GarcÃa-Nieto, M.C.; MartÃnez-Segura, M.A.; Navarro, M.; Valverde-Palacios, I.; MartÃnez-Pagán, P.
A Geophysical Investigation in Which 3D Electrical Resistivity Tomography and Ground-Penetrating Radar Are Used to Determine Singularities in the Foundations of the Protected Historic Tower of Murcia Cathedral (Spain). Remote Sens. 2024, 16, 4117.
https://doi.org/10.3390/rs16214117
AMA Style
GarcÃa-Nieto MC, MartÃnez-Segura MA, Navarro M, Valverde-Palacios I, MartÃnez-Pagán P.
A Geophysical Investigation in Which 3D Electrical Resistivity Tomography and Ground-Penetrating Radar Are Used to Determine Singularities in the Foundations of the Protected Historic Tower of Murcia Cathedral (Spain). Remote Sensing. 2024; 16(21):4117.
https://doi.org/10.3390/rs16214117
Chicago/Turabian Style
GarcÃa-Nieto, MarÃa C., Marcos A. MartÃnez-Segura, Manuel Navarro, Ignacio Valverde-Palacios, and Pedro MartÃnez-Pagán.
2024. "A Geophysical Investigation in Which 3D Electrical Resistivity Tomography and Ground-Penetrating Radar Are Used to Determine Singularities in the Foundations of the Protected Historic Tower of Murcia Cathedral (Spain)" Remote Sensing 16, no. 21: 4117.
https://doi.org/10.3390/rs16214117
APA Style
GarcÃa-Nieto, M. C., MartÃnez-Segura, M. A., Navarro, M., Valverde-Palacios, I., & MartÃnez-Pagán, P.
(2024). A Geophysical Investigation in Which 3D Electrical Resistivity Tomography and Ground-Penetrating Radar Are Used to Determine Singularities in the Foundations of the Protected Historic Tower of Murcia Cathedral (Spain). Remote Sensing, 16(21), 4117.
https://doi.org/10.3390/rs16214117