Solutions of the magnetohydrodynamic (MHD) equations are very important for modelling laboratory, space and astrophysical plasmas, for example the solar and stellar coronae, as well as for modelling many of the dynamic processes that occur in these different plasma environments such as the fundamental process of magnetic reconnection. Our previous understanding of the behavior of plasmas and their associated dynamic processes has been developed through two-dimensional (2D) models. However, a more realistic model should be three-dimensional (3D), but finding 3D solutions of the MHD equations is, in general, a formidable task. Only very few analytical solutions are known and even calculating solutions with numerical methods is usually far fro...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Solutions of the magnetohydrodynamic (MHD) equations are very important for modelling laboratory, sp...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Example solutions of a theory for stationary 3D non-potential solutions of the MHD equations (in the...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Solutions of the magnetohydrodynamic (MHD) equations are very important for modelling laboratory, sp...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Solutions of the magnetohydrostatic (MHS) equations are very important for modelling astrop...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Example solutions of a theory for stationary 3D non-potential solutions of the MHD equations (in the...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Context. Magnetohydrostatic (MHS) equilibria are often used to model astrophysical plasmas, for exam...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...
Here we present solutions of a stationary magnetohydrodynamic (MHD) model for three-dimensional (3D)...