This study investigates the variations of surface Moho inverted from Bouguer gravity data beneath the northwestern Arabian plate. The results were obtained by applying the 3DINVER program developed in a MATLAB environment using the Parker–Oldenburg method. The calculation results show that the maximum Moho depth observed in the western Arabian shield approaches more than 40 km, while the minimum values of 16–20 km are mainly concentrated beneath the Mediterranean Sea. A key innovation of this study is its implementation of exponential density contrast decrease in the sediment–basement interface in the Syrian part of the Arabian plate. The gravity anomaly of the sediment is computed using a density contrast which varies exponentially with de...
In this paper, we perform a comprehensive explanation of the geophysical inversion of gravity data, ...
An edited version of this paper was published by Blackwell Publishing. Copyright 2001, Blackwell Pu...
WOS: 000266902800004The Eastern Pontide orogenic belt is divided into three subzones ( northern, sou...
The study of the discontinuity between the Earth crust and upper mantle, the so-called Moho, and of ...
International audienceThe free-air gravity in the Marmara Sea reveals that the low density of sedime...
A 3D density structure of the lithosphere and upper mantle beneath the eastern Mediterranean Sea (EM...
Due to its geological and economic importance, the Zagros Mountains have been investigated by many r...
We sought to map the depth and density contrast of the Mohorovičić discontinuity (Moho) across the R...
This research aims to define the depth of Moho in Iran by collocation method using gravimetric data ...
We present a three-dimensional density model of the lithosphere and upper mantle for the Middle East...
We present a three-dimensional density model of the lithosphere and upper mantle for the Middle East...
We present a three-dimensional density model of the lithosphere and upper mantle for the Middle East...
The complexity of geological units in Iran because of several unique events like tectonics and oro...
A new map for the Moho discontinuity (EAM02) in the Eurasia-Africa plate boundary region is presente...
Understanding further the nature and evolution at lithospheric scale of the Sea of Marmara on the No...
In this paper, we perform a comprehensive explanation of the geophysical inversion of gravity data, ...
An edited version of this paper was published by Blackwell Publishing. Copyright 2001, Blackwell Pu...
WOS: 000266902800004The Eastern Pontide orogenic belt is divided into three subzones ( northern, sou...
The study of the discontinuity between the Earth crust and upper mantle, the so-called Moho, and of ...
International audienceThe free-air gravity in the Marmara Sea reveals that the low density of sedime...
A 3D density structure of the lithosphere and upper mantle beneath the eastern Mediterranean Sea (EM...
Due to its geological and economic importance, the Zagros Mountains have been investigated by many r...
We sought to map the depth and density contrast of the Mohorovičić discontinuity (Moho) across the R...
This research aims to define the depth of Moho in Iran by collocation method using gravimetric data ...
We present a three-dimensional density model of the lithosphere and upper mantle for the Middle East...
We present a three-dimensional density model of the lithosphere and upper mantle for the Middle East...
We present a three-dimensional density model of the lithosphere and upper mantle for the Middle East...
The complexity of geological units in Iran because of several unique events like tectonics and oro...
A new map for the Moho discontinuity (EAM02) in the Eurasia-Africa plate boundary region is presente...
Understanding further the nature and evolution at lithospheric scale of the Sea of Marmara on the No...
In this paper, we perform a comprehensive explanation of the geophysical inversion of gravity data, ...
An edited version of this paper was published by Blackwell Publishing. Copyright 2001, Blackwell Pu...
WOS: 000266902800004The Eastern Pontide orogenic belt is divided into three subzones ( northern, sou...