115 results on '"Carvalho, B.B."'
Search Results
2. Advanced high-performance processing tools for diagnostics and control in fusion devices
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Cruz, N., Batista, A.J.N., Cardoso, J.M., Carvalho, B.B., Carvalho, P.F., Combo, A., Correia, M., Fernandes, A., Pereira, R.C., Rodrigues, A.P., Santos, B., Sousa, J., and Gonçalves, B.
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- 2021
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3. Revealing the link between A-type granites and hottest melts from residual metasedimentary crust
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Carvalho, B.B., primary, Bartoli, O., additional, Cesare, B., additional, Satish-Kumar, M., additional, Petrelli, M., additional, Kawakami, T., additional, Hokada, T., additional, and Gilio, M., additional
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- 2023
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4. Petrography, geochemistry, and Nd isotope systematics of metaconglomerates and matrix-rich metasedimentary rocks: implications for the provenance and tectonic setting of the Labrador Trough, Canada
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Henrique-Pinto, R., Guilmette, C., Bilodeau, C., Stevenson, R., and Carvalho, B.B.
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Isotope analysis ,Geochemistry -- Analysis ,Rocks, Sedimentary -- Properties -- Analysis ,Earth sciences - Abstract
The New Quebec Orogen consistsofa supracrustal belt that was reworked when the Superior Craton collided with the Core Zone terrane during the Paleoproterozoic Trans-Hudson Orogeny. Within the New Quebec Orogen, the Kaniapiskau Supergroup can be divided into four terrigenous lithotypes metamorphosed at low-grade: one set with greater compositional and textural sedimentary maturity classified as quartz arenites and subarkoses, and another set with lower textural maturity classified as feldspathic wackes and mudrocks. In contrast, the Laporte Group includes homogeneous lithotypes represented by feldspathic and lithic wackes with a range of matrix contents metamorphosed at low to medium grade. The Kaniapiskau Supergroup rocks have a wide range of [SiO.sub.2] and [Al.sub.2][O.sub.3] contents ([SiO.sub.2]/[Al.sub.2][O.sub.3] = 3.7-51) compared to the restricted compositional range of the Laporte Group rocks ([SiO.sub.2]/[Al.sub.2][O.sub.3] = 4.4-6.8). In general, the geochemical variations in both formations of the Laporte Group are within the range of the main clast varieties from basal metaconglomerates, although the Deborah Formation (top unit) records higher [TiO.sub.2], [P.sub.2][O.sub.5], MgO, and Ni contents and high Cr/Th, Co/Ba, Th/U, and Rb/Sr ratios indicating additional mafic sources. Our results support the hypothesis that the Kaniapiskau Supergroup was deposited along an intraplate continental margin withpredominantly recycled ([[epsilon]Nd.sub.(1.87Ga)]-12) Paleoarchean sources (TDM 3.2 Ga).Incontrast, the Laporte Group marks the transition from a continental forearc (Grand Rosoy Fm.) with a typical juvenile source, including granitic clasts ([[epsilon]Nd.sub.(1.83Ga)] - 0.1 to +3.1), to a wedge-top depozone (Deborah Fm.) in the context of a collisional proforeland basin. This syncollisional sedimentary environment is characterized by the presence of old crustal components ([[epsilon]Nd.sub.(1.83Ga)] -4.4 to -9.1). Key words: provenance, Nd systematics, granitic clasts, juvenile sources, metasedimentary geochemistry. L'orogene du Nouveau Quebec represente une ceinture supracrustale qui a ete remaniee quand le craton du Superieur est entre en collision avec le terrane de la zone noyau durant l'orogenese paleoproterozoïque Trans-Hudsonienne. Au sein de l'orogene du Nouveau Quebec, le Supergroupe de Kaniapiskau peut être subdivise en quatre lithotypes terrigenes de faible degre de metamorphisme, a savoir : un ensemble montrant une plus grande maturite du point de vue de la composition et de la texture, classe comme etant des quartzarenites et des subarkoses, et un autre ensemble de moindre maturite texturale classe comme etant des wackes feldspathiques et mudrocks. Le Groupe de Laporte comprend pour sa part des lithotypes homogenes representes par des wackes feldspathiques et lithiques ayant des proportions variees de matrice, de degre de metamorphisme faible a moyen. Les roches du Supergroupe de Kaniapiskau definissent une grande fourchette de concentrations de [SiO.sub.2] et d'[Al.sub.2][O.sub.3] ([SiO.sub.2]/[Al2O.sub.3] = 3,7-51) par rapport aux roches du Groupe de Laporte qui definissent une fourchette plus restreinte ([SiO.sub.2]/[Al.sub.2][O.sub.3] = 4,4-6,8). En general, les variations geochimiques des deux unites du Groupe de Laporte sont dans la fourchette de composition des principales varietes de clastes des metaconglomerats basaux, bien que la Formation de Deborah (unite superieure) presente des concentrations de [TiO.sub.2], [P.sub.2][O.sub.5], MgO et Ni plus elevees, ainsi que des rapports de Cr/Th, Co/Ba, Th/U et Rb/Sr eleves indiquant la presence de sources mafiques supplementaires. Nos resultats appuient l'hypothese selon laquelle le Super-groupede Kaniapiskau aete deposele long d'une marge continentale intraplaque caracterisee par une predominance desources recyclees ([[epsilon]Nd.sub.(1,87Ga)] -12) paleoarcheennes (TDM 3,2 Ga). Le Groupe de Laporte marque pour sa part la transition entre un avant-arc continental (Formation de Grand Rosoy) ayant une source juvenile typique comprenant des clastes granitiques ([[epsilon]Nd.sub.(1,83Ga)] -0,1 a+3,1) vers une zone desedimentationau sommetdubiseau (Formation de Deborah) dans le contexte d'un bassin peripherique d'avant-pays collisionnel. Cet environnement sedimentaire syn-collision est caracterise par la presence de vieilles composantes crustales ([[epsilon]Nd.sub.(1,83Ga)] -4,4 a -9,1). [Traduit par la Redaction] Mots-cles : provenance, systematique du Nd, clastes granitiques, sources juveniles, geochimie metasedimentaire., Introduction Sedimentary rocks with high textural maturity do not typically preserve mafic and intermediate sources as lithic fragments or as components in the main population of detrital zircons. Mafic to [...]
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- 2019
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5. Effect of temperature on the electrochemical synthesis of MnO2 recycled from spent Zn–MnO2 alkaline batteries and application of recycled MnO2 as electrochemical pseudocapacitors
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Carvalho, B.B., Pegoretti, V.C.B., Celante, V.G., Dixini, P.V.M., Gastelois, P.L., Macedo, W.A.A., and Freitas, M.B.J.G.
