Roma-Dollase, D.; Gualani, V.; Gohlke, M.; Abich, K.; Morales, J.; Gonzalvez, A.; MartÃn, V.; Ramos-Castro, J.; Sanjuan, J.; Nofrarias, M.
Resistive-Based Micro-Kelvin Temperature Resolution for Ultra-Stable Space Experiments. Sensors 2023, 23, 145.
https://doi.org/10.3390/s23010145
AMA Style
Roma-Dollase D, Gualani V, Gohlke M, Abich K, Morales J, Gonzalvez A, MartÃn V, Ramos-Castro J, Sanjuan J, Nofrarias M.
Resistive-Based Micro-Kelvin Temperature Resolution for Ultra-Stable Space Experiments. Sensors. 2023; 23(1):145.
https://doi.org/10.3390/s23010145
Chicago/Turabian Style
Roma-Dollase, David, Vivek Gualani, Martin Gohlke, Klaus Abich, Jordan Morales, Alba Gonzalvez, Victor MartÃn, Juan Ramos-Castro, Josep Sanjuan, and Miquel Nofrarias.
2023. "Resistive-Based Micro-Kelvin Temperature Resolution for Ultra-Stable Space Experiments" Sensors 23, no. 1: 145.
https://doi.org/10.3390/s23010145
APA Style
Roma-Dollase, D., Gualani, V., Gohlke, M., Abich, K., Morales, J., Gonzalvez, A., MartÃn, V., Ramos-Castro, J., Sanjuan, J., & Nofrarias, M.
(2023). Resistive-Based Micro-Kelvin Temperature Resolution for Ultra-Stable Space Experiments. Sensors, 23(1), 145.
https://doi.org/10.3390/s23010145