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Method of producing oxide superconducting cables and coils using

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing oxide superconductor

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconducting ceramic patterns by etching

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconducting ceramic wire

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconducting ceramic wire and product

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconducting ceramic wire having protecti

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconducting ceramics by co-precipitation

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconducting fibers of bismuth strontium

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconducting fibers of YBA2CU30X

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing superconductor of metal oxides

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of producing YBa.sub.2 Cu.sub.3 O.sub.6+x superconductors

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of reducing critical current density of oxide superconduc

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of reducing decay of magnetic shielding current in high T

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of shaping superconducting oxide material

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of shaping superconducting oxide material

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of the production of ceramic superconductor filaments

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method of using a ferromagnet material having a high permeabilit

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method to produce ceramic superconducting filaments bonded to me

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Method to produce YBa.sub.2 Cu.sub.3 O.sub.6+x superconducting w

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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Methods for forming complex oxidation reaction products includin

Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
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