Mathur, R.; Powell, W.; Yao, J.; Guimaraes, F.; Cheng, Y.; Godfrey, L.; Tornos, F.; Killick, D.; Stephens, J.; Mao, J.;
et al. Global Sn Isotope Compositions of Cassiterite Identify the Magmatic–Hydrothermal Evolution of Tin Ore Systems. Geosciences 2025, 15, 28.
https://doi.org/10.3390/geosciences15010028
AMA Style
Mathur R, Powell W, Yao J, Guimaraes F, Cheng Y, Godfrey L, Tornos F, Killick D, Stephens J, Mao J,
et al. Global Sn Isotope Compositions of Cassiterite Identify the Magmatic–Hydrothermal Evolution of Tin Ore Systems. Geosciences. 2025; 15(1):28.
https://doi.org/10.3390/geosciences15010028
Chicago/Turabian Style
Mathur, Ryan, Wayne Powell, Junming Yao, Frederico Guimaraes, Yanbo Cheng, Linda Godfrey, Fernando Tornos, David Killick, Jay Stephens, Jingwen Mao,
and et al. 2025. "Global Sn Isotope Compositions of Cassiterite Identify the Magmatic–Hydrothermal Evolution of Tin Ore Systems" Geosciences 15, no. 1: 28.
https://doi.org/10.3390/geosciences15010028
APA Style
Mathur, R., Powell, W., Yao, J., Guimaraes, F., Cheng, Y., Godfrey, L., Tornos, F., Killick, D., Stephens, J., Mao, J., Sun, M., & Lehmann, B.
(2025). Global Sn Isotope Compositions of Cassiterite Identify the Magmatic–Hydrothermal Evolution of Tin Ore Systems. Geosciences, 15(1), 28.
https://doi.org/10.3390/geosciences15010028