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dcterms:bibliographicCitation <http://dblp.uni-trier.de/rec/bibtex/journals/jcphy/KappeliBCH20>
dc:creator <https://dblp.l3s.de/d2r/resource/authors/Arijit_Hazra>
dc:creator <https://dblp.l3s.de/d2r/resource/authors/Dinshaw_S._Balsara>
dc:creator <https://dblp.l3s.de/d2r/resource/authors/Praveen_Chandrashekar>
dc:creator <https://dblp.l3s.de/d2r/resource/authors/Roger_K%E2%88%9A%C2%A7ppeli>
foaf:homepage <http://dx.doi.org/doi.org%2F10.1016%2Fj.jcp.2020.109238>
foaf:homepage <https://doi.org/10.1016/j.jcp.2020.109238>
dc:identifier DBLP journals/jcphy/KappeliBCH20 (xsd:string)
dc:identifier DOI doi.org%2F10.1016%2Fj.jcp.2020.109238 (xsd:string)
dcterms:issued 2020 (xsd:gYear)
swrc:journal <https://dblp.l3s.de/d2r/resource/journals/jcphy>
rdfs:label Optimal, globally constraint-preserving, DG(TD)2 schemes for computational electrodynamics based on two-derivative Runge-Kutta timestepping and multidimensional generalized Riemann problem solvers - A von Neumann stability analysis. (xsd:string)
foaf:maker <https://dblp.l3s.de/d2r/resource/authors/Arijit_Hazra>
foaf:maker <https://dblp.l3s.de/d2r/resource/authors/Dinshaw_S._Balsara>
foaf:maker <https://dblp.l3s.de/d2r/resource/authors/Praveen_Chandrashekar>
foaf:maker <https://dblp.l3s.de/d2r/resource/authors/Roger_K%E2%88%9A%C2%A7ppeli>
swrc:pages 109238 (xsd:string)
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owl:sameAs <http://dblp.rkbexplorer.com/id/journals/jcphy/KappeliBCH20>
rdfs:seeAlso <http://dblp.uni-trier.de/db/journals/jcphy/jcphy408.html#KappeliBCH20>
rdfs:seeAlso <https://doi.org/10.1016/j.jcp.2020.109238>
dc:title Optimal, globally constraint-preserving, DG(TD)2 schemes for computational electrodynamics based on two-derivative Runge-Kutta timestepping and multidimensional generalized Riemann problem solvers - A von Neumann stability analysis. (xsd:string)
dc:type <http://purl.org/dc/dcmitype/Text>
rdf:type swrc:Article
rdf:type foaf:Document
swrc:volume 408 (xsd:string)