Ion beam technologies
Course:
Structural unit: Institute of High Technologies
Title
Ion beam technologies
Code
ДВС.2.01.03
Module type
Вибіркова дисципліна для ОП
Educational cycle
Second
Year of study when the component is delivered
2023/2024
Semester/trimester when the component is delivered
3 Semester
Number of ECTS credits allocated
3
Learning outcomes
The ability to build adequate models of chemical phenomena, to study them for obtaining new conclusions and deepening of understanding of nature, including using methods molecular, mathematical and computer modeling. Ability to organize, plan and implement a chemical experiment. The ability to interpret, objectively evaluate and present the results of one's work research. The ability to formulate new hypotheses and scientific problems in the field of chemistry, to choose directions and appropriate methods for their solution based on an understanding of modern issues research in the field of chemistry and taking into account the available resources. The ability to choose optimal research methods and techniques. Possession of the general methodology of carrying out scientific research.
Form of study
Full-time form
Prerequisites and co-requisites
1. Have basic knowledge of general physics and the basics of quantum and statistical physics.
2. To be able to apply knowledge of general physics, statistical and quantum
of physics to the analysis of the properties of physical systems and structures.
3. Possess elementary skills of higher mathematics.
Course content
The course studies the physical processes of acquisition, transportation, focusing and
interactions of accelerated ion beams with various objects, including living organisms
and cells. Analytical information, which is obtained with the help of modern nuclear physics methods, is the basis for modern interdisciplinary research and technologies. IN
the course examines in detail the main physical phenomena that occur during interaction
ionizing radiation, including accelerated ions, with electrons and nuclei
atoms of the studied substance and their practical application in solving applied problems
tasks
Recommended or required reading and other learning resources/tools
1. Alexander Wu Chao, Maury Tigner. Handbook of accelerator physics and engineering.
Singapore: World Scientific, 1999
2. НРБУ-97.˚Норми˚радіаційної˚безпеки˚України
http://zakon3.rada.gov.ua/rada/show/en/v0062282-97.
3. ДСП 6.177-2005-09-02. Основні санітарні правила радіаційної безпеки України
4. http://zakon2.rada.gov.ua/laws/show/z0552-05
Planned learning activities and teaching methods
lectures, practical
Assessment methods and criteria
A student can get a maximum of 60
points for homework, independent tasks, oral answers, tests, additions
in practical classes (20 points in each content module). Modular control:
3 modular control works (MCR). The final semester control is held at
exam forms (40 points). The exam ticket includes 2 theoretical questions (15 points each)
and one problem (10 points).
Language of instruction
Ukrainian
Lecturers
This discipline is taught by the following teachers
Kolienov
Serhii
Department of Quantum Radiophysics
Institute of High Technologies
Institute of High Technologies
Departments
The following departments are involved in teaching the above discipline
Department of Quantum Radiophysics
Institute of High Technologies