Measurement and Instrumentation: Theory and Application
Autor Alan S. Morris, Reza Langarien Limba Engleză Paperback – 4 dec 2020
- Provides early coverage of measurement system design to facilitate a better framework for understanding the importance of studying measurement and instrumentation
- Covers the latest developments in measurement technologies, including smart sensors, intelligent instruments, microsensors, digital recorders, displays and interfaces
- Includes significant material on data acquisition and signal processing with LabVIEW
- New sections in this updated edition include an expansion of sections on MEMS and electrical safety, new illustrations, including more photos of real devices, and more worked examples and end-of-chapter problems
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Specificații
ISBN-13: 9780128171417
ISBN-10: 0128171413
Pagini: 736
Dimensiuni: 191 x 235 x 32 mm
Greutate: 1.11 kg
Ediția:3
Editura: ELSEVIER SCIENCE
ISBN-10: 0128171413
Pagini: 736
Dimensiuni: 191 x 235 x 32 mm
Greutate: 1.11 kg
Ediția:3
Editura: ELSEVIER SCIENCE
Public țintă
Junior and senior undergraduate engineering students taking measurement and instrumentation courses primarily in mechanical and aerospace engineering departmentsCuprins
1. Fundamentals of Measurement Systems
2. Instrument Types and Performance Characteristics
3. Measurement Uncertainty
4. Statistical Analysis of Measurements Subject to Random Errors
5. Calibration of Measuring Sensors and Instruments
6. Data Acquisition and Signal Processing
7. Variable Conversion
8. Measurement Signal Transmission
9. Display, Recording, and Presentation of Measurement Data
10. Intelligent Devices
11. Measurement Reliability and Safety Systems
12. Data Acquisition with LabVIEW
13. Sensor Technologies
14. Temperature Measurement
15. Pressure Measurement
16. Flow Measurement
17. Level Measurement
18. Mass, Force, and Torque Measurement
19. Translational Motion, Vibration, and Shock Measurement
20. Rotational Motion Transducers
21. Summary of Other Measurements
Appendix
1. Imperial-Metric-SI Conversion Tables
2. Thévenin’s Theorem
3. Thermocouple Tables
4. Using Mathematical Tables
2. Instrument Types and Performance Characteristics
3. Measurement Uncertainty
4. Statistical Analysis of Measurements Subject to Random Errors
5. Calibration of Measuring Sensors and Instruments
6. Data Acquisition and Signal Processing
7. Variable Conversion
8. Measurement Signal Transmission
9. Display, Recording, and Presentation of Measurement Data
10. Intelligent Devices
11. Measurement Reliability and Safety Systems
12. Data Acquisition with LabVIEW
13. Sensor Technologies
14. Temperature Measurement
15. Pressure Measurement
16. Flow Measurement
17. Level Measurement
18. Mass, Force, and Torque Measurement
19. Translational Motion, Vibration, and Shock Measurement
20. Rotational Motion Transducers
21. Summary of Other Measurements
Appendix
1. Imperial-Metric-SI Conversion Tables
2. Thévenin’s Theorem
3. Thermocouple Tables
4. Using Mathematical Tables