Modeling an isotropic charged relativistic matter with linear equation of state.

dc.creatorDanford, Petro
dc.date2019-08-19T08:15:59Z
dc.date2019-08-19T08:15:59Z
dc.date2016
dc.date.accessioned2021-05-06T12:58:59Z
dc.date.available2021-05-06T12:58:59Z
dc.descriptionDissertation (MSc Mathematics)
dc.descriptionWe find new exact solutions to Einstein-Maxwell field equation for charged anisotropy stellar bodies. We are considering the stellar object that is anisotropic and charged with linear equation of state consistent with quark stars. We have new choice of measure of anisotropy and adopted Sunzu’s metric function. The solutions are obtained after considering the transformed Einstein-Maxwell field equations for charged anisotropic matter. In our models we regain previous anisotropic and isotropic results as a special case. Exact solutions regained in our models are those by Sunzu, Maharaj and Ray and those by Komathiraj and Maharaj. We have considered the space time geometry to be static spherically symmetry. The exact solutions to the Einstein-Maxwell field equations corresponding to our models are found explicitly in terms of elementary functions namely simple algebraic functions. The obtained graphical plots and physical analyses for the gravitational potentials, the matter variables and the electric field are well behaved.
dc.identifierDanford, P. (2016). Modeling anisotropic charged relativistic matter with linear equation of state. Dodoma: The University of Dodoma.
dc.identifierhttp://hdl.handle.net/20.500.12661/869
dc.identifier.urihttp://hdl.handle.net/20.500.12661/869
dc.publisherThe University of Dodoma
dc.subjectLinear equation
dc.subjectModeling anisotropic charged equation
dc.subjectModeling linear equation
dc.subjectCharged anisotropy stellar bodies
dc.subjectAnisotropic linear equation
dc.subjectCharged matter
dc.subjectStellar object
dc.subjectEinstein-Maxwell field equations
dc.titleModeling an isotropic charged relativistic matter with linear equation of state.
dc.typeDissertation

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