Dielectric Profiling (DEP) of the North Greenland Ice Core Project (NGRIP1) core were recorded in the field during the 1996-1998 field seasons with the DEP device described by Wilhelms et al. (1998). The permittivity and conductivity of DEP data are calculated by their respective densities and conductivities (Wilhelms, 2005). The resolution of DEP data is 5 mm depth intervals. The DEP was not processed at a consistent temperature due to the varying temperature in the field seasons. For more information on the calibration procedure see Mojtabavi et al, 2020. We used 3.15 (permittivity) for deeper than 100 m depth (based on the radar modelling results)
Dielectric permittivity (ε′) and dielectric loss (ε″) measurements were made of discrete snow layers...
The aim of our study is to analyse physical properties of internal layers of deep ice cores in Green...
The aim of our study is to analyse physical properties of internal layers of deep ice cores in Green...
Dielectric Profiling (DEP) of the North Greenland Ice Core Project (NGRIP1) core were recorded in th...
Dielectric Profiling (DEP) of the East GReenland Ice core Project (EGRIP) core were recorded in the ...
Dielectric Profiling (DEP) of the North Greenland Eemian (NEEM) core were recorded in the field duri...
Dielectric Profiling (DEP) of the East GReenland Ice core Project (EGRIP) core were recorded in the ...
Polar regions play a key role in the understanding of global climate changes. Impurities from volcan...
Dielectric profiling (DEP) is a fast, non-destructive method to precisely scan the dielectric proper...
The dielectric profiling (DEP) technique is described and some of the differences between it and sta...
The dielectric profiling (DEP) technique is described and some of the differences between it and sta...
A new method for high-resolution (3 mm) dielectric profiling of ice cores is described. The method m...
The dielectric permittivity of glaciers and ice caps can be measured in field or airborne surveys us...
The dielectric permittivity of glaciers and ice caps can be measured in field or airborne surveys us...
Precise knowledge of the dielectric properties of natural snow, firn and ice are essential for elec...
Dielectric permittivity (ε′) and dielectric loss (ε″) measurements were made of discrete snow layers...
The aim of our study is to analyse physical properties of internal layers of deep ice cores in Green...
The aim of our study is to analyse physical properties of internal layers of deep ice cores in Green...
Dielectric Profiling (DEP) of the North Greenland Ice Core Project (NGRIP1) core were recorded in th...
Dielectric Profiling (DEP) of the East GReenland Ice core Project (EGRIP) core were recorded in the ...
Dielectric Profiling (DEP) of the North Greenland Eemian (NEEM) core were recorded in the field duri...
Dielectric Profiling (DEP) of the East GReenland Ice core Project (EGRIP) core were recorded in the ...
Polar regions play a key role in the understanding of global climate changes. Impurities from volcan...
Dielectric profiling (DEP) is a fast, non-destructive method to precisely scan the dielectric proper...
The dielectric profiling (DEP) technique is described and some of the differences between it and sta...
The dielectric profiling (DEP) technique is described and some of the differences between it and sta...
A new method for high-resolution (3 mm) dielectric profiling of ice cores is described. The method m...
The dielectric permittivity of glaciers and ice caps can be measured in field or airborne surveys us...
The dielectric permittivity of glaciers and ice caps can be measured in field or airborne surveys us...
Precise knowledge of the dielectric properties of natural snow, firn and ice are essential for elec...
Dielectric permittivity (ε′) and dielectric loss (ε″) measurements were made of discrete snow layers...
The aim of our study is to analyse physical properties of internal layers of deep ice cores in Green...
The aim of our study is to analyse physical properties of internal layers of deep ice cores in Green...