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Domain > gdfidl.at
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More information on this domain is in
AlienVault OTX
Is this malicious?
Yes
No
DNS Resolutions
Date
IP Address
2025-03-20
80.121.221.170
(
ClassC
)
Port 80
HTTP/1.1 200 OKDate: Mon, 28 Aug 2023 11:50:56 GMTServer: Apache/2.4.25 (Debian)Last-Modified: Thu, 06 Oct 2022 20:19:29 GMTETag: 1769-5ea636913f381Accept-Ranges: bytesContent-Length: 5993Vary: Accept html> meta namegenerator content/bin/vi /> meta nameauthor contentWarner Bruns /> meta namekeywords contentElectromagnetic Field Computation, FDTD /> meta namedescription contentElectromagnetic Field Computation on Clusters, NuMA and scalar Machines /> head> title> Warner Bruns Fieldcomputations /title> /head> body bgcolorwhite> td valigntop aligncenter> a hrefmailto:bruns@gdfidl.de>bruns@gdfidl.de /a> /td> font colormaroon> h1> The GdfidL Electromagnetic Field Simulator /h1> /font> DIV ALIGNCENTER>!-- IMG WIDTH452 HEIGHT438 ALIGNBOTTOM BORDER0 SRCManual-2007-img2.png > -->!-- IMG SRChttp://80.121.221.170/animated.gif > -->!-- IMG SRCanimated.gif > -->!-- IMG SRCHowTos/HowTo-3dmanygifs-Movie/DeMichele.gif > -->!-- IMG SRCTesla-StaticMesh.gif > -->!-- IMG SRCTesla-StaticHfdtd.gif > --> IMG SRCTesla-StaticHfdtd2.gif >!-- IMG SRCTesla-WWakeHfdtd.gif > --> /DIV> GdfidL computes electromagnetic Fields in 3D-Structures using single-Node Multi-Core Systems or Clusters of such Systems. p> !-- paragraph --> GdfidL computes ul> li> Time dependent Fields in lossfree or lossy Structures. The Fields may be excited by ul> li> Port Modes, li> relativistic Line Charges. !-- non relativistic free moving charges. --> /ul> li> Resonant Fields in lossfree or lossy Structures. /ul> The Postprocessor computes from these Fields eg. ul> li> Scattering Parameters, li> Wake Potentials, li> Q-Values and Shunt Impedances. /ul> font colormaroon> h2> Features /h2> /font> ul> li> GdfidL computes only in the Field carrying Parts of the computational Volume. For eg. Waveguide systems, this makes GdfidL about three to ten times faster than other Finite Difference based Simulators. li> GdfidL uses generalised diagonal Fillings to approximate the Material Distribution. This reduces eg. the Frequency error by about a Factor of Ten. li> Wakepotential Computation of Collimator-like Devices app
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