Engineering
Corona Discharge
100%
Atmospheric Pressure
81%
Dielectrics
77%
Pressure Plasma
56%
Electrostatics
55%
Plasma Display Panel
50%
Current Pulse
41%
Nonthermal Plasma
37%
Heterogeneous Reaction
28%
Desulfurization Rate
28%
Negative Corona Discharge
24%
Liquid Phase
21%
Bevel Gears
18%
Experimental Investigation
18%
Plasma Technology
18%
Discharge Energy
18%
Flue Gas Desulfurisation
18%
Temperature Plasma
18%
Overvoltage
18%
Low-Temperature
18%
Flue Gas
18%
Xenon Lamp
18%
Test System
18%
Desulphurisation
18%
Applied Voltage
17%
Electrode Gap
15%
Experimental Result
15%
Negative Corona
15%
Kinetic Equation
15%
Major Part
15%
Active Substance
12%
Discharge Condition
10%
Repetition Frequency
9%
Gas-Phase
9%
Gas Cleaning
9%
Microprocessor Chips
9%
Dielectric Layer
9%
Phase Reaction
9%
Engineering Application
9%
Application Requirement
9%
Surface State
9%
Sound Signal
9%
Measured Result
9%
Sheath Voltage
9%
Transients
9%
Removal Rate
9%
Military Standard
9%
Gas Volume
9%
Energy Dissipation
9%
Current Waveform
8%
Physics
Dielectrics
79%
Plasma Jet
79%
Dielectric Barrier Discharge
65%
Plasma Density
51%
Electromagnetic Radiation
37%
Atmospheric Pressure
37%
Electromagnetic Wave
37%
Light Emission
28%
Electron Density
23%
Helicon
21%
Plasma Frequency
21%
Wave Scattering
18%
Rare Gas
18%
Surface Plasmon
18%
Transients
18%
Electric Spark
18%
Nonuniform Plasmas
18%
Atmospherics
18%
Plasma Technology
18%
Oxygen Atom
18%
Magnetic Field
18%
Emission Spectra
18%
Electron Emission
14%
Electrostatic Probe
12%
Far Ultraviolet Radiation
12%
Ambient Air
9%
Radio Frequency Discharge
9%
Electron Energy
9%
Sound Wave
9%
Electric Fields
9%
Physical Process
9%
Line Spectra
9%