The anomalous structure in the magnetic field of the Ural Region has been studied in the segment bounded by 52°-64° N and 54°-66° E. Analytical apparatus for upward continuation of airborne magnetic data to different heights was applied. To recalculate magnetic field, parallel algorithms and software for multiprocessor computers were used. Maps of magnetic anomalies for different ranges of wave lengths showing the distribution of magnetization in the layers of the Earth's crust were built. © 2012 Pleiades Publishing, Ltd
We have developed a fast total-field anomaly inversion to estimate the magnetization direction of mu...
The electrical conductivity structure of the Baltic Shield in Finland has been studied by magnetovar...
An archive of digital 1-min data from Soviet/Russian Arctic magnetic stations has been created, star...
Pictures for an arcicle "MODERN DATABASES OF MAGNETIC FIELD ANOMALIES FOR THE TERRITORY OF THE URAL ...
In this study we interpret the magnetic anomalies at satellite altitude over a part of Europe and th...
Our paper discusses the determination of total magnetic field anomalies derived from the SwarmA sate...
Abstract The article is devoted to numerical modeling of magnetic anomalies, the solution of which ...
The influence of space factors on technological systems in the Arctic (power transmission lines, oil...
The Golcuk (Isparta) is on the southern side of the city of Isparta in the Mediterranean region of T...
The study deals with Nepsk vault, Katagansky region, Irkutsk distirict. The work is aimed at develop...
CHAMP and Swarm satellite magnetic data are combined to establish the lithospheric magnetic field ov...
L’objectif de ce travail est d’améliorer la caractérisation des sources à l’origine d’anomalies magn...
The paper suggests a new technique for magnetic data analysis to detect and to estimate short-time a...
An innovative technology of anomalous magnetic field inversion was applied to construct 2D models of...
Magnetic anomalies recorded outside bodies provide high quality information relative to buried struc...
We have developed a fast total-field anomaly inversion to estimate the magnetization direction of mu...
The electrical conductivity structure of the Baltic Shield in Finland has been studied by magnetovar...
An archive of digital 1-min data from Soviet/Russian Arctic magnetic stations has been created, star...
Pictures for an arcicle "MODERN DATABASES OF MAGNETIC FIELD ANOMALIES FOR THE TERRITORY OF THE URAL ...
In this study we interpret the magnetic anomalies at satellite altitude over a part of Europe and th...
Our paper discusses the determination of total magnetic field anomalies derived from the SwarmA sate...
Abstract The article is devoted to numerical modeling of magnetic anomalies, the solution of which ...
The influence of space factors on technological systems in the Arctic (power transmission lines, oil...
The Golcuk (Isparta) is on the southern side of the city of Isparta in the Mediterranean region of T...
The study deals with Nepsk vault, Katagansky region, Irkutsk distirict. The work is aimed at develop...
CHAMP and Swarm satellite magnetic data are combined to establish the lithospheric magnetic field ov...
L’objectif de ce travail est d’améliorer la caractérisation des sources à l’origine d’anomalies magn...
The paper suggests a new technique for magnetic data analysis to detect and to estimate short-time a...
An innovative technology of anomalous magnetic field inversion was applied to construct 2D models of...
Magnetic anomalies recorded outside bodies provide high quality information relative to buried struc...
We have developed a fast total-field anomaly inversion to estimate the magnetization direction of mu...
The electrical conductivity structure of the Baltic Shield in Finland has been studied by magnetovar...
An archive of digital 1-min data from Soviet/Russian Arctic magnetic stations has been created, star...