Zanutta, A.; Negusini, M.; Vittuari, L.; Martelli, L.; Cianfarra, P.; Salvini, F.; Mancini, F.; Sterzai, P.; Creati, N.; Dubbini, M.;
et al. Victoria Land, Antarctica: An Improved Geodynamic Interpretation Based on the Strain Rate Field of the Current Crustal Motion and Moho Depth Model. Remote Sens. 2021, 13, 87.
https://doi.org/10.3390/rs13010087
AMA Style
Zanutta A, Negusini M, Vittuari L, Martelli L, Cianfarra P, Salvini F, Mancini F, Sterzai P, Creati N, Dubbini M,
et al. Victoria Land, Antarctica: An Improved Geodynamic Interpretation Based on the Strain Rate Field of the Current Crustal Motion and Moho Depth Model. Remote Sensing. 2021; 13(1):87.
https://doi.org/10.3390/rs13010087
Chicago/Turabian Style
Zanutta, Antonio, Monia Negusini, Luca Vittuari, Leonardo Martelli, Paola Cianfarra, Francesco Salvini, Francesco Mancini, Paolo Sterzai, Nicola Creati, Marco Dubbini,
and et al. 2021. "Victoria Land, Antarctica: An Improved Geodynamic Interpretation Based on the Strain Rate Field of the Current Crustal Motion and Moho Depth Model" Remote Sensing 13, no. 1: 87.
https://doi.org/10.3390/rs13010087
APA Style
Zanutta, A., Negusini, M., Vittuari, L., Martelli, L., Cianfarra, P., Salvini, F., Mancini, F., Sterzai, P., Creati, N., Dubbini, M., & Capra, A.
(2021). Victoria Land, Antarctica: An Improved Geodynamic Interpretation Based on the Strain Rate Field of the Current Crustal Motion and Moho Depth Model. Remote Sensing, 13(1), 87.
https://doi.org/10.3390/rs13010087