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Please contact listed data creators for more information about specific data products. The CREWS Data Cyberinfrastructure lead is Venice Bayrd (Montana State University).

Abbott, B. W., S. Ewing (2020). Incubation and analysis of late season stream water from 23 locations within seven northern or high-elevation regions in Asia, Europe, and North America in late summer of 2016 and 2017, HydroShare, https://doi.org/10.4211/hs.cb522bbb0f6449ac9d6ca2c189e5c604
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Abbott, B. W., S. Ewing (2020). Incubation and analysis of late season stream water from 23 locations within seven northern or high-elevation regions in Asia, Europe, and North America in late summer of 2016 and 2017, HydroShare, https://doi.org/10.4211/hs.cb522bbb0f6449ac9d6ca2c189e5c604
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D'Andrilli, J., H.M. Valett, and C. Utzman. 2022. Multispectral absorbance and fluorescence analysis of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water years 2017 and 2018 (1 Oct 2016 - 30 Sep 2018) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/6ba30f4ebb63175a4399c5d0aa6a8698 (Accessed 2022-08-02).
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D'Andrilli, J., H.M. Valett, and C. Utzman. 2022. Multispectral absorbance and fluorescence analysis of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water years 2017 and 2018 (1 Oct 2016 - 30 Sep 2018) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/6ba30f4ebb63175a4399c5d0aa6a8698 (Accessed 2022-08-02).
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DeGrandpre, M.D. and C.M. Beatty. 2021. 2017 seasonal high frequency monitoring of Upper Clark Fork River (Montana, USA) dissolved carbon dioxide, pH, and electrical conductivity ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/f51d092a838a005153b80e169bdf7f98 (Accessed 2022-08-02).
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DeGrandpre, M.D. and C.M. Beatty. 2021. 2017 seasonal high frequency monitoring of Upper Clark Fork River (Montana, USA) dissolved carbon dioxide, pH, and electrical conductivity ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/f51d092a838a005153b80e169bdf7f98 (Accessed 2022-08-02).
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DeGrandpre, M.D. and F.L. Young. 2021. Water year 2017-18 monitoring of the inorganic carbon system (pH and total alkalinity) in the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/e0e56f55511e28bf3277e48c39149909 (Accessed 2022-08-02).
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DeGrandpre, M.D. and F.L. Young. 2021. Water year 2017-18 monitoring of the inorganic carbon system (pH and total alkalinity) in the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/e0e56f55511e28bf3277e48c39149909 (Accessed 2022-08-02).
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DeGrandpre, M.D. and F.L. Young. 2021. Water year 2019 monitoring of the inorganic carbon system (pH and total alkalinity) in the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/07a6d59c7a88c28deec55874f902f998 (Accessed 2022-08-02).
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DeGrandpre, M.D. and F.L. Young. 2021. Water year 2019 monitoring of the inorganic carbon system (pH and total alkalinity) in the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/07a6d59c7a88c28deec55874f902f998 (Accessed 2022-08-02).
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DeGrandpre, M.D. and F.L. Young. 2021. Water year 2020 monitoring of the inorganic carbon system (pH and total alkalinity) in the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/1686551524b835586d3e4ac2df170f94 (Accessed 2022-08-02).
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DeGrandpre, M.D. and F.L. Young. 2021. Water year 2020 monitoring of the inorganic carbon system (pH and total alkalinity) in the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/1686551524b835586d3e4ac2df170f94 (Accessed 2022-08-02).
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DeGrandpre, M.D., F.L. Young, H.M. Valett, and C. Utzman. 2021. Concentration of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water year 2019 (1 Oct 2018 - 30 Sep 2019) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/111eceba2dc9d13eb394d889e4841025 (Accessed 2022-08-02).
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DeGrandpre, M.D., F.L. Young, H.M. Valett, and C. Utzman. 2021. Concentration of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water year 2019 (1 Oct 2018 - 30 Sep 2019) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/111eceba2dc9d13eb394d889e4841025 (Accessed 2022-08-02).
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DeGrandpre, M.D., F.L. Young, H.M. Valett, and C. Utzman. 2021. Concentration of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water year 2020 (1 Oct 2019 - 30 Sep 2020) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/0ce978dead958c0b0cfae8cdea0d7160 (Accessed 2022-08-02).
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DeGrandpre, M.D., F.L. Young, H.M. Valett, and C. Utzman. 2021. Concentration of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water year 2020 (1 Oct 2019 - 30 Sep 2020) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/0ce978dead958c0b0cfae8cdea0d7160 (Accessed 2022-08-02).
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DeGrandpre, M.D., F.L. Young, H.M. Valett, and C. Utzman. 2021. Concentration of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water years 2017 and 2018 (1 Oct 2016 - 30 Sep 2018) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/8c210f2c3ab49612fc852f4b272c5144 (Accessed 2022-08-02).
