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Simulation and validation of the InfraSnow: an instrument to measure snow optically equivalent grain size
Gergely, M., Wolfsperger, F., & Schneebeli, M. (2014). Simulation and validation of the InfraSnow: an instrument to measure snow optically equivalent grain size. IEEE Transactions on Geoscience and Remote Sensing, 52(7), 4236-4247. https://doi.org/10.1109/TGRS.2013.2280502
Determination of the macroscopic optical properties of snow based on exact morphology and direct pore-level heat transfer modeling
Haussener, S., Gergely, M., Schneebeli, M., & Steinfeld, A. (2012). Determination of the macroscopic optical properties of snow based on exact morphology and direct pore-level heat transfer modeling. Journal of Geophysical Research F: Earth Surface, 117, F03009 (20 pp.). https://doi.org/10.1029/2012JF002332
First experiments to determine snow density from diffuse near-infrared transmittance
Gergely, M., Schneebeli, M., & Roth, K. (2010). First experiments to determine snow density from diffuse near-infrared transmittance. Cold Regions Science and Technology, 64(2), 81-86. https://doi.org/10.1016/j.coldregions.2010.06.005
Snow characterization by facet number and size from snow pit wall photographs
Gergely, M., & Schneebeli, M. (2010). Snow characterization by facet number and size from snow pit wall photographs. In ISSW proceedings. International snow science workshop proceedings 2010 (pp. 380-382). Retrieved from http://arc.lib.montana.edu/snow-science/item/403
Snow characterization by optical properties
Gergely, M., Schneebeli, M., & Roth, K. (2009). Snow characterization by optical properties. In J. Schweizer & A. van Herwijnen (Eds.), ISSW proceedings. International snow science workshop proceedings 2009 (pp. 87-91). Retrieved from http://arc.lib.montana.edu/snow-science/item/201