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Preface; How This Book is Organized; About the Editors; Contents; 1 Determination of NOX and Soot Concentrations Using a Multi-wavelength Opacimeter; Abstract; 1 Introduction; 2 The Opacimeter; 3 Absorption of Particles and Gases; 3.1 Absorption of NO2; 3.2 Extinction of Soot Particles; 4 The Multi-wavelength Approach; 5 Technical Realization; 5.1 Physical Setup; 5.2 Electronic Measurement Circuitry; 5.3 Mathematical Model; 6 Results and Discussion; 6.1 Sensitivity Measurements; 6.2 Mathematical Simulations; 6.3 Discussion; 7 Conclusion; References.

2 Development of the Atomic Emission Spectroscopy System Using Helium-Microwave-Induced Plasma for Fine Particles on Environmental MonitoringAbstract; 1 Introduction; 2 Motivation; 3 Device Designs; 4 Calibration and Evaluation; 5 Measurement and Analysis of Suspended Particles in Atmosphere Using MIP System for Environmental Monitoring; 6 Conclusions; Acknowledgment; References; 3 Real-Time HVAC Sensor Monitoring and Automatic Fault Detection System; Abstract; 1 Introduction; 2 Overview on HVAC Systems, Sensor Monitoring and Fault Detection.

3 Sensor Monitoring and Fault Detection Approach in Detail4 Experimental Results; 5 Conclusion and Discussion; References; 4 High Sensitivity Optical Structures for Relative Humidity Sensing; Abstract; 1 Introduction; 2 Materials; 3 Conventional Methods; 4 Optical Fiber Humidity Sensors; 4.1 Evanescent Wave Sensors; 4.2 Lossy Mode Resonances; 4.2.1 Plastic Cladding Removed Multimode Optical Fiber; 4.2.2 Single Mode Optical Fiber; 4.3 Interferometric Sensors; 4.3.1 Fabry-Pèrot Interferometer as Humidity Sensor; 4.4 Long Period Fiber Gratings; 5 Conclusions; References.

5 Oxygen Gas Sensing Technologies Application: A Comprehensive ReviewAbstract; 1 Introduction; 2 Zirconia Potentiometric Oxygen Gas Sensing Technology; 3 Tunable Diode Laser Spectroscopy (TDLS); 4 Paramagnetic Oxygen Gas Sensing Technology; 5 Amperometric Oxygen Gas Sensing Technology with Liquid Electrole (Clark Cell); Acknowledgment; References; 6 Application of Practical Nitrate Sensor Based on Electrochemical Impedance Spectroscopy; Abstract; 1 Introduction; 2 Motivation; 2.1 Present Status of Water Quality Study; 2.2 Current Laboratory Measurement System.

2.3 Laboratory Based Measurement Technique2.4 Market Research; 3 Operating Principle of Interdigital Sensors; 3.1 Interdigital Sensors; 3.2 Novel Planer Interdigital Sensors; 3.3 Electrochemical Impedance Spectroscopy (EIS); 3.4 Basic Principles of EIS; 3.5 Data Presentation in the Form of Nyquist Plot and Bode Plot; 3.6 Randle's Electrochemical Cell Equivalent Circuit Model; 4 Experimental Setup, Results and Discussion; 4.1 Temperature Measurement; 4.1.1 Experimental Setup; 4.1.2 Results and Discussion; 4.2 Humidity Experiment and Result.

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