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DeGrandpre, M.D., F.L. Young, H.M. Valett, and C. Utzman. 2021. Concentration of dissolved organic carbon in water samples taken from the Upper Clark Fork River (Montana, USA) during water years 2017 and 2018 (1 Oct 2016 - 30 Sep 2018) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/8c210f2c3ab49612fc852f4b272c5144 (Accessed 2022-08-02).
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Ewing, S., F. R. Miller, R. Payn, J. B. Paces, S. Leuthold, S. G. Custer (2021). Radon, uranium, strontium and other compositional analytical data documenting groundwater contributions along a mountain headwater catchment in Hyalite Canyon, MT, USA (2016-2018), HydroShare, https://doi.org/10.4211/hs.46a2ec0b25ba406bbf8571d9dd56d2d5
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Ewing, S., F. R. Miller, R. Payn, J. B. Paces, S. Leuthold, S. G. Custer (2021). Radon, uranium, strontium and other compositional analytical data documenting groundwater contributions along a mountain headwater catchment in Hyalite Canyon, MT, USA (2016-2018), HydroShare, https://doi.org/10.4211/hs.46a2ec0b25ba406bbf8571d9dd56d2d5
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Leuthold, S., S. Ewing, R. Payn, S. G. Custer, F. Miller (2020). Stable water isotope and nitrate data from stream water, well, and precipitation samples collected in a montane watershed in southwest Montana (USA) (2016 - 2018), HydroShare, http://www.hydroshare.org/resource/e2b4b872145c47c4965ec87853abd6e8
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Leuthold, S., S. Ewing, R. Payn, S. G. Custer, F. Miller (2020). Stable water isotope and nitrate data from stream water, well, and precipitation samples collected in a montane watershed in southwest Montana (USA) (2016 - 2018), HydroShare, http://www.hydroshare.org/resource/e2b4b872145c47c4965ec87853abd6e8
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Sigler, W. A., S. A. Ewing, S. D. Wankel, S. Leuthold, R. Payn, C. A. Jones (2022). Isotopic signals in an agricultural watershed suggest denitrification is locally intensive in riparian areas but extensive in upland soils data and code, HydroShare. https://doi.org/10.4211/hs.f9f36a39190e4cc6a7cdc0cd0cc9bdd6
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Sigler, W. A., S. A. Ewing, S. D. Wankel, S. Leuthold, R. Payn, C. A. Jones (2022). Isotopic signals in an agricultural watershed suggest denitrification is locally intensive in riparian areas but extensive in upland soils data and code, HydroShare. https://doi.org/10.4211/hs.f9f36a39190e4cc6a7cdc0cd0cc9bdd6
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Sigler, W. A., S. Ewing, R. Payn, C. A. Jones (2020). Cultivated soil water dynamics with many Hydrus 1D simulations using R, HydroShare, https://doi.org/10.4211/hs.fd6cd94345f9420f97d63753fc850c41
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Sigler, W. A., S. Ewing, R. Payn, C. A. Jones (2020). Cultivated soil water dynamics with many Hydrus 1D simulations using R, HydroShare, https://doi.org/10.4211/hs.fd6cd94345f9420f97d63753fc850c41
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Valett, H.M., C. Utzman, and R. Feijó de Lima. 2022. Characterization of photosynthetic epilithic biomass on the river bed of the Upper Clark Fork River (Montana, USA) during the algal growing seasons of 2017 and 2018 ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/35c885c1a3c9402e5030c7185d5a4dfc (Accessed 2022-08-02)
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Valett, H.M., C. Utzman, and R. Feijó de Lima. 2022. Characterization of photosynthetic epilithic biomass on the river bed of the Upper Clark Fork River (Montana, USA) during the algal growing seasons of 2017 and 2018 ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/35c885c1a3c9402e5030c7185d5a4dfc (Accessed 2022-08-02)
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Young, F.L., Q. Shangguan, C.M. Beatty, M.D. Gilsdorf, and M.D. DeGrandpre. 2022. 2018-2020 Laboratory measurements of inorganic carbon accompanied by sensor data measurements of in situ inorganic carbon from the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/c3bd7a65cfafa464b89857c5e375d20d (Accessed 2022-08-02).
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Young, F.L., Q. Shangguan, C.M. Beatty, M.D. Gilsdorf, and M.D. DeGrandpre. 2022. 2018-2020 Laboratory measurements of inorganic carbon accompanied by sensor data measurements of in situ inorganic carbon from the Upper Clark Fork River (Montana, USA) ver 1. Environmental Data Initiative. https://doi.org/10.6073/pasta/c3bd7a65cfafa464b89857c5e375d20d (Accessed 2022-08-02).
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