Basics of Metrology

Kadyroldina Albina Talapzhanovna

The instructor profile

Description: This course studies the history, fundamental concepts, terminology, goals, and objectives of metrology as the science of measurement. It covers the types and methods of measurements, the basics of classical error theory, and the theory of measurement uncertainty. The course also explores signal measurement instruments, their properties and characteristics, as well as procedures for calibration and verification. The course is designed to provide students with knowledge of legislative and state metrological systems and practical skills in ensuring the consistency and accuracy of measurements.

Amount of credits: 5

Пререквизиты:

  • Physics 2

Course Workload:

Types of classes hours
Lectures 15
Practical works 30
Laboratory works
SAWTG (Student Autonomous Work under Teacher Guidance) 30
SAW (Student autonomous work) 75
Form of final control Exam
Final assessment method

Component: Component by selection

Cycle: Profiling disciplines

Goal
  • To form students' competencies in the field of theoretical, legislative and applied metrology.
Objective
  • 1. To introduce students to the history and tasks of metrology 2. To acquaint students with the basic concepts of metrology, classification and characteristics of measuring instruments and methods. 3. To acquaint students with methods for determining inaccuracies and repeatability of measurement results. 4. Introduce students to the basics of A / C and C / A processing. 5. To introduce students to the basics of legal metrology.
Learning outcome: knowledge and understanding
  • - the student knows the history, definitions of basic terms and metrological tasks; - the student has knowledge of the classification and properties of instruments and measurement methods;
Learning outcome: applying knowledge and understanding
  • - The student owns the basics of legal metrology. - the student can process the information received, perform its analysis and generalization.
Learning outcome: formation of judgments
  • - the student can draw conclusions, formulate and justify the opinion.
Learning outcome: communicative abilities
  • - the student can clearly state and defend the results of integrated engineering activities in the field of metrology.
Learning outcome: learning skills or learning abilities
  • - the student understands the need and knows the possibilities of lifelong learning; - the student can independently apply the methods and means of cognition, training and self-control, realize the prospects of intellectual, cultural, moral, physical and professional self-development and self-improvement.
Teaching methods

When conducting training, the use of the following educational technologies is provided: - interactive lecture (application of the following active forms of training: guided (guided) discussion or conversation; moderation; slide show or training films; brainstorming; motivational speech); - building scenarios for the development of various situations based on given conditions; - information and communication (for example, classes in a computer class using professional application software packages); - search and research (independent research activities of students in the learning process); - solving educational problems.

Topics of lectures
  • History and basic concepts of metrology
  • Physical quantities and units
  • Measurements, their classification
  • Principles and methods of measurement
  • Measurement errors, their classification
  • Description of random errors
  • The laws of the distribution of random errors
  • Processing Direct Multiple Measurement Results
  • Processing Indirect Multiple Measurement Results
  • Processing the results of direct unequal measurements
  • Measuring instruments, classification and metrological characteristics
  • Rationing of errors of measuring instruments
  • State system for ensuring the uniformity of measurements of the Republic of Kazakhstan (GSI RK)
  • Technical, legal, regulatory and organizational basis for ensuring the uniformity of measurements
  • International organizations in the field of metro-logic MBMV and OIML
Key reading
  • 1. Фридман А.Э. Основы метрологии. Современный курс. –СПб.: НПО «Профессионал», 2013. 2. Пронкин Н.С. Основы метрологии: практикум по метрологии и измерениям. –М.: Ло-гос, 2017. 3. Алексеев В.В. Метрология, стандартизация и сертификация. –М.: Издательский центр «Академия», 2007. 4. СТ РК ГСИ 2.1- 2018. Метрология. Термины и определения.
Further reading
  • 5. Измерения физических величин. Элективный курс: учебное пособие/ С.И. Кабардина, Н.И. Шеффер; под ред. О.Ф. Кабардина. – М.: Бином, 2011 6. Назаров Н.Г. Измерения: Планирование и обработка результатов: научное издание/ Н.Г. Назаров. – М.: Изд-во стандартов, 2000