E6 Applied Physics and Nanomaterials

Applied Physics and Nanomaterials for Energy, Medicine, Radio Electronics and Telecommunications

Bachelor

Specialty E6 “Applied Physics and Nanomaterials”, Educational Program “Applied Physics and Nanomaterials for Energy, Medicine, Radioelectronics and Telecommunications” (ICM, NTU “KPI”), is aimed at the development and application of physical methods of studying the properties of materials, the creation of theoretical models of physical systems and processes, radio -electronic systems, algorithms and software for data analysis, processes, signals, forecasting and decision -making, search and extraction of knowledge.

Issues: Department of Micro- and Nanoelectronics and Department of Physics of Metals and Semiconductors.

The educational program of the current year is available on the site of the quality assurance department of NTU “KPI”

The educational program of 2023 is available on the website of the quality assurance department of NTU “KPI

Characteristics of the educational program

Purpose of the educational program: to ensure the training of specialists in the field of applied physics and nanomaterials capable of:

  • to solve specialized complex problems and practical problems related to the study of physical objects and systems, processes and phenomena and their technical applications in their professional activity with the use of fundamental and special methods of physics, mathematics, and radio electronics;

  • develop models, algorithms, technologies;

  • to сreate and operate appropriate software and technological equipment.

The main focus of the educational program. The focus of the educational and professional program “Applied Physics and Nanomaterials for Energy, Medicine, Radioelectronics and Telecommunications” is to gain modern knowledge of physical phenomena and processes and their use in the creation of new, nanostructured materials, control and study of their properties and use of their nor.

Features of the program. The applicants study the basics of solid physics, radiophysics and their practical application in the technologies of creating new materials and radioelectronics technology, which is deeply considered within the two educational trajectories offered to students.

The following selective blocks are provided:

  1. Engineering of radio electronic systems;
  2. Applied physics and nanomaterials for electronics, energy and medicine.

EP has an orientation to the individualization of learning, which is expressed in the presence of additional selective disciplines in the list of vocational training, which provide deepening of knowledge in different trajectories and/or cross-tractical competences. Among the peculiarities of the program are the involvement of research institutes: Kharkiv Physical and Technical Institute of NAS of Ukraine, Institute of Ionosphere of the NAS and MEU of Ukraine, Physical and Technical Institute of Low Temperations of NAS of Ukraine.

General structure

Structural and logical scheme of EP

EP educational components (sylabus)

REQUIRED EDUCATIONL COMPONENTS

General preparation

GP 1The history and culture of Ukraine
GP 2Ukrainian language (professional direction)
GP 3Foreign language
GP 4Philosophy
GP 5Science of law
GP 6History of Science and Technology
GP 7Higher Mathematics Part 1
GP 8Higher Mathematics Part 2
GP 9Higher Mathematics Part 3
GP 10Higher Mathematics Part 4
GP 11Physics Part 1
GP 12Physics Part 2
GP 13Physics Part 3
GP 14Ecology
GP 15Physical education

Special (professional) training

SP 1Introduction to the specialty. Reaching practice
SP 2Programming Part 1
SP 3Programming Part 2
SP 4Electromagnetic systems
SP 5Physical bases of electronics
SP 6Probability theory
SP 7Numerical methods in physics and their programming
SP 8Methods of mathematical physics
SP 9Condensed physics
SP 10Statistical radiophysics
SP 11The theory of oscillations
SP 12Applied Physics in Medical Radiology
SP 13Electrodynamics
SP 14Mathematical Methods of Artificial Intelligence
SP 15Enterprise economy
SP 16Fundamentals of Professional Safety and Human Health
SP 17Physical bases of nanotechnology
PP 1Production practice
PP 2Practice
А Attestation
SELECTIVE COMPONENTS OF THE EDUCATIONAL PROGRAM
Profile preparation by blocks
Block 01 “Radioelectronic Systems Engineering”
VP 1.1 Analog electronics
VP 1.2Radiotechnical circles and signals
VP 1.3Computer modeling
VP 1.4Digital electronics
VP 1.5Microprocessor systems
VP 1.6Antennas and NV devices
VP 1.7Generation and signal generation devices
VP 1.8Fundamentals of information theory
VP 1.9Basics of radar
VP 1.10Signal reception devices
VP 1.11Geocosymos radiophysics
Block 02 “Applied Physics and Nanomaterials for Electronics, Energy and Medicine”
VP 2.1Physics and chemistry of phase transformations
VP 2.2Crystallography
VP 2.3Vacuum equipment and technology
VP 2.4Crystalline structure defects and strength theory
VP 2.5Methods of structural analysis of Part 1
VP 2.6Electronography of nanomaterials
VP 2.7Methods of structural analysis of Part 2
VP 2.8Physical properties of materials Part 1
VP 2.9Radiation stability of materials
VP 2.10Spectral and optical analysis
VP 2.11Physical properties of materials Part 2
Discipline of free choice of student training student
SSTD 1Data Algorithms and Structures
SSTD 1Hardware and software tools
SSTD 1Databases
SSTD 2Web Technology in Radiophysics
SSTD 2Atomic diffusion in solids
SSTD 2Mass watering and heat transfer in solids
SSTD 3Computer design of the RES
SSTD 3Technologies of thin films
SSTD 3Physics of interaction of radiation with a substance
SSTD 4Metrology and radio measuring
SSTD 4Non -destructive control methods
SSTD 4Introduction to quantum mechanics
SSTD 5Radio Automatics
SSTD 5Materials for Biology and Medicine
SSTD 5Communication systems with moving objects
SSTD 6Methods and Signal Processing Systems
SSTD 6Parallel and distributed data processing
SSTD 6X-ray-Fluorescent analysis

Proposals for changes to the Education Program

E6 "Applied Physics and Nanomaterials for Energy, Medicine, Radio Electronics and Telecommunications" (Bachelor)