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This framework provides the generic environment for materials design. The ICME (Integrating Computational Materials Engineering) approach is implemented for
The MGI Code Catalog represents an extensive collection of information about software relevant to computational materials science and materials data analysis
Control over spatial uniformity in a photopolymerized material is important for homogenous physical properties. Unintended spatial variations in polymeric
Many photocrosslinked polymers and composites start with a mixture of low molecular mass / viscosity resins containing one or more reactive functionalities. The
Materials Resource Registry allows for the registration of materials resources, bridging the gap between existing resources, software and repositories and end
OOF is a collaborative effort between the Information Technology Laboratory and the Material Measurement Laboratory at NIST. The intended audience of the OOF
OpenCalphad (OC) is an informal international collaboration of scientists and researchers interested in the development of high quality software and databases
The ubiquity of computers has profoundly influenced science. Sophisticated software tools and easy access to high-performance computing promises to be a
The Inorganic Crystal Structure Database (ICSD, SRD 3), maintained at NIST, contains over 100,000 crystal structures which are known to exist and could
Photopolymerization, particularly in crosslinked systems, proceeds via a complex reaction-diffusion process. Initiation, propagation (including those leading to
Current terminology used to describe materials data is heterogeneous, redundant, and often ambiguous. The lack of common, community-based terminology hinders
Organic photovoltaics (OPV) represents the most challenging use case for soft matter ICME within the CHiMaD portfolio of use cases. Recent empirical advances in
Many computational programs exist that are being used by industry for predicting properties of polymer composites, but their general predictive power is limited
We are investigating and promoting applications of uncertainty quantification to problems in computational material science. Detailed investigation of promising
The vision of the Materials Genome Initiative (MGI) is a new R&D paradigm enabling accelerated materials development at lower cost via an increased reliance on
Micromagnetics concerns the patterns of magnetization that arise in materials on the scale of nanometers. Understanding these structures is key to technologies