Measurement, instrumentation, and sensors handbook. Spatial, mechanical, thermal, and radiation measurement /

The Second Edition of the bestselling Measurement, Instrumentation, and Sensors Handbook brings together all aspects of the design and implementation of measurement, instrumentation, and sensors. Reflecting the current state of the art, it describes the use of instruments and techniques for performi...

Full description

Saved in:
Bibliographic Details
Other Authors: Webster, John G., 1932-2023 (Editor), Eren, Halit (Professor of electrical engineering) (Editor)
Format: Electronic eBook
Language:English
Published: Boca Raton : CRC Press, [2014]
Edition:Second edition.
Subjects:
Online Access: Full text (WIT users only)
Full text (Wentworth users only)
Local Note:Ebook Library
Table of Contents:
  • Front Cover; Contents; Preface; Acknowledgments; Editors; Contributors; Part I
  • Instrumentation and Measurement Concepts; Chapter 1
  • Measurements, Instrumentation, and Sensors; Chapter 2
  • Characteristics of Instrumentation; Chapter 3
  • Operational Modes of Instrumentation; Chapter 4
  • Static and Dynamic Characteristics of Instrumentation; Chapter 5
  • Measurement Accuracy; Chapter 6
  • Development of Standards; Chapter 7
  • Measurement Standards; Chapter 8
  • Calibrations in Instrumentation and Measurements; Chapter 9
  • Intelligent Sensors and Instruments; Chapter 10
  • Virtual Instruments.
  • Chapter 11
  • Fail-Safe Instruments and Devices; Chapter 12
  • Dynamic Error Measurements of Force Sensors; Part II
  • Spatial Variables; Chapter 13
  • Thickness Measurement; Chapter 14
  • Distance Measurement; Chapter 15
  • Altitude Measurement; Chapter 16
  • Attitude Measurement; Chapter 17
  • Inertial Navigation; Chapter 18
  • Level Measurement; Chapter 19
  • Area Measurement; Chapter 20
  • Volume Measurement; Chapter 21
  • Tilt Measurement; Chapter 22
  • Proximity Sensingfor Robotics; Part III
  • Displacement; Chapter 23
  • Resistive Displacement Sensors; Chapter 24
  • Inductive Displacement Sensors.
  • Chapter 25
  • Capacitive Sensors: Displacement, Humidity, Force; Chapter 26
  • Piezoelectric Sensors and Transducers; Chapter 27
  • Laser Interferometer Displacement Sensor; Chapter 28
  • Bore-Gaging Displacement Sensors; Chapter 29
  • Ultrasonic Displacement Sensors; Chapter 30
  • Optical Encoder Displacement Sensors; Chapter 31
  • Magnetic Displacement Sensors; Chapter 32
  • Synchro/Resolver Displacement Sensors; Chapter 33
  • Optical Fiber Displacement Sensors; Chapter 34
  • Optical Beam Deflection Sensors; Chapter 35
  • Velocity Measurement; Part IV
  • Mechanical Variables.
  • Chapter 36
  • Acceleration, Vibration, and Shock Measurement; Chapter 37
  • Strain Measurement; Chapter 38
  • Tactile Sensing; Chapter 39
  • Pressure Measurement; Chapter 40
  • Vacuum Measurement; Chapter 41
  • Force Measurement; Chapter 42
  • Angle Measurement; Chapter 43
  • Mass, Weights, and Instrumentation; Chapter 44
  • Torque and Power Measurement; Chapter 45
  • Density Measurement; Chapter 46
  • Fluid Viscosity Measurement; Chapter 47
  • Surface Tension Measurement; Part V
  • Acoustics; Chapter 48
  • Acoustic Measurement; Chapter 49
  • Ultrasound Measurement; Part VI
  • Flow and Spot Velocity.
  • Chapter 50
  • Capillary-Type Mass Flow Meter; Chapter 51
  • Differential Pressure Flowmeters; Chapter 52
  • Variable Area Flowmeters; Chapter 53
  • Positive Displacement Flowmeters; Chapter 54
  • Turbine and Vane Flowmeters; Chapter 55
  • Impeller Flowmeters; Chapter 56
  • Electromagnetic Flowmeters; Chapter 57
  • Ultrasonic Flowmeters; Chapter 58
  • Vortex-Shedding Flowmeters; Chapter 59
  • Thermal Anemometry; Chapter 60
  • Coriolis Effect Mass Flowmeters; Chapter 61
  • Drag Force Flowmeters; Chapter 62
  • Pitot Probe Anemometer; Chapter 63
  • Thermal Dispersion Mass Flow Meters.
  • Chapter 64
  • Laser Anemometry.