Metrology:
Define metrology and its significance in various industries.
Discuss different types of measurements and their importance in quality control and assurance.
Explain the principles of measurement uncertainty and its estimation.
Measurement Systems:
Describe the components of a measurement system, including sensors, transducers, signal conditioning, and data acquisition.
Discuss the characteristics and selection criteria for different types of sensors and transducers.
Calibration:
Explain the concept of calibration and its importance in maintaining measurement accuracy and traceability.
Describe the procedures for calibrating measurement instruments and standards.
Measurement Standards:
Discuss the role of national and international standards organizations in establishing measurement standards.
Identify common measurement standards and their applications in different industries.
Instrumentation:
Define instrumentation and its role in measuring and monitoring physical parameters.
Discuss different types of instrumentation systems, such as analog and digital instruments, and their operating principles.
Data Acquisition Systems:
Explain the function and components of data acquisition systems, including sensors, signal conditioning, analog-to-digital conversion, and data logging.
Discuss the selection criteria for data acquisition systems and their applications in real-world scenarios.
Tribology:
Define tribology and its scope, including the study of friction, wear, and lubrication.
Discuss the importance of tribology in engineering design, maintenance, and reliability.
Friction:
Describe the factors influencing friction, including surface roughness, contact pressure, and lubrication.
Discuss different types of friction (e.g., static, kinetic) and methods for reducing frictional losses.