29 parallel-computing-numerical-methods Postdoctoral positions at SUNY University at Buffalo
Sort by
Refine Your Search
- 
                
                
                the area of nonlinear waves and integrable systems. The specific objectives of the project are to: Development of perturbation methods for multicomponent integrable systems on a nontrivial background Study 
- 
                
                
                modern theoretical and computational techniques. Responsibilities include: Working with our experimentalists and computational scientists to build relevant database of materials of interest. Using modern 
- 
                
                
                will require the theoretical and practical application of a body of highly specialized knowledge. Tasks you will be responsible for may include: organize and implement research plans develop methods 
- 
                
                
                /parameterizations from literature reviews, accessing datasets from data archive and observation servers, or developing novel analysis methods. Generate regional sea-level dataset. Collecting and preparation 
- 
                
                
                are not limited to: organize and implement research plans develop methods or research that incorporate highly specialized training in a specific specialty conduct tests procedures and engage in data 
- 
                
                
                are not limited to: organize and implement research plans develop methods or research that incorporate highly specialized training in a specific specialty conduct tests procedures and engage in data 
- 
                
                
                using Pioneer-seq and genomics assays (e.g., ChIP-seq, ChIP-exo, MNase-seq, HiC, RNA-seq) Analyze high-throughput sequencing data and contribute to computational modeling of TF binding Outstanding 
- 
                
                
                cutting-edge genomics and computational analyses to investigate transcriptome, epigenome and chromatin architecture. Learn more: Our benefits , where we prioritize your well-being and success to enhance 
- 
                
                
                and implement research plans develop methods or research that incorporate highly specialized training in a specific specialty conduct tests procedures and engage in data collection analyze, evaluate 
- 
                
                
                cutting-edge multi-omics at bulk, single-cell and spatial scales with computational analyses to investigate transcriptome, epigenome and chromatin architecture. Combine multi-omics with flow cytometry and