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The age distribution of groundwater reaching a PSW in Albuquerque, New Mexico was estimated from environmental tracer concentrations of H, CFC-113, and C using a three component mixing model of relatively young groundwater (less than 60 years old), old (native), intermediate groundwater (about 6500 years old), and very old (native), deep groundwater (more than 21,000 years old).
The 'forward mixing' model of the dispersed phase is retained.
In contrast, we suggest a conceptual typology of urban slowflow response, framing a conceptual mixing model of dominant process endpoints that shape the slowflow fingerprints of urban hydrology.
Comparisons to previously reported data for the H2O-rich phase and the recent mixing model of Gernert and Span show the resulting corresponding state mixing parameters can be utilized for a much larger range of H2O concentrations, temperatures up to T = 673 K and pressures up to p = 100 MPa.
The BAER approach (Bremen AErosol Retrieval), von Hoyningen-Huene et al., 2003, uses a linear mixing model of spectra for 'green vegetation' and 'bare soil', tuned by the NDVI, determining an apparent surface to enable this separation of aerosol and surface properties from VIS and NIR channels.
This study enhances the transport model with an accurate mixing model of contaminants at Double T-junctions.
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We generated "mixed" models of each (consisting of conserved side chains - all other non alanine/glycine residues truncated at Cγ atom) using the SCRWL server [7], as well as poly-Ala models with and without loop regions.
The proposed model is an extension of the well-known post nonlinear (PNL) mixing model and consists of the convolutive mixing of PNL mixtures.
Two reactive mixing models of different complexity, both accounting for all relevant phenomena from the micro- to the macroscale, are applied for the simulation of the process.
Previous work has also demonstrated the utility and use of LPMs to develop multimodal mixing models of tracers to understand the age distribution of groundwater in wells (Katz et al. 2004; Long and Putnam 2006; Corcho Alvarado et al. 2007; Solomon et al. 2010; Stolp et al. 2010).
The simulated seasonal difference in recent water pumped after 2000 (approximately 5%) agrees with the results of ternary mixing models of environmental tracer concentrations for this site (11% recent water pumped in the summer compared to 6% pumped in the winter; Jurgens et al. 2010).
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com