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Sensitivity of source apportionment predicted by a Bayesian tracer mixing model to the inclusion of a sediment connectivity index as an informative prior : illustration using the Kharka catchment (Nepal)

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Keywords
Environmental Engineering, Waste Management and Disposal, Pollution, Environmental Chemistry, Sediment source apportionment, Compound-specific stable isotope (CSSI), Prior information, Sediment connectivity index, Water erosion, MINERAL MAGNETIC MEASUREMENTS, PARTICLE-SIZE FRACTIONS, SOIL-EROSION RATES, LAND-USE TYPES, SUSPENDED SEDIMENT, HILLSLOPE RUNOFF, LOESS PLATEAU, WATER-QUALITY, CARBON, OPPORTUNITIES

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MLA
Upadhayay, Hari Ram, et al. “Sensitivity of Source Apportionment Predicted by a Bayesian Tracer Mixing Model to the Inclusion of a Sediment Connectivity Index as an Informative Prior : Illustration Using the Kharka Catchment (Nepal).” SCIENCE OF THE TOTAL ENVIRONMENT, vol. 713, 2020, doi:10.1016/j.scitotenv.2020.136703.
APA
Upadhayay, H. R., Lamichhane, S., Bajracharya, R. M., Cornelis, W., Collins, A. L., & Boeckx, P. (2020). Sensitivity of source apportionment predicted by a Bayesian tracer mixing model to the inclusion of a sediment connectivity index as an informative prior : illustration using the Kharka catchment (Nepal). SCIENCE OF THE TOTAL ENVIRONMENT, 713. https://doi.org/10.1016/j.scitotenv.2020.136703
Chicago author-date
Upadhayay, Hari Ram, Sushil Lamichhane, Roshan Man Bajracharya, Wim Cornelis, Adrian L Collins, and Pascal Boeckx. 2020. “Sensitivity of Source Apportionment Predicted by a Bayesian Tracer Mixing Model to the Inclusion of a Sediment Connectivity Index as an Informative Prior : Illustration Using the Kharka Catchment (Nepal).” SCIENCE OF THE TOTAL ENVIRONMENT 713. https://doi.org/10.1016/j.scitotenv.2020.136703.
Chicago author-date (all authors)
Upadhayay, Hari Ram, Sushil Lamichhane, Roshan Man Bajracharya, Wim Cornelis, Adrian L Collins, and Pascal Boeckx. 2020. “Sensitivity of Source Apportionment Predicted by a Bayesian Tracer Mixing Model to the Inclusion of a Sediment Connectivity Index as an Informative Prior : Illustration Using the Kharka Catchment (Nepal).” SCIENCE OF THE TOTAL ENVIRONMENT 713. doi:10.1016/j.scitotenv.2020.136703.
Vancouver
1.
Upadhayay HR, Lamichhane S, Bajracharya RM, Cornelis W, Collins AL, Boeckx P. Sensitivity of source apportionment predicted by a Bayesian tracer mixing model to the inclusion of a sediment connectivity index as an informative prior : illustration using the Kharka catchment (Nepal). SCIENCE OF THE TOTAL ENVIRONMENT. 2020;713.
IEEE
[1]
H. R. Upadhayay, S. Lamichhane, R. M. Bajracharya, W. Cornelis, A. L. Collins, and P. Boeckx, “Sensitivity of source apportionment predicted by a Bayesian tracer mixing model to the inclusion of a sediment connectivity index as an informative prior : illustration using the Kharka catchment (Nepal),” SCIENCE OF THE TOTAL ENVIRONMENT, vol. 713, 2020.
@article{8647273,
  articleno    = {{136703}},
  author       = {{Upadhayay, Hari Ram and Lamichhane, Sushil and Bajracharya, Roshan Man and Cornelis, Wim and Collins, Adrian L and Boeckx, Pascal}},
  issn         = {{0048-9697}},
  journal      = {{SCIENCE OF THE TOTAL ENVIRONMENT}},
  keywords     = {{Environmental Engineering,Waste Management and Disposal,Pollution,Environmental Chemistry,Sediment source apportionment,Compound-specific stable isotope (CSSI),Prior information,Sediment connectivity index,Water erosion,MINERAL MAGNETIC MEASUREMENTS,PARTICLE-SIZE FRACTIONS,SOIL-EROSION RATES,LAND-USE TYPES,SUSPENDED SEDIMENT,HILLSLOPE RUNOFF,LOESS PLATEAU,WATER-QUALITY,CARBON,OPPORTUNITIES}},
  language     = {{eng}},
  pages        = {{11}},
  title        = {{Sensitivity of source apportionment predicted by a Bayesian tracer mixing model to the inclusion of a sediment connectivity index as an informative prior : illustration using the Kharka catchment (Nepal)}},
  url          = {{http://dx.doi.org/10.1016/j.scitotenv.2020.136703}},
  volume       = {{713}},
  year         = {{2020}},
}

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