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Highfield superconducting materials
The technology of small magnets
The technology of large magnets
4 other sections not shown
accelerator alternating current aluminium applications armature beam bubble chamber cable Chapter compound conducting conductors construction conventional cooling copper cost critical current critical field critical temperature cryogenic cryostat cryotron current density current flow deposition devices diameter dielectric dissipation economic electrical electrons engineering example experimental external field Faraday disc field strength Figure filaments film flux jumping heat high-energy physics high-field superconductors homopolar machine increases insulation Laboratory large coils layer liquid helium loop Lorentz force losses low temperatures magnetic field magnetic flux mechanical metals niobium niobium-tin niobium-titanium niobium-zirconium normal operating particles pinning strength possible power supply problems produced reduce region Research resistance ribbon room temperature shown in Fig slip rings solenoid stability stainless steel storage structure super superconducting coils superconducting magnets superconducting materials superconducting wire superinsulation switching techniques thermal thick transformer Type II superconductors typical vacuum voltage winding