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- 2017
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6. Evidence for Paleoproterozoic anatexis and crustal reworking of Archean crust in the São Francisco Craton, Brazil: A dating and isotopic study of the Kinawa migmatite
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Carvalho, B.B., Janasi, V.A., and Sawyer, E.W.
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- 2017
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7. Implementation of a high-speed multichannel data acquisition system for magnetic diagnostics and plasma centroid position control in ISTTOK
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Corona, D., primary, Mele, A., additional, Cruz, N., additional, Alves, H., additional, Carvalho, B.B., additional, Figueiredo, H., additional, and Fernandes, H., additional
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- 2023
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8. Provenance and sedimentary environments of the Proterozoic São Roque Group, SE-Brazil: Contributions from petrography, geochemistry and Sm–Nd isotopic systematics of metasedimentary rocks
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Henrique-Pinto, R., Janasi, V.A., Tassinari, C.C.G., Carvalho, B.B., Cioffi, C.R., and Stríkis, N.M.
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- 2015
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9. The ITER Fast Plant System Controller ATCA prototype Real-Time Software Architecture
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Carvalho, B.B., Santos, B., Carvalho, P.F., Neto, A., Boncagni, L., Batista, A.J.N., Correia, M., Sousa, J., and Gonçalves, B.
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- 2013
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10. Control and data acquisition ATCA/AXIe board designed for high system availability and reliability of nuclear fusion experiments
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Batista, A.J.N., Leong, C., Bexiga, V., Rodrigues, A.P., Combo, A., Carvalho, B.B., Carvalho, P.F., Fortunato, J., Santos, B., Carvalho, P., Correia, M., Teixeira, J.P., Teixeira, I.C., Sousa, J., Gonçalves, B., and Varandas, C.A.F.
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- 2013
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11. ATCA/AXIe compatible board for fast control and data acquisition in nuclear fusion experiments
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Batista, A.J.N., Leong, C., Bexiga, V., Rodrigues, A.P., Combo, A., Carvalho, B.B., Fortunato, J., Correia, M., Teixeira, J.P., Teixeira, I.C., Sousa, J., Gonçalves, B., and Varandas, C.A.F.
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- 2012
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12. ITER fast plant system controller prototype based on ATCA platform
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Gonçalves, B., Sousa, J., Carvalho, B.B., Batista, .A., Neto, A., Santos, B., Duarte, A., Valcárcel, D., Alves, D., Correia, M., Rodrigues, A.P., Carvalho, P.F., Ruiz, M., Vega, J., Castro, R., López, J.M., Utzel, N., and Makijarvi, P.
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- 2012
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13. ITER prototype fast plant system controller
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Gonçalves, B., Sousa, J., Carvalho, B.B., Rodrigues, A.P., Correia, M., Batista, A., Vega, J., Ruiz, M., López, J.M., Castro, R., Wallander, A., Utzel, N., Makijarvi, P., Simrock, S., Neto, A., Alves, D., Valcárcel, D.F., Lousã, P., Piedade, F., and Fernandes, L.
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- 2011
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14. Determination of the plasma position for its real-time control in the COMPASS tokamak
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Janky, F., Havlicek, J., Valcárcel, D., Hron, M., Horacek, J., Kudlacek, O., Panek, R., and Carvalho, B.B.
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- 2011
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15. FireSignal application Node for subsystem control
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Duarte, A.S., Santos, B., Pereira, T., Carvalho, B.B., Fernandes, H., Neto, A., Janky, F., Cahyna, P., Písačka, J., and Hron, M.
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- 2010
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16. Real-time software for the COMPASS tokamak plasma control
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Valcárcel, D.F., Duarte, A.S., Neto, A., Carvalho, I.S., Carvalho, B.B., Fernandes, H., Sousa, J., Sartori, F., Janky, F., Cahyna, P., Hron, M., and Pánek, R.
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- 2010
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17. Reconfigurable ATCA hardware for plasma control and data acquisition
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Carvalho, B.B., Batista, A.J.N., Correia, M., Neto, A., Fernandes, H., Gonçalves, B., and Sousa, J.
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- 2010
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18. Parallel processing method for high-speed real time digital pulse processing for gamma-ray spectroscopy
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Fernandes, A.M., Pereira, R.C., Sousa, J., Neto, A., Carvalho, P., Batista, A.J.N., Carvalho, B.B., Varandas, C.A.F., Tardocchi, M., and Gorini, G.
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- 2010
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19. An ATCA Embedded Data Acquisition and Control System for the Compass tokamak
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Valcárcel, D.F., Neto, A., Sousa, J., Carvalho, B.B., Fernandes, H., Fortunato, J.C., Gouveia, A.S., Batista, A.J.N., Fernandes, A.G., Correia, M., Pereira, T., Carvalho, I.S., Duarte, A.S., Varandas, C.A.F., Hron, M., Janky, F., and Písačka, J.
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- 2009
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20. Multi-rate DSP/FPGA-based real-time acquisition and control on the ISTTOK Tokamak
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Carvalho, B.B., Batista, A.J.N., Patricio, F., Correia, M., Fernandes, H., Sousa, J., and Varandas, C.A.F.
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Data entry -- Methods ,Digital filters -- Usage ,Real-time control -- Methods ,Real-time systems -- Methods ,Real-time system ,Business ,Electronics ,Electronics and electrical industries - Abstract
Data acquisition on the ISTTOK tokamak is being upgraded from VME to PCI using a general purpose especially developed transient recorder PCI acquisition board with 8 galvanic isolated 14 bit, 2 MSamples/sec channels, 512 Mbytes of SDRAM, and integrated FPGA/DSP capabilities. Due to the wide range of ISTTOK signal spectrum, data-reduction is crucial to efficiently use data retrieval and analysis systems. To avoid long latency offline processing and also to allow real-time control implemented in the DSP, multi-rate real time decimation in the FPGA has been implemented. This paper describes the data processing techniques developed using either FIR or cascaded-integrator-comb CIC filters. A digital DC baseline restorer was also implemented in the FPGA. Index Terms--Digital filters, real-time systems, signal processing, tokamak.
