An ion–aerosol model for the electrical conductivity of the lower atmosphere is developed. Ion-pair production rate, obtained from the concentrations of radon and its progeny; aerosol number density; and the meteorological parameters such as temperature, pressure and relative humidity are the input parameters to the model. Diurnal values of conductivity computed on this model are compared with the experimentally measured conductivity. The model values show good agreement with the experimental values of total conductivity
This work focuses on determining how effectively the upper atmosphere, as a medium, transmits the in...
Radon gases released from the ground surface and building materials are the major sources of ionizat...
The seasonal and latitudinal variations of stratospheric small ion density and conductivity are stud...
The experimentally measured ground level atmospheric electrical conductivity is validated from a sim...
It is well known that atmospheric electrical conductivity is mainly due to the presence of small ion...
It is well known that atmospheric electrical conductivity is mainly due to the presence of small ion...
The ion-aerosol balance equations have been solved for different mixing strengths and two types of i...
A simplified ion-aerosol model scheme is used to predict the small ion depletion and the consequent ...
Atmospheric ions produced by radon gas exhalation from the Earth's surface can play a vital role in ...
The ion-aerosol balance equations have been solved for different mixing strengths and two types of i...
Simultaneous measurements of small-, intermediate-, and large-ion concentrations along with those of...
255-262The electrical conductivity of the stratosphere depends on the mobility and density of small ...
Measurements of radon and its progeny concentrations, and conductivity due to both polarities were m...
Simultaneous measurements of small-, intermediate-, and large-ion concentrations along with those of...
304-306A simplified ion-aerosol model scheme is used to predict the small ion depletion and the cons...
This work focuses on determining how effectively the upper atmosphere, as a medium, transmits the in...
Radon gases released from the ground surface and building materials are the major sources of ionizat...
The seasonal and latitudinal variations of stratospheric small ion density and conductivity are stud...
The experimentally measured ground level atmospheric electrical conductivity is validated from a sim...
It is well known that atmospheric electrical conductivity is mainly due to the presence of small ion...
It is well known that atmospheric electrical conductivity is mainly due to the presence of small ion...
The ion-aerosol balance equations have been solved for different mixing strengths and two types of i...
A simplified ion-aerosol model scheme is used to predict the small ion depletion and the consequent ...
Atmospheric ions produced by radon gas exhalation from the Earth's surface can play a vital role in ...
The ion-aerosol balance equations have been solved for different mixing strengths and two types of i...
Simultaneous measurements of small-, intermediate-, and large-ion concentrations along with those of...
255-262The electrical conductivity of the stratosphere depends on the mobility and density of small ...
Measurements of radon and its progeny concentrations, and conductivity due to both polarities were m...
Simultaneous measurements of small-, intermediate-, and large-ion concentrations along with those of...
304-306A simplified ion-aerosol model scheme is used to predict the small ion depletion and the cons...
This work focuses on determining how effectively the upper atmosphere, as a medium, transmits the in...
Radon gases released from the ground surface and building materials are the major sources of ionizat...
The seasonal and latitudinal variations of stratospheric small ion density and conductivity are stud...