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Publisher: Elsevier

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Volume 310, Number 1, December 1998

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Temperature dependence of transport ac losses in Bi-2223/Ag multifilamentary tapes
pp. 6-11(6)
Authors: Majoros, M.; Jansak, L.; Zannella, S.; Curcio, F.; La Cascia, P.; Ottoboni, V.; Friend, C.M.; Le Lay, L.; Glowacki, B.A.; Campbell, A.M.

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Numerical modelings of superconducting wires for AC loss calculations
pp. 16-29(14)
Authors: Amemiya, N.; Murasawa, S.; Banno, N.; Miyamoto, K.

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Magnetic measurement of transport AC losses in Bi-2223/Ag tapes
pp. 48-51(4)
Authors: Gomory, F.; Bettinelli, D.; Gherardi, L.; Crotti, G.

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Estimation of Jc(B) dependence from self-field alternating current (AC) losses measured on Bi-2223/Ag tapes
pp. 52-56(5)
Authors: Gherardi, L.; Bettinelli, D.; Spreafico, S.; Gomory, F.

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Computation of AC losses in high-temperature superconductors
pp. 62-66(5)
Authors: Paasi, J.; Lehtonen, J.; Lahtinen, M.; Kettunen, L.

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Electrical AC loss measurements of Bi-2223 tapes, performed under the Brite EuRam Research programme SACPA
pp. 67-70(4)
Authors: Beduz, C.; Cereda, E.; Dutoit, B.; Friend, C.M.; de la Fuente, G.F.; Hughes, T.; Le Lay, L.; Navarro, R.; Spiller, D.M.; Yang, Y.; Zannella, S.

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Self-field AC losses of textured Bi2Sr2CaCu2O8+ thin rods
pp. 71-75(5)
Authors: Martnez, E.; Hughes, T.J.; dez, C.; Angurel, L.A.; Yang, Y.; Beduz, C.

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AC losses in multifilamentary HTS-composite tapes based on BiPbSrCaCuO
pp. 76-80(5)
Authors: Nikulin, A.D.; Shikov, A.K.; Akimov, I.I.; Khodot, A.E.; Rudnev, I.A.; Eremin, A.V.; Ershov, A.L.

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Frequency dependence of AC loss in Bi(2223)Ag-sheathed tapes
pp. 86-89(4)
Authors: Stavrev, S.; Dutoit, B.

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Influence of DC external magnetic field on AC transport current loss of HTS tape
pp. 90-94(5)
Authors: Miyagi, D.; Tsukamoto, O.; Amemiya, N.; Mukai, H.; Fujikami, J.; Hayashi, K.; Sato, K.

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AC losses in BiPbSrCaCuO-2223/Ag multifilamentary tapes in conditions similar to those in superconducting transmission lines
pp. 95-100(6)
Authors: Majoros, M.; Glowacki, B.A.; Campbell, A.M.; Han, Z.; Vase, P.

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Measuring transport current loss of BSCCO/Ag tapes exposed to external AC magnetic field
pp. 101-105(5)
Authors: Rabbers, J.J.; ten Haken, B.; ten Kate, H.H.J.

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AC loss in a high-temperature superconducting coil
pp. 106-110(5)
Authors: Shevchenko, O.A.; Rabbers, J.J.; Godeke, A.; ten Haken, B.; ten Kate, H.H.J.

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AC-induced DC voltage in HTS coil
pp. 111-115(5)
Authors: Al-Omari, I.A.; Shaked, N.; Friedman, A.; Wolfus, Y.; Shaulov, A.; Sinvani, M.; Yeshurun, Y.

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Low frequency impedance of a round superconducting wire
pp. 116-121(6)
Authors: Gomory, F.; Tebano, R.

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AC losses in multifilamentary Bi(2223) tapes with an interfilamentary resistive carbonate barrier
pp. 122-126(5)
Authors: Eckelmann, H.; Quilitz, M.; Oomen, M.; Leghissa, M.; Goldacker, W.

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Reduced filament coupling in Bi(2223)/BaZrO3/Ag composite tapes
pp. 127-131(5)
Authors: Dhalle, M.; Polcari, A.; Marti, F.; Witz, G.; Huang, Y.B.; Flukiger, R.; Clerc, S.; Kwasnitza, K.