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- 2008
21. Overview of the JET preparation for deuterium-tritium operation with the ITER like-wall Recent citations
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Joffrin, E., Abduallev, S., Abhangi, M., Abreu, P., Afanasev, V., Afzal, M., Aggarwal, K.M., Ahlgren, T., Aho-Mantila, L., Aiba, N., Airila, M., Alarcon, T., Albanese, R., Alegre, D., Aleiferis, S., Alessi, E., Aleynikov, P., Alkseev, A., Allinson, M., Alper, B., Alves, E., Ambrosino, G., Ambrosino, R., Amosov, V., Andersson Sundén, E., Andrews, R., Angelone, M., Anghel, M., Angioni, C., Appel, L., Appelbee, C., Arena, P., Ariola, M., Arshad, S., Artaud, J., Arter, W., Ash, A., Ashikawa, N., Aslanyan, V., Asunta, O., Asztalos, O., Auriemma, F., Austin, Y., Avotina, L., Axton, M., Ayres, C., Baciero, A., Baião, D., Balboa, I., Balden, M., Balshaw, N., Bandaru, V.K., Banks, J., Baranov, Y.F., Barcellona, C., Barnard, T., Barnes, M., Barnsley, R., Baron Wiechec, A., Barrera Orte, L., Baruzzo, M., Basiuk, V., Bassan, M., Bastow, R., Batista, A., Batistoni, P., Baumane, L., Bauvir, B., Baylor, L., Beaumont, P.S., Beckers, M., Beckett, B., Bekris, N., Beldishevski, M., Bell, K., Belli, F., Belonohy, E., Benayas, J., Bergsåker, H., Bernardo, J., Bernert, M., Berry, M., Bertalot, L., Besiliu, C., Betar, H., Beurskens, M., Bielecki, J., Biewer, T., Bilato, R., Biletskyi, O., Bílková, P., Binda, F., Birkenmeier, G., Bizarro, J.P.S., Björkas, C., Blackburn, J., Blackman, T.R., Blanchard, P., Blatchford, P., Bobkov, V., Boboc, A., Bogar, O., Bohm, P., Bohm, T., Bolshakova, I., Bolzonella, T., Bonanomi, N., Boncagni, L., Bonfiglio, D., Bonnin, X., Boom, J., Borba, D., Borodin, D., borodkina, I., Boulbe, C., Bourdelle, C., Bowden, M., Bowman, C., Boyce, T., Boyer, H., Bradnam, S.C., Braic, V., Bravanec, R., Breizman, B., Brennan, D., Breton, S., Brett, A., Brezinsek, S., Bright, M., Brix, M., Broeckx, W., Brombin, M., Brosławski, A., Brown, B., Brunetti, D., Bruno, E., Buch, J., Buchanan, J., Buckingham, R., Buckley, M., Bucolo, M., Budny, R., Bufferand, H., Buller, S., Bunting, P., Buratti, P., Burckhart, A., Burroughes, G., Buscarino, A., Busse, A., Butcher, D., Butler, B., Bykov, I., Cahyna, P., Calabrò, G., Calacci, L., Callaghan, D., Callaghan, J., Calvo, I., Camenen, Y., Camp, P., Campling, D.C., Cannas, B., Capat, A., Carcangiu, S., Card, P., Cardinali, A., Carman, P., Carnevale, D., Carr, M., Carralero, D., Carraro, L., Carvalho, B.B., Carvalho, I., Carvalho, P., Carvalho, D.D., Casson, F.J., Castaldo, C., Catarino, N., Causa, F., Cavazzana, R., Cave-Ayland, K., Cavedon, M., Cecconello, M., Ceccuzzi, S., Cecil, E., Challis, C.D., Chandra, D., Chang, C.S., Chankin, A., Chapman, I.T., Chapman, B., Chapman, S.C., Chernyshova, M., Chiariello, A., Chitarin, G., Chmielewski, P., Chone, L., Ciraolo, G., Ciric, D., Citrin, J., Clairet, F., Clark, M., Clark, E., Clarkson, R., Clay, R., Clements, C., Coad, J.P., Coates, P., Cobalt, A., Coccorese, V., Cocilovo, V., Coelho, R., Coenen, J.W., Coffey, I., Colas, L., Colling, B., Collins, S., Conka, D., Conroy, S., Conway, N., Coombs, D., Cooper, S.R., Corradino, C., Corre, Y., Corrigan, G., Coster, D., Craciunescu, T., Cramp, S., Crapper, C., Crisanti, F., CROCI, G., Croft, D., Crombé, K., Cruz, N., Cseh, G., Cufar, A., Cullen, A., Curson, P., Curuia, M., Czarnecka, A., Czarski, T., Cziegler, I., Dabirikhah, H., Dal Molin, A., Dalgliesh, P., Dalley, S., Dankowski, J., Darrow, D., David, P., Davies, A., Davis, W., Dawson, K., Day, I., Day, C., De Bock, M., de Castro, A., De Dominici, G., De La Cal, E., De La Luna, E., De Masi, G., De Temmerman, G., De Tommasi, G., De Vries, P., Deane, J., Dejarnac, R., Del Sarto, D., Delabie, E., Demerdzhiev, V., Dempsey, A., Den Harder, N., Dendy, R.O., Denis, J., Denner, P., Devaux, S., Devynck, P., Di Maio, F., Di Siena, A., Di Troia, C., Dickinson, D., Dinca, P., Dittmar, T., Dobrashian, J., Doerk, H., Doerner, R.P., Domptail, F., Donné, T., Dorling, S.E., Douai, D., Dowson, S., Drenik, A., Dreval, M., Drewelow, P., Drews, P., Duckworth, Ph., Dumont, R., Dumortier, P., Dunai, D., Dunne, M., Ďuran, I., Durodié, F., Dutta, P., Duval, B.P., Dux, R., Dylst, K., Edappala, P.V., Edwards, A.M., Edwards, J.S., Eich, Th., Eidietis, N., Eksaeva, A., Ellis, R., Ellwood, G., Elsmore, C., Emery, S., Enachescu, M., Ericsson, G., Eriksson, J., Eriksson, F., Eriksson, L.G., Ertmer, S., Esquembri, S., Esquisabel, A.L., Esser, H.G., Ewart, G., Fable, E., Fagan, D., Faitsch, M., Falie, D., Fanni, A., Farahani, A., Fasoli, A., Faugeras, B., Fazinić, S., Felici, F., Felton, R.C., Feng, S., Fernades, A., Fernandes, H., Ferreira, J., Ferreira, D.R., Ferro, G., Fessey, J.A., Ficker, O., Field, A., Fietz, S., Figini, L., Figueiredo, A., Figueiredo, J., Fil, N., Finburg, P., Fischer, U., Fittill, L., Fitzgerald, M., Flammini, D., Flanagan, J., Flinders, K., Foley, S., Fonnesu, N., Fontdecaba, J.M., Formisano, A., Forsythe, L., Fortuna, L., Fransson, E., Frasca, M., Frassinetti, L., Freisinger, M., Fresa, R., Fridström, R., Frigione, D., Fuchs, V., Fusco, V., Futatani, S., Gál, K., Galassi, D., Gałązka, K., Galeani, S., Gallart, D., Galvão, R., Gao, Y., Garcia, J., Garcia-Carrasco, A., García-Muñoz, M., Gardener, M., Garzotti, L., Gaspar, J., Gaudio, P., Gear, D., Gebhart, T., Gee, S., Geiger, B., Gelfusa, M., George, R., Gerasimov, S., Gervasini, G., Gethins, M., Ghani, Z., Ghate, M., Gherendi, M., Ghezzi, F., Giacalone, J.C., Giacomelli, L., Giacometti, G., Gibson, K., Giegerich, T., Gil, L., Gilbert, M.R., Gin, D., Giovannozzi, E., Giroud, C., Glöggler, S., Goff, J., Gohil, P., Goloborod’ko, V., Goloborodko, V., Gomes, R., Gonçalves, B., Goniche, M., Goodyear, A., Gorini, G., Görler, T., Goulding, R., Goussarov, A., Graham, B., Graves, J.P., Greuner, H., Grierson, B., Griffiths, J., Griph, S., Grist, D., Groth, M., Grove, R., Gruca, M., Guard, D., Guérard, C., Guillemaut, C., Guirlet, R., Gulati, S., Gurl, C., Gutierrez-Milla, A., Utoh, H.H., Hackett, L., Hacquin, S., Hager, R., Hakola, A., Halitovs, M., Hall, S., Hallworth-Cook, S., Ham, C., Hamed, M., Hamilton, N., Hamlyn-Harris, C., Hammond, K., Hancu, G., Harrison, J., Harting, D., Hasenbeck, F., Hatano, Y., Hatch, D.R., Haupt, T., Hawes, J., Hawkes, N.C., Hawkins, J., Hawkins, P., Hazel, S., Heesterman, P., Heinola, K., Hellesen, C., Hellsten, T., Helou, W., Hemming, O., Hender, T.C., Henderson, S.S., Henderson, M., Henriques, R., Hepple, D., Herfindal, J., Hermon, G., Hidalgo, C., Higginson, W., Highcock, E.G., Hillesheim, J., Hillis, D., Hizanidis, K., Hjalmarsson, A., Ho, A., Hobirk, J., Hogben, C.H.A., Hogeweij, G.M.D., Hollingsworth, A., Hollis, S., Hölzl, M., Honore, J.-J., Hook, M., Hopley, D., Horáček, J., Hornung, G., Horton, A., Horton, L.D., Horvath, L., Hotchin, S.P., Howell, R., Hubbard, A., Huber, A., Huber, V., Huddleston, T.M., Hughes, M., Hughes, J., Huijsmans, G.T.A., Huynh, P., Hynes, A., Igaune, I., Iglesias, D., Imazawa, N., Imríšek, M., Incelli, M., Innocente, P., Ivanova-Stanik, I., Ivings, E., Jachmich, S., Jackson, A., Jackson, T., Jacquet, P., Jansons, J., Jaulmes, F., Jednoróg, S., Jenkins, I., Jepu, I., Johnson, T., Johnson, R., Johnston, J., Joita, L., Joly, J., Jonasson, E., Jones, T., Jones, C., Jones, L., Jones, G., Jones, N., Juvonen, M., Hoshino, K.K., Kallenbach, A., Kalsey, M., Kaltiaisenaho, T., Kamiya, K., Kaniewski, J., Kantor, A., Kappatou, A., Karhunen, J., Karkinsky, D., Kaufman, M., Kaveney, G., Kazakov, Y., Kazantzidis, V., Keeling, D.L., Keenan, F.P., Kempenaars, M., Kent, O., Kent, J., Keogh, K., Khilkevich, E., Kim, H.-T., King, R., King, D., Kinna, D.J., Kiptily, V., Kirk, A., Kirov, K., Kirschner, A., Kizane, G., Klas, M., Klepper, C., Klix, A., Knight, M., Knight, P., Knipe, S., Knott, S., Kobuchi, T., Köchl, F., Kocsis, G., Kodeli, I., Koechl, F., Kogut, D., Koivuranta, S., Kolesnichenko, Y., Kollo, Z., Kominis, Y., Köppen, M., Korolczuk, S., Kos, B., Koslowski, H.R., Kotschenreuther, M., Koubiti, M., Kovaldins, R., Kovanda, O., Kowalska-Strzęciwilk, E., Krasilnikov, A., Krasilnikov, V., Krawczyk, N., Kresina, M., Krieger, K., Krivska, A., Kruezi, U., Książek, I., Kukushkin, A., Kundu, A., Kurki-Suonio, T., Kwak, S., Kwon, O.J., Laguardia, L., Lahtinen, A., Laing, A., Lalousis, P., Lam, N., Lamb, C., Lambertz, H.T., Lang, P.T., Lanthaler, S., Lascas Neto, E., Łaszyńska, E., Lawless, R., Lawson, K.D., Lazaros, A., Lazzaro, E., Leach, R., Learoyd, G., Leerink, S., Lefebvre, X., Leggate, H.J., Lehmann, J., Lehnen, M., Leichauer, P., Leichtle, D., Leipold, F., Lengar, I., Lennholm, M., Lepiavko, B., Leppänen, J., Lerche, E., Lescinskis, A., Lescinskis, B., Lesnoj, S., Leyland, M., Leysen, W., Li, Y., Li, L., Liang, Y., Likonen, J., Linke, J., Linsmeier, Ch., Lipschultz, B., Litaudon, X., Liu, G., Lloyd, B., Lo Schiavo, V.P., Loarer, T., Loarte, A., Lomanowski, B., Lomas, P.J., Lönnroth, J., López, J.M., Lorenzini, R., Losada, U., Loughlin, M., Lowry, C., Luce, T., Lucock, R., Lukin, A., Luna, C., Lungaroni, M., Lungu, C.P., Lungu, M., Lunniss, A., Lunt, T., Lupelli, I., Lutsenko, V., Lyssoivan, A., Macheta, P., Macusova, E., Magesh, B., Maggi, C., Maggiora, R., Mahesan, S., Maier, H., Mailloux, J., Maingi, R., Makwana, R., Malaquias, A., Malinowski, K., Malizia, A., Manas, P., Manduchi, G., Manso, M.E., Mantica, P., Mantsinen, M., Manzanares, A., Maquet, Ph., Marandet, Y., Marcenko, N., Marchetto, C., Marchuk, O., Marconato, N., Mariani, A., Marin, M., Marinelli, M., Marinucci, M., Markovič, T., Marocco, D., Marot, L., Marsh, J., Martin, A., Martin De Aguilera, A., Martín-Solís, J.R., Martone, R., Martynova, Y., Maruyama, S., Maslov, M., Matejcik, S., Mattei, M., Matthews, G.F., Matveev, D., Matveeva, E., Mauriya, A., Maviglia, F., May-Smith, T., Mayer, M., Mayoral, M.L., Mazon, D., Mazzotta, C., Mcadams, R., McCarthy, P.J., McClements, K.G., McCormack, O., McCullen, P.A., Mcdonald, D., McHardy, M., McKean, R., McKehon, J., McNamee, L., Meadowcroft, C., Meakins, A., Medley, S., Meigh, S., Meigs, A.G., Meisl, G., Meiter, S., Meitner, S., Meneses, L., Menmuir, S., Mergia, K., Merle, A., Merriman, P., Mertens, Ph., Meshchaninov, S., Messiaen, A., Meyer, H., Michling, R., Milanesio, D., Militello, F., Militello-Asp, E., Milocco, A., Miloshevsky, G., Mink, F., Minucci, S., Miron, I., Mistry, S., Miyoshi, Y., Mlynář, J., Moiseenko, V., Monaghan, P., Monakhov, I., Moon, S., Mooney, R., Moradi, S., Morales, J., Moran, J., Mordijck, S., Moreira, L., Moro, F., Morris, J., Moser, L., Mosher, S., Moulton, D., Mrowetz, T., Muir, A., Muraglia, M., Murari, A., Muraro, A., Murphy, S., Muscat, P., Muthusonai, N., Myers, C., Asakura, N.N., N’Konga, B., Nabais, F., Naish, R., Naish, J., Nakano, T., Napoli, F., Nardon, E., Naulin, V., Nave, M.F.F., Nedzelskiy, I., Nemtsev, G., Nesenevich, V., Nespoli, F., Neto, A., Neu, R., Neverov, V.S., Newman, M., Ng, S., Nicassio, M., Nielsen, A.H., Nina, D., Nishijima, D., Noble, C., Nobs, C.R., Nocente, M., Nodwell, D., Nordlund, K., Nordman, H., Normanton, R., Noterdaeme, J.M., Nowak, S., Nunes, I., O’Gorman, T., O’Mullane, M., Oberkofler, M., Oberparleiter, M., Odupitan, T., Ogawa, M.T., Okabayashi, M., Oliver, H., Olney, R., Omoregie, L., Ongena, J., Orsitto, F., Orszagh, J., Osborne, T., Otin, R., Owen, A., Owen, T., Paccagnella, R., Packer, L.W., Pajuste, E., Pamela, S., Panja, S., Papp, P., Papp, G., Parail, V., Pardanaud, C., Parra Diaz, F., Parsloe, A., Parsons, N., Parsons, M., Pasqualotto, R., Passeri, M., Patel, A., Pathak, S., Patten, H., Pau, A., Pautasso, G., Pavlichenko, R., Pavone, A., Pawelec, E., Paz Soldan, C., Peackoc, A., Pehkonen, S.-P., Peluso, E., Penot, C., Penzo, J., Pepperell, K., Pereira, R., Perelli Cippo, E., Perez von Thun, C., Pericoli, V., Peruzzo, S., Peterka, M., Petersson, P., Petravich, G., Petre, A., Petržilka, V., Philipps, V., Pigatto, L., Pillon, M., Pinches, S., Pintsuk, G., Piovesan, P., Pires de Sa, W., Pires dos Reis, A., Piron, L., Piron, C., Pironti, A., Pisano, F., Pitts, R., Plyusnin, V., Poli, F.M., Pomaro, N., Pompilian, O.G., Pool, P., Popovichev, S., Poradziński, M., Porfiri, M.T., Porosnicu, C., Porton, M., Possnert, G., Potzel, S., Poulipoulis, G., Powell, T., Prajapati, V., Prakash, R., Predebon, I., Prestopino, G., Price, D., Price, M., Price, R., Primetzhofer, D., Prior, P., Pucella, G., Puglia, P., Puiatti, M.E., Purahoo, K., Pusztai, I., Pütterich, Th., Rachlew, E., Rack, M., Ragona, R., Rainford, M., Raj, P., Rakha, A., Ramogida, G., Ranjan, S., Rapson, C.J., Rasmussen, D., Rasmussen, J.J., Rathod, K., Rattá, G., Ratynskaia, S., Ravera, G., Rebai, M., Reed, A., Réfy, D., Regaña, J., Reich, M., Reid, N., Reimold, F., Reinhart, M., Reinke, M., Reiser, D., Rendell, D., Reux, C., Reyes Cortes, S.D.A., Reynolds, S., Ricci, D., Richiusa, M., Rigamonti, D., Rimini, F.G., Risner, J., Riva, M., Rivero-Rodriguez, J., Roach, C., Robins, R., Robinson, S., Robson, D., Rodionov, R., Rodrigues, P., Rodriguez, J., Rohde, V., Romanelli, Marco, Romanelli, F., Romanelli, S., Romazanov, J., Rowe, S., Rubel, M., Rubinacci, G., Rubino, G., Ruchko, L., Ruset, C., Rzadkiewicz, J., Saarelma, S., Sabot, R., Sáez, X., Safi, E., Sahlberg, A., Saibene, G., Saleem, M., Salewski, M., Salmi, A., Salmon, R., Salzedas, F., Samm, U., Sandiford, D., Santa, P., Santala, M.I.K., Santos, B., Santucci, A., Sartori, F., Sartori, R., Sauter, O., Scannell, R., Schluck, F., Schlummer, T., Schmid, K., Schmuck, S., Schöpf, K., Schweinzer, J., SCHWÖRER, D., Scott, S.D., Sergienko, G., Sertoli, M., Shabbir, A., Sharapov, S.E., Shaw, A., Sheikh, H., Shepherd, A., Shevelev, A., Shiraki, D., Shumack, A., Sias, G., Sibbald, M., Sieglin, B., Silburn, S., Silva, J., Silva, A., Silva, C., Silvagni, D., Simmons, P., Simpson, J., Sinha, A., Sipilä, S.K., Sips, A.C.C., Sirén, P., Sirinelli, A., Sjöstrand, H., Skiba, M., Skilton, R., Skvara, V., Slade, B., Smith, R., Smith, P., Smith, S.F., Snoj, L., Soare, S., Solano, E.R., Somers, A., Sommariva, C., Sonato, P., Sos, M., Sousa, J., Sozzi, C., Spagnolo, S., Sparapani, P., Spelzini, T., Spineanu, F., Sprada, D., Sridhar, S., Stables, G., Stallard, J., Stamatelatos, I., Stamp, M.F., Stan-Sion, C., Stancar, Z., Staniec, P., Stankūnas, G., Stano, M., Stavrou, C., Stefanikova, E., Stepanov, I., Stephen, A.V., Stephen, M., Stephens, J., Stevens, B., Stober, J., Stokes, C., Strachan, J., Strand, P., Strauss, H.R., Ström, P., Studholme, W., Subba, F., Suchkov, E., Summers, H.P., Sun, H., Sutton, N., Svensson, J., Sytnykov, D., Szabolics, T., Szepesi, G., Suzuki, T.T., Tabarés, F., Tadić, T., Tal, B., Tál, B., Tala, T., Taliercio, C., Tallargio, A., Tanaka, K., Tang, W., Tardocchi, M., Tatali, R., Taylor, D., Tegnered, D., Telesca, G., Teplova, N., Teplukhina, A., Terranova, D., Terry, C., Testa, D., Tholerus, E., Thomas, J., Thompson, V.K., Thornton, A., Tierens, W., Tiseanu, I., Tojo, H., Tokitani, M., Tolias, P., Tomeš, M., Trimble, P., Tripský, M., Tsalas, M., Tsavalas, P., Tskhakaya, D., Tskhakaya Jun, D., Turner, I., Turner, M.M., Turnyanskiy, M., Tvalashvili, G., Tyshchenko, M., Uccello, A., Uljanovs, J., Urano, H., Urban, A., Urbanczyk, G., Uytdenhouwen, I., Vadgama, A., Valcarcel, D., Vale, R., Valentinuzzi, M., Valerii, K., Valisa, M., Vallejos Olivares, P., Valovic, M., Van Eester, D., Van Renterghem, W., van Rooij, G.J., Varje, J., Vartanian, S., Vasava, K., Vasilopoulou, T., Vecsei, M., Vega, J., Ventre, S., Verdoolaege, G., Verona, C., Verona Rinati, G., Veshchev, E., Vianello, N., Vicente, J., Viezzer, E., Villari, S., Villone, F., Vincent, M., Vincenzi, P., Vinyar, I., Viola, B., Vitins, A., Vizvary, Z., Vlad, M., Voitsekhovitch, I., Voltolina, D., von Toussaint, U., Vondráček, P., Vukšić, M., Wakeling, B., Waldon, C., Walkden, N., Walker, R., Walker, M., Walsh, M., Wang, E., Wang, N., Warder, S., Warren, R., Waterhouse, J., Watts, C., Wauters, T., Webb, M., Weckmann, A., Weiland, J., Weiland, M., Weisen, H., Weiszflog, M., Welch, P., West, A., Wheatley, M., Wheeler, S., Whitehead, A.M., Whittaker, D., Widdowson, A.M., Wiesen, S., Wilkie, G., Williams, J., Willoughby, D., Wilson, J., Wilson, I., Wilson, H.R., Wischmeier, M., Withycombe, A., Witts, D., Wolfrum, E., Wood, R., Woodley, R., Woodley, C., Wray, S., Wright, J.C., Wright, P., Wukitch, S., Wynn, A., Xiang, L., Xu, T., Xue, Y., Yadikin, D., Yakovenko, Y., Yanling, W., Yavorskij, V., Young, I., Young, R., Young, D., Zacks, J., Zagorski, R., Zaitsev, F.S., Zakharov, L., Zanino, R., Zarins, A., Zarins, R., Zarzoso Fernandez, D., Zastrow, K.D., Zerbini, M., Zhang, W., Zhou, Y., Zilli, E., Zocco, A., Zoita, V., Zoletnik, S., Zwingmann, W., Zychor, I., CEA Cadarache, Commissariat à l'énergie atomique et aux énergies alternatives (CEA), VTT Technical Research Centre of Finland (VTT), Naka Fusion Institute, National Institutes for Quantum and Radiological Science and Technology (QST), Association EURATOM-TEKES, Association EURATOM-TEKES, Helsinki University of Technology, Finland, Institut de Recherche sur la Fusion par confinement Magnétique (IRFM), STMicroelectronics, EURATOM/CCFE Fusion Association, Culham Science Centre [Abingdon], Assoc. Euratom-ENEA-CREATE, Università degli studi di Napoli Federico II, Universita degli studi di Napoli 'Parthenope' [Napoli], Queen's University [Kingston], Max-Planck-Institut für Plasmaphysik [Garching] (IPP), Università degli studi di Catania [Catania], National Institute for Fusion Science (NIFS), Massachusetts Institute of Technology (MIT), Culham Centre for Fusion Energy (CCFE), North Carolina State University [Raleigh] (NC State), University of North Carolina System (UNC), Conseil National de Recherches Canada (CNRC), ITER Organization, Consorzio RFX, Associazione Euratom/ENEA sulla Fusione (RFX), Italian National Agency for New Technologies, Energy and Sustainable Economic Development (ENEA), EUROfus Program Management Unit PMU, European Fusion Development Agreement [Garching bei München] ( EFDA-CSU), ITER [St. Paul-lez-Durance], ITER, H. Niewodniczanski Institute of Nuclear Physics, Polska Akademia Nauk (PAN), Maladies chroniques, santé perçue, et processus d'adaptation (APEMAC), Université de Lorraine (UL), Cités, Territoires, Environnement et Sociétés (CITERES), Université de Tours-Centre National de la Recherche Scientifique (CNRS), Euratom/UKAEA Fusion Assoc., Magnetic Sensor laboratory [Lviv] (MSL), National Polytechnic University of Lviv (LPNU), Bar-Ilan University [Israël], The National Research Nuclear University MEPhI (Moscow Engineering Physics Institute) [Moscow, Russia], Institute of Energy and Climate Research - Plasma Physics (IEK-4), Forschungszentrum Jülich GmbH, Institute for Problems of Material Science, National Academy of Sciences of Ukraine (NASU), Institute of Plasma Physics [Praha], Czech Academy of Sciences [Prague] (ASCR), Istituto di Fisica del Plasma, EURATOM-ENEA-CNR Association, Consiglio Nazionale delle Ricerche [Roma] (CNR), Physique des interactions ioniques et moléculaires (PIIM), Aix Marseille Université (AMU)-Centre National de la Recherche Scientifique (CNRS), Dipartimento di Informatica Sistemi e Produzione, University of Rome Tor Vergata (DISP), Università degli Studi di Roma Tor Vergata [Roma], Département Méthodes et Modèles Mathématiques pour l'Industrie (3MI-ENSMSE), École des Mines de Saint-Étienne (Mines Saint-Étienne MSE), Institut Mines-Télécom [Paris] (IMT)-Institut Mines-Télécom [Paris] (IMT)-Centre G2I, Instituto de Plasmas e Fusão Nuclear [Lisboa] (IPFN), Instituto Superior Técnico, Universidade Técnica de Lisboa (IST), Institute for Plasma Research, Bhat, Gandhinagar India, Jet Propulsion Laboratory (JPL), NASA-California Institute of Technology (CALTECH), Institute of Plasma Physics and Laser Microfusion [Warsaw] (IPPLM), Dutch Institute for Fundamental Energy Research [Eindhoven] (DIFFER), Astrophysics Research Centre [Belfast] (ARC), Queen's University [Belfast] (QUB), Associazone EURATOM ENEA sulla Fusione, EURATOM, Laboratoire de physique des plasmas de l'ERM, Laboratorium voor plasmafysica van de KMS (LPP ERM KMS), Ecole Royale Militaire / Koninklijke Militaire School (ERM KMS), Centro de Investigaciones Energéticas Medioambientales y Tecnológicas [Madrid] (CIEMAT), Institut für Physik, University of Basel (Unibas), Institute of Plasma Physics, Association Euratom/IPP.CR (IPP PRAGUE), Institut Jean Lamour (IJL), Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS), Dutch Institute for Fundamental Energy Research [Nieuwegein] (DIFFER), Dipartimento di Energia [Milano] (DENG), Politecnico di Milano [Milan] (POLIMI), NIPNE -Bucharest-Magurele (NIPNE), NIPNE, Laboratory for Plasma Physics (LPP), Ecole Polytechnique Fédérale de Lausanne (EPFL), Département d'Astrophysique, de physique des Particules, de physique Nucléaire et de l'Instrumentation Associée (DAPNIA), Centre de Recherches en Physique des Plasmas (CRPP), Laboratoire Jean Alexandre Dieudonné (JAD), Université Nice Sophia Antipolis (... - 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Centro Nacional de Supercomputacion (BSC - CNS), Service des Réacteurs et de Mathématiques Appliquées (SERMA), Département de Modélisation des Systèmes et Structures (DM2S), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-CEA-Direction de l'Energie Nucléaire (CEA-DEN), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, UMR CNRS 8179, Centre National de la Recherche Scientifique (CNRS)-Université de Lille, Sciences et Technologies, Institut de Génétique Moléculaire de Montpellier (IGMM), Centre National de la Recherche Scientifique (CNRS)-Université de Montpellier (UM), Institut Charles Sadron (ICS), Université de Strasbourg (UNISTRA)-Centre National de la Recherche Scientifique (CNRS)-Matériaux et nanosciences d'Alsace, Université de Strasbourg (UNISTRA)-Université de Haute-Alsace (UHA) Mulhouse - Colmar (Université de Haute-Alsace (UHA))-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Université de Strasbourg (UNISTRA)-Université de Haute-Alsace (UHA) Mulhouse - Colmar (Université de Haute-Alsace (UHA))-Institut National de la Santé et de la Recherche Médicale (INSERM)-Centre National de la Recherche Scientifique (CNRS)-Réseau nanophotonique et optique, Université de Strasbourg (UNISTRA)-Université de Haute-Alsace (UHA) Mulhouse - Colmar (Université de Haute-Alsace (UHA))-Centre National de la Recherche Scientifique (CNRS)-Université de Strasbourg (UNISTRA), Department of Electronics, Politecnico di Torino [Torino] (Polito), Max Planck Institute for Plasma physics (IPP-MPG), Max-Planck-Gesellschaft, Nagoya University, Laboratoire de Physique des Plasmas (LPP), Université Paris-Sud - Paris 11 (UP11)-Université Pierre et Marie Curie - Paris 6 (UPMC)-Observatoire de Paris, PSL Research University (PSL)-PSL Research University (PSL)-École polytechnique (X)-Sorbonne Universités-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), Photonics and photonic materials group, Departement of Physics, University of bath, University of Bath [Bath], Consorzio RFX Associazione EURATOM ENEA per la Fusione, EUROfusion Consortium, JET, Center for Energy Research, Department of Mechanical and Aerospace Engineering (CER), University of California [San Diego] (UC San Diego), University of California-University of California, Università degli Studi di Milano-Bicocca [Milano] (UNIMIB), Department of Physics and Helsinki Institute of Physics, Institute for Astronomy [Honolulu], University of Hawai‘i [Mānoa] (UHM), Aix Marseille Université (AMU), Department of General Surgery, University Hospital Aintree, Science des Procédés Céramiques et de Traitements de Surface (SPCTS), Université de Limoges (UNILIM)-Ecole Nationale Supérieure de Céramique Industrielle (ENSCI)-Institut des Procédés Appliqués aux Matériaux (IPAM), Université de Limoges (UNILIM)-Université de Limoges (UNILIM)-Institut de Chimie du CNRS (INC)-Centre National de la Recherche Scientifique (CNRS), Centre Hospitalier Régional Universitaire [Montpellier] (CHRU Montpellier), Uppsala University, Section of Theoretical Physics, Association EURATOM-Hellenic Republic-University of Ioannina, University of Colorado Anschutz [Aurora], Indian Institute of Technology Madras (IIT Madras), Novel Materials & Structural Chemistry Division (NMSCD), Bhabha Atomic Research Center (BARC), Government of India, Department of Atomic Energy-Government of India, Department of Atomic Energy, Italian National agency for new technologies, Energy and sustainable economic development [Frascati] (ENEA), Dipartimento di Fisica G. Occhialini, Universit`a Milano-Bicocca and INFN, Centre oscar lambert, service d'hématologie chu, INFM and L-NESS, Dipartimento di Fisica del Politecnico di Milano, National Institute for Nuclear Physics (INFN), Centre de résonance magnétique biologique et médicale (CRMBM), Aix Marseille Université (AMU)-Assistance Publique - Hôpitaux de Marseille (APHM)-Centre National de la Recherche Scientifique (CNRS), Département d'Astrophysique (ex SAP) (DAP), Institut de Recherches sur les lois Fondamentales de l'Univers (IRFU), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay, Dipartimento di Scienze della Terra [Trieste], Università degli studi di Trieste, Dipartimento di Ingegneria Elettrica e delle Tecnologie dell'Informazione [Napoli] (DIETI), Università degli studi della Tuscia [Viterbo], Soltan Institute for Nuclear Studies, Laboratoire d'Etude des Matériaux en Milieux Agressifs (LEMMA), Université de La Rochelle (ULR), ISL, Blackett Laboratory, Imperial College London, Université de Rouen Normandie (UNIROUEN), Normandie Université (NU), Mullard Space Science Laboratory (MSSL), University College of London [London] (UCL), Jozef Stefan Institute [Ljubljana] (IJS), National Institute for Research and Development for Cryogenic and Isotopic Technologies [Valcea] (ICSI), Hydrosystèmes et bioprocédés (UR HBAN), Institut national de recherche en sciences et technologies pour l'environnement et l'agriculture (IRSTEA), Service de réanimation médicale, Assistance publique - Hôpitaux de Paris (AP-HP) (APHP)-Université Paris Diderot - Paris 7 (UPD7)-Groupe Hospitalier Saint Louis - Lariboisière - Fernand Widal [Paris], Assistance publique - Hôpitaux de Paris (AP-HP) (APHP), Unité de Recherche sur les Maladies Infectieuses Tropicales Emergentes (URMITE), Unité de Recherche sur les Maladies Infectieuses et Tropicales Emergentes (URMITE), Institut de Recherche pour le Développement (IRD)-Aix Marseille Université (AMU)-Institut National de la Santé et de la Recherche Médicale (INSERM)-IFR48, INSB-INSB-Centre National de la Recherche Scientifique (CNRS)-Institut de Recherche pour le Développement (IRD)-Aix Marseille Université (AMU)-Institut National de la Santé et de la Recherche Médicale (INSERM)-IFR48, INSB-INSB-Centre National de la Recherche Scientifique (CNRS), EURATOM-VR Fusion Assoc., Chalmers University of Technology [Göteborg], Faculty of Mathematics, Physics and Informatics [Bratislava], Comenius University [Bratislava], Department of Physics and Applied Physics (DPAP), University of Strathclyde, Institute of Oceanology [China], Technical Research Centre of Finland, JRC Institute for Transuranium Elements [Karlsruhe] (ITU ), European Commission - Joint Research Centre [Karlsruhe] (JRC), National Center for Scientific Research 'Demokritos' (NCSR), Laboratorio Nacional de Fusión [Madrid], Asociación Euratom-CIEMAT, Michigan State University [East Lansing], Michigan State University System, Unit of Lymphoid Malignancies, San Raffaele Scientific Institute, Università degli studi di Cassino e del Lazio Meridionale (UNICAS), Health and Safety Laboratory, Centre de Nanosciences et de Nanotechnologies [Orsay] (C2N), Université Paris-Sud - Paris 11 (UP11)-Université Paris-Saclay-Centre National de la Recherche Scientifique (CNRS), California Institute of Technology (CALTECH)-NASA, Université de Lille, Sciences et Technologies-Centre National de la Recherche Scientifique (CNRS), Science et Ingénierie des Matériaux et Procédés (SIMaP), Université Joseph Fourier - Grenoble 1 (UJF)-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP)-Institut National Polytechnique de Grenoble (INPG)-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes (UGA), Université Paris-Sud - Paris 11 (UP11)-Centre National de la Recherche Scientifique (CNRS)-Université Paris-Saclay, COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-COMUE Université Côte d'Azur (2015 - 2019) (COMUE UCA)-Centre National de la Recherche Scientifique (CNRS), Observatoire des Sciences de l'Univers de Grenoble (OSUG), Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP)-Institut national de recherche en sciences et technologies pour l'environnement et l'agriculture (IRSTEA)-Université Joseph Fourier - Grenoble 1 (UJF)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes (UGA)-Université Savoie Mont Blanc (USMB [Université de Savoie] [Université de Chambéry])-Institut polytechnique de Grenoble - Grenoble Institute of Technology (Grenoble INP)-Institut national de recherche en sciences et technologies pour l'environnement et l'agriculture (IRSTEA)-Université Joseph Fourier - Grenoble 1 (UJF)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS)-Université Grenoble Alpes (UGA)-Centre National d'Études Spatiales [Toulouse] (CNES)-Centre National de la Recherche Scientifique (CNRS), Université de Lille-Centre National de la Recherche Scientifique (CNRS), CEA-Direction des Energies (ex-Direction de l'Energie Nucléaire) (CEA-DES (ex-DEN)), Laboratoire de Probabilités, Statistiques et Modélisations (LPSM (UMR_8001)), Université Paris Diderot - Paris 7 (UPD7)-Sorbonne Université (SU)-Centre National de la Recherche Scientifique (CNRS), Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Université Paris-Saclay-CEA-Direction des Energies (ex-Direction de l'Energie Nucléaire) (CEA-DES (ex-DEN)), Matériaux et nanosciences d'Alsace, Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Haute-Alsace (UHA) Mulhouse - Colmar (Université de Haute-Alsace (UHA))-Université de Strasbourg (UNISTRA)-Centre National de la Recherche Scientifique (CNRS)-Institut National de la Santé et de la Recherche Médicale (INSERM)-Université de Haute-Alsace (UHA) Mulhouse - Colmar (Université de Haute-Alsace (UHA))-Université de Strasbourg (UNISTRA)-Réseau nanophotonique et optique, Centre National de la Recherche Scientifique (CNRS)-Université de Strasbourg (UNISTRA)-Université de Haute-Alsace (UHA) Mulhouse - Colmar (Université de Haute-Alsace (UHA))-Université de Strasbourg (UNISTRA)-Centre National de la Recherche Scientifique (CNRS)-Université de Strasbourg (UNISTRA), Istituto Nazionale di Fisica Nucleare (INFN), Université Paris Diderot - Paris 7 (UPD7)-Groupe Hospitalier Saint Louis - Lariboisière - Fernand Widal [Paris], Assistance publique - Hôpitaux de Paris (AP-HP) (APHP)-Assistance publique - Hôpitaux de Paris (AP-HP) (APHP), CentraleSupélec-Centre National de la Recherche Scientifique (CNRS)-Université Paris-Saclay, and Centre National de la Recherche Scientifique (CNRS)-Aix Marseille Université (AMU)-Assistance Publique - Hôpitaux de Marseille (APHM)
- Subjects
[PHYS.PHYS.PHYS-PLASM-PH]Physics [physics]/Physics [physics]/Plasma Physics [physics.plasm-ph] ,ComputingMilieux_MISCELLANEOUS - Abstract
International audience
- Published
- 2019
22. A standard data access layer for fusion devices R&D programs
- Author
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Neto, A., Fernandes, H., Alves, D., Valcárcel, D.F., Carvalho, B.B., Ferreira, J., Vega, J., Sánchez, E., Peña, A., Hron, M., and Varandas, C.A.F.
- Published
- 2007
- Full Text
- View/download PDF
23. FireSignal—Data acquisition and control system software
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Neto, A., Fernandes, H., Duarte, A., Carvalho, B.B., Sousa, J., Valcárcel, D.F., Hron, M., and Varandas, C.A.F.
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- 2007
- Full Text
- View/download PDF
24. Fast feedback control for plasma positioning with a PCI hybrid DSP/FPGA board
- Author
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Valcarcel, D.F., Carvalho, I.S., Carvalho, B.B., Fernandes, H., Sousa, J., and Varandas, C.A.F.
- Subjects
Real-time control -- Analysis ,Real-time systems -- Analysis ,Plasma physics -- Research ,Real-time system ,Business ,Electronics ,Electronics and electrical industries - Abstract
The need to control in real-time the plasma parameters in fusion devices leads to the development of algorithms requiring intensive computation and providing results on a few hundred microseconds. The present work's objective was the implementation of the current filaments method (CF) to model in real-time the ISTTOK plasma shape and position. The hardware used was the on site developed PCI-TR-256 hardware configurable module, which includes the latest technology in DSP and FPGA. The algorithm estimates the position of the plasma column and generates the control signals for the vertical magnetic field actuators. The main advantage of this system is to provide a digital approach to feedback plasma position control with similar cycle times to those of analog systems but allowing flexible, user defined, algorithms. Index Terms--Plasma position, real-time control, tokamak.
- Published
- 2006
25. Efficient use of VME modules in TCABR
- Author
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Fagundes, A.N., Carvalho, B.B., Correia, M., and Sousa, J.
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- 2006
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26. Extraction of the plasma current contribution from the numerically integrated magnetic signals in ISTTOK
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Corona, D., primary, Torres, A., additional, Aymerich, E., additