Electronics and information technology in medicine

Faculty of Radiophysics, Electronics and Computer Systems

Name
Electronics and information technology in medicine
Program code
105
Qualification awarded
Bachelor in Applied Physics and Nanomaterials
Length of programme
4 years
Number of credits
240
level of qualification according to the National Qualification Framework and the European Qualifications Framework
6
Qualification level
First (Bachelor)
Discipline
Natural sciences
Speciality
KnowledgeField EN
Specific admission requirements
Complete general secondary education (NQF Level 3) or higher.
Specific arrangements for recognition of prior learning
Admission was based on the results of External Independent Assessment of Ukrainian language and literature, physics, and mathematics.
Qualification requirements and regulations, including graduation requirements
Attestation of higher education seekers is carried out in the form of public defense of bachelor's degree and comprehensive exam in "Applied Physics and Nanomaterials" and ends with the issuance of a standard document on awarding them a degree with higher education: Bachelor of Applied Physics.
Programme learning outcomes
1. To know and understand modern physics at a level sufficient for solving complex specialized problems and practical problems of applied physics. 2. Apply effective technologies, tools and methods of experimental research of the properties of substances and materials, including nanomaterials, when solving practical problems of applied physics. 3. Search for the necessary scientific and technical information in the scientific literature, electronic databases, other sources, evaluate the reliability and relevance of the information. 4. To be able to apply foreign terminology to the extent sufficient for professional activity. 5. Apply modern mathematical methods for building and analyzing mathematical models of physical processes. 6. To know the goals of sustainable development and the possibilities of one's professional sphere to achieve them, including in Ukraine. 7. Apply physical, mathematical and computer models for the study of physical phenomena, development of devices and science-intensive technologies. 8. To understand the patterns of development of applied physics, its place in the development of technology, technology and society, including in solving environmental problems. 9. To know the basics of information technologies for teaching and scientific research, to be able to use modern packages at a level sufficient for solving mathematical problems by numerical methods, for computer modeling of physical phenomena and processes, for statistical processing of experimental results. 10. Choose effective methods and instrumental means of conducting research in the field of applied physics. 11. Communicate freely on professional issues in the national and English languages ​​orally and in writing. 12. To plan and organize productive professional activities individually and as a team member in the development and implementation of scientific and applied projects. 13. Classify, analyze and interpret scientific and technical information in the field of applied physics. 14. To present the results of research and development to specialists and non-specialists, to argue one's own position. 15. Evaluate financial, material and other costs associated with the implementation of projects in the field of applied physics, social, environmental and other potential consequences of project implementation. 16. Be able to analyze data, make generalizations and independent conclusions regarding the obtained scientific and practical results in oral and written form, be responsible for the reliability of research results and adhere to the principles of academic integrity.
Form of study
Full-time form
Examination regulations and grading scale
Written and oral exams, tests, differentiated tests, presentations, essays, tests, ongoing control, defense of practicals, passing of final certification with public defense of the bachelor thesis.
Оbligatory or optional mobility windows (if applicable)
Students can participate in academic mobility programs.
Work placement
Educational practice in the specialty in the 4th year. Professional practice is a mandatory component of the educational program.
Work-based learning
No
Director of the course
Andrii Vyacheslavovich Netreba
Department of mathematics and Theoretical Radio Physics
Faculty of Radiophysics, Electronics and Computer Systems
Occupational profiles of graduates
Graduates can work as technical specialists in the field of physical sciences and technology. Work positions in educational institutions, in design and survey organizations, in research organizations, in production and scientific institutions state, corporate and private companies, other organizations that use knowledge in the fields of applied physics, electronics and information technology
Access to further studies
Access to programmes of the Second (Master) level of the higher education. Has the right to acquire additional qualifications in the adult education system.

Subjects

As part of the curriculum, students study the following disciplines

Mathematical analysis 1 semester
Code: ОК.17,
Programming Fundamentals
Code: ОК 28,
Mechanics
Code: ОК.21,
English 1 semester
Code: ОК2,
Hardware and Software
Code: ОК.11,
Laboratory of experimental physics 1 semester
Code: ОК 28,
ADMISSION TO UNIVERSITY STUDIES
Code: ОК1,
Molecular physics
Code: ОК 23,
Laboratory of experimental physics 2 semester
Code: ОК 28,
Mathematical analysis 2 semester
Code: ОК.09,
English 2 semester
Code: ОК2,
General algebra
Code: ОК.10,
Object-Oriented Programming
Code: ОК 25,
Differential equations and probability theory. Part one "Differential equations".
Code: ОК 06,
Theoretical mechanics
Code: OК.35,
Numerical methods of approximation
Code: РК.5,01,
Methods of mathematical physics 3 semester
Code: ОК.20,
Philosophy
Code: ОК 03,
Laboratory of experimental physics 3 semester
Code: ОК 28,
Electricity and magnetism
Code: ОК 07,
RADIO ENGINEERING CIRCUITS AND SIGNALS
Code: ОК 17,
ELECTRODYNAMICS 4 semester
Code: ОК 08,
RADIO ELECTRONICS
Code: ОК 22,
COURSE WORK ON ELECTRONICS
Code: ОК 23,
Optics
Code: ОК 26,
Laboratory of experimental physics 4 semester
Code: ОК 28,
Methods of mathematical physics 4 semester
Code: ОК.20,
Principles of Ecology
Code: ОК 4,
Differential equations and Probability theory. Part two “ Probability theory”
Code: ОК 06,
Quantum mechanics
Code: ОК 12,
Ukrainian and foreign culture
Code: ОК 5,
Socio-political studies
Code: ОК 6,
ELECTRODYNAMICS 5 semester
Code: ОК 08,
Laboratory of experimental physics 5 semester
Code: ОК 28,
Atomic Physics
Code: ОК 02,
Oscillations and waves
Code: ОК 27,
Development of physical theories
Code: ОК 31,
Laboratory on Medical Radio Physics 6 semester
Code: ВБ.1.13,
Laboratory of optical, microwave and digital technology P.1
Code: ВБ 2.14,
Statistical physics
Code: ОК34,
Technologies of Processing and Analysis of Diagnostic Data
Code: ВБ.1.04,
Basics of photonics and electronics
Code: ВБ.2.01,
Information technologies in the media environment
Code: ВБ.2.03,
Molecular Physiology and Biochemistry
Code: ВБ.1.01,
Microwave and Nanoelectronics
Code: ВБ.1.03,
Computer Networks
Code: ВБ 2.4,
Nuclear physics and astrophysics
Code: ОК 29,
Fundamentals of Electron Physics
Code: ВБ.1.07,
Quantum and Semiconductor Electronics
Code: ВБ.1.08,
Computer Experiment and Medical Images Processing
Code: ВБ.1.09,
Medical Radio Physics
Code: ВБ.1.05,
Anatomy and physiology for physicists
Code: ВБ.1.06,
Laboratory on Medical Radio Physics 7 semester
Code: ВБ.1.13,
Biophysics of Complex Systems 7 semester
Code: ВБ.1.14,
English language 7 semester
Code: ОК2,
Scientific and industrial practice
Code: ОК 32,
Laboratory of optical, microwave and digital technology part 2
Code: ВБ 2.14,
Laboratory of optical, microwave and digital technology part 3
Code: ВБ 2.14,
Seminar on quantum radiophysics
Code: ВБ 2.13,
BACHELOR WORK
Code: ОК 33,
Semiconductor electronics of nanostructures
Code: ВБ 2.11,
Microprocessor technology
Code: ВБ.2.12,
Microprocessor Systems
Code: ВБ.1.10,
Seminar on Medical Radiophysics
Code: ВБ.1.12,
Physical Fundamentals of Medical Engineering
Code: ВБ.1.11,
Laboratory on Medical Radio Physics 8 semester
Code: ВБ.1.13,
Biophysics of Complex Systems 8 semester
Code: ВБ.1.14,
Selected sections of labor law and basics entrepreneurial activity
Code: ОК 7,
Elements of the theory of limits and differential calculus
Code: ОК 09,
Numerical and functional series, integral calculus
Code: ОК 38,