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A simple electromagnetic method of cyclic loss measurement for superconducting wires in a combined alternating transverse magnetic field and transport current
pp. 132-136(5)
Authors: Funaki, K.; Kajikawa, K.; Shiraishi, H.; Iwakuma, M.; Miyake, S.; Kumano, T.; Hasegawa, T.

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Decrease of magnetic AC loss in twisted-filament Bi-2223 tapes
pp. 137-141(5)
Authors: Oomen, M.P.; Rieger, J.; Leghissa, M.; Fischer, B.; Arndt, T.

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Experimental study on AC losses in Ag sheathed PbBi2223 tapes with twist filaments
pp. 147-153(7)
Authors: Yang, Y.; Hughes, T.J.; Beduz, C.; Darmann, F.

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Twist effect on hysteresis loss in Bi2223 multifilamentary wires exposed to an AC magnetic field
pp. 154-158(5)
Authors: Iwakuma, M.; Tajika, Y.; Kajikawa, K.; Funaki, K.; Matsushita, T.; Otabe, E.S.; Ayai, N.; Hayashi, K.; Sato, K.

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Current distributions in multifilamentary conductors: the influence of intergrowths
pp. 159-162(4)
Authors: Volkozub, A.V.; Caplin, A.D.; Huang, Y.; Flukiger, R.; Grasso, G.; Eckelmann, H.; Quilitz, M.; Goldacker, W.

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AC loss measurements on model Bi-2223 conductors
pp. 163-167(5)
Authors: Staines, M.; Rupp, S.; Pooke, D.; Fleshler, S.; deMoranville, K.; Christopherson, C.

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Comparison of transport and magnetic AC losses in Bi-2223/Ag tapes - the role of superconducting core geometry
pp. 168-172(5)
Authors: Gomory, F.; Gherardi, L.; Crotti, G.; Bettinelli, D.; Martini, L.; Bigoni, L.; Zannella, S.

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Reconstruction of critical current density profiles from AC loss measurements
pp. 173-176(4)
Authors: Kordyuk, A.A.; Nemoshkalenko, V.V.; Viznichenko, R.V.; Gawalek, W.

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AC transport and magnetic characterisation of multifilamentary Ag-BSCCO(2223) tapes with different filament arrangements
pp. 177-181(5)
Authors: Polcari, A.; Dhalle, M.; Marti, F.; Witz, G.; Huang, Y.; Flukiger, R.

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Magnetic coupling and self-field AC losses of two neighbouring Ag sheathed PbBi2223 tapes
pp. 187-191(5)
Authors: Hughes, T.J.; Yang, Y.; Beduz, C.; Power, A.

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AC losses in circular arrangements of parallel superconducting tapes
pp. 192-196(5)
Authors: Kuhle, A.; Traeholt, C.; Daumling, M.; Olsen, S.K.; Tonnesen, O.

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AC transport current loss of assembled conductor of HTS tapes
pp. 197-201(5)
Authors: Tsukamoto, O.; Ishii, S.; Kito, Y.; Fukui, S.; Mukai, H.; Fujikami, J.; Hayashi, K.; Sato, K.

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Filament architectures in AC conductors: the influence of intergrowths
pp. 202-207(6)
Authors: Everett, J.; Perkins, G.; Volkozub, A.V.; Caplin, A.D.; Dhalle, M.; Polcari, A.; Marti, F.; Huang, Y.B.; Flukiger, R.

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Effect of the sheath resistivity and tape geometry on eddy current loss in Bi(2223) tapes
pp. 208-212(5)
Authors: Nibbio, N.; Stavrev, S.; Dutoit, B.

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AC losses in a flexible 10 m long conductor model for a HTS power transmission cable
pp. 225-230(6)
Authors: Rieger, J.; Leghissa, M.; Wiezoreck, J.; Kramer, H.; Ries, G.; Neumuller, H.

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Comparison between self-field AC losses of a single-phase Bi-2223 cable measured by electric and calorimetric methods
pp. 231-235(5)
Authors: Cereda, E.; Coletta, G.; Crotti, G.; Gherardi, L.; Ottoboni, G.; Zannella, S.

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Single-phase AC losses in prototype HTS conductors for superconducting power transmission lines
pp. 236-239(4)
Authors: Daney, D.E.; Maley, M.P.; Boenig, H.J.; Willis, J.O.; Coulter, J.Y.; Gherardi, L.; Coletta, G.

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AC losses dependence on a CuNi layer location in NbTi CICC
pp. 247-252(6)
Authors: Schild, T.; Duchateau, J.L.

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Magnetic and mechanical AC loss of the ITER CS1 model coil conductor under transverse cyclic loading
pp. 253-257(5)
Authors: Nijhuis, A.; Noordman, N.H.W.; ten Kate, H.H.J.; Mitchell, N.; Bruzzone, P.

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Direct measurement of the AC loss of an ITER relevant coil
pp. 258-261(4)
Authors: Balsamo, E.P.; Ciazynski, D.; Cicchelli, O.; Gislon, P.; Pasotti, G.; Ricci, M.V.; Spadoni, M.

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Measurements of AC losses in different former materials
pp. 267-271(5)
Authors: Olsen, S.K.; Traeholt, C.; Kuhle, A.; Daumling, M.; Tonnesen, O.

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Experimental investigation of AC losses and effective time constant in the high current cable
pp. 277-282(6)
Authors: Egorov, S.; Lancetov, A.; Lebedev, A.; Rodin, I.; Trokhachev, G.; Zhelamskij, M.

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High-Tc superconductors and AC loss in electrotechnical devices
pp. 283-290(8)
Authors: Ries, G.; Leghissa, M.; Rieger, J.; Wiezorek, J.; Oomen, M.

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Coupling current control in Rutherford cables wound with NbTi, Nb3Sn, and Bi:2212/Ag
pp. 291-295(5)
Authors: Sumption, M.D.; Scanlan, R.M.; Collings, E.W.

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Flux relaxation phenomena in the presence of weak AC magnetic fields
pp. 296-301(6)
Authors: Kasatkin, A.L.; Pan, V.M.; Vysotskii, V.V.; Freyhardt, H.C.

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Modelling stability in superconducting cables
pp. 316-326(11)
Author: Bottura, L.

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Influence of supercurrents on the stability of superconducting magnets
pp. 327-334(8)
Authors: Krempasky, L.; Schmidt, C.

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Stability measurements on cored cables in normal and superfluid helium
pp. 335-339(5)
Authors: Ghosh, A.K.; Sampson, W.B.; Kim, S.W.; Leroy, D.; Oberli, L.R.; Wilson, M.N.

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Transient stability of AC multi-strand superconducting cables
pp. 345-350(6)
Authors: Ishiyama, A.; Sasaki, M.; Susa, T.; Kim, S.B.; Tsuda, M.; Yumura, H.; Ohmatsu, K.; Sato, K.

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Current distribution in multistrand superconducting cables - experimental methods and results
pp. 351-357(7)
Authors: Vysotsky, V.S.; Funaki, K.; Takeo, M.

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Design parameters influencing non-uniform current distributions in superconducting multi-stage stranded cables
pp. 358-366(9)
Authors: Seo, K.; Hasegawa, M.; Morita, M.; Yoshimura, H.

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The transport current redistribution between the core layers on the models of HTS cables
pp. 367-371(5)
Authors: Dolgosheev, P.I.; Sytnikov, V.E.; Svalov, G.G.; Polyakova, N.V.; Belij, D.I.

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Heat propagation and stability in a small high Tc superconductor coil
pp. 372-376(5)
Authors: Kiss, T.; Vysotsky, V.S.; Yuge, H.; Saho, H.; Ilyin, Y.A.; Takeo, M.; Watanabe, K.; Irie, F.

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Segregation of copper in the ITER cable and ramp rate limitation
pp. 377-381(5)
Authors: Akhmetov, A.A.; Sytnikov, V.E.

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Influence of the multilayer HTS-cable conductor design on the current distribution
pp. 387-391(5)
Authors: Sytnikov, V.E.; Dolgosheev, P.I.; Svalov, G.G.; Polyakova, N.V.; Belij, D.I.

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The observation of sonic range velocities of normal zone propagation in high current density superconductor
pp. 400-402(3)
Authors: Kuroedov, Y.D.; Dorofeev, G.L.; Gershenkroy, V.L.; Kremlev, M.G.; Fortov, V.E.

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