Sort by
Refine Your Search
-
expertise of the successful candidate. Potential focal areas could include: Integrated modeling approaches that quantify the inferential contributions of eBird and acoustic monitoring data and inform sampling
-
abatement curves for H2 emissions. In particular, we are interested in (a) quantifying the social cost of H2 emitted into the atmosphere, and (b) understanding the marginal greenhouse gas emissions associated
-
systems. We work to elucidate how system structure mediates sustainability outcomes from management change or policy implementation. Our applied work consists of modeling and field-based collaborations with
-
-to-impact pathway to answer research questions related to weather-related hazards to help communities nationwide. The postdoctoral associate will apply statistical and epidemiological models to examine the
-
of comparison, with careful attention to relationships among the data sources and the need for independent validation. Hierarchical models that represent relevant components of the acoustic observation process
-
strategies to mitigate their public health impacts. Our overarching goal is to move along the research-to-impact pathway to answer research questions related to weather-related hazards to help communities
-
operation, feedstock pretreatment and characterization, analytical measurements by LC and GC; experimental design, statistical analysis, bioprocess simulation through kinetic modeling. Additional training in
-
sustainable food systems. We work to elucidate how system structure mediates sustainability outcomes from management change or policy implementation. Our applied work consists of modeling and field-based
-
of scientists and practitioners to model decision-mediated relationships among farmer livelihoods, milk production efficiency, and methane emissions in the dairy sector. The postdoctoral associate will
-
sustainable food systems. We work to elucidate how system structure mediates sustainability outcomes from management change or policy implementation. Our applied work consists of modeling and field-based