critically evaluate and position actions regarding complex social processes in light of historical factors.
  • To be able to present ideas and reasoning about information technology in written and oral format, to speak to an audience and defend a point of view in the national language, in English and in a language of intercultural communication.
  • To use a variety of physical activities to maintain and promote health in a meaningful way.
B059 – Communications and communication technologies

Educational group
Bachelor in Information and communication technologies on the educational program 6B06202 «Smart Technology»

Awarded degree
3 years

Duration of studies

Program Structure

GED – General Education Disciplines
EC– Elective Component
ДВО – Courses chosen by the student
Course CycleCourse ComponentCourse CodeCourse TitleAcademic Credits
1GEDЕСTP 3113Technological Entrepreneurship 5
2GEDECPred 2116Entrepreneurship 5
3GEDЕСFinancial Literacy5
4GEDDMCS1Digital Media, Culture and Society 15
5GEDDMCS2Digital Media, Сulturе and Society 25
6GEDFGL1Foreign (Gеrmаn) Language 15
7GEDFGL2Foreign (Gеrmаn) Language 25
8GEDFCL1 Foreign (Chinese) Language 15
9GEDFCL2Foreign (Chinese) Language 25
10GEDFKL1Foreign (Korean) Language 15
11GEDFKL2Foreign (Korean) Language 25
BD – Basic Disciplines
UC – University Component
EC – Elective Component
Course CycleCourse ComponentCourse CodeCourse TitleAcademic Credits
1BDAK 3221Academic Writing 5
2BDUCMATH 1115 MA1 1202Calculus 15
3BDUCMATH 1215 MA2 1203Calculus 25
4BDUCMATH 2125 LA 1201Linear Аlgebra5
5BDUCMATH 2145 DM 2207Discrete mathematics 5
6BDUCViS 2212Probability and Statistics 5
7BD UC AM UNICASApplied Mathematics 5
8BDUC Ph ST 2025Physics 5
9BDUC Nat.Sci.1145 IE Introduction to electrodynamics 5
10BD ECIE UNICASIntroduction to Electromagnetism 5
11BDUCCS 1115 ICPIntroduction to Computing and Programming 5
12BDUCCS 2055 ASiD 1205Algorithms and Data Structures 5
13BDUC OS 2207Object-Oriented Programming 5
14BD ЕСBDABig data analysis 5
15BDЕСAMO 3208Machine learning 5
16BDUCEEE 2115 CTCircuit theory 5
17BDUCEEE 2205 Elt 2302Electronics 5
18BDUCEEE 2145 DEDigital Electronics 5
19BDЕСTES 2207Digital Signal Processing 5
20BDUCSiS 2303Signals and Systems 5
21BDUCAK 3221Academic Writing 5
22BDUCCS 2155 OOPObject-oriented programming 5
23BDUCUP SIS 1211Educational Practice 2
24BDUCPP 3307Undergraduate Practice 4
25BDUCPP 3306Industrial Practice 8
MD – Major Disciplines
UC – University Component
EC – Elective Component
Course CycleCourse ComponentCourse CodeCourse TitleAcademic Credits
1MDЕСTHT UNICASThermodynamics and Heat Transfer 6
2MDЕСAF UNICAS Antenna Foundation 6
3MDЕСKZ 3305Computer Vision 5
4MD ЕСAPT UNICASAdvanced Programming Techniques 5
5MD UCPMMicrocontroller Programming 5
6MDUCPVS 3307Embedded Systems Design 5
7MD ЕСEOSEmbedded Operating Systems 5
8MDЕСIPImage processing 5
9MDUC Signals and Systems 5
10MDЕСNONEControl Systems 5
11MDЕСIEM UNICAS Industrial and Environmental Systems 5
12MDЕСIIS 3103Introduction to Intelligent Systems 5
13MDЕСIoTF DISCBIoT Fundamentals 5
14MDЕСDIoTDevelopment of IoT systems 5
15MDЕСIPPM UNICASIndustrial Plant Planning and Management 5
16MDЕСOCS 6Optical Communication Systems 6
17MDЕСWMCSWireless and Mobile Communication Systems 6
18MDUCCS 3145 KSC 3216Computer Networks 5
19MDUCCN 2 DISCBComputer Networks 25
20MDЕСBCS3308Computer Network Security 5
21MDЕСSCSNMSmart City System Networking Management 5
22MDЕСSCCISmart City and Connected Infrastucture 5
23MDUCMiII 3222Research Methods and Tools 5
24MDЕСSASensors and Actuators 5
25MDUCPP 2305Industrial Practice 4

Documents

Academic disciplines

Cycle of general education disciplines

Compulsory component / University’s component

Cycle of fundamental disciplines

University’s component

Cycle of fundamental disciplines

Elective component

Cycle of major disciplines

University’s component

Cycle of major disciplines

Elective component

Contacts

Admission Committee

+7 (7172) 64-57-10
info@astanait.edu.kz

Mon-Fri 9:00 – 18:00