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Systems of Differential-Algebraic Equations Encountered in the Numerical Modeling of High-Temperature Superconductors

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Academic year: 2021

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Figure 2.2 Resistivity as a function of the temperature for superconductors. We see that the resistivity drops to 0 Ωm when the temperature reaches T c
Figure 2.4 a) Resistanceless closed circuit subjected to an applied magnetic flux Φ = AB a
Figure 2.5 The magnetic field inside a resistanceless conductor is always constant. Therefore, the magnetic flux distribution inside the material depends on the sequence of application of the magnetic field
Figure 2.6 The magnetic field inside a superconductor is always zero. Therefore the magnetic flux distribution inside the material does not depend on the sequence of application of the magnetic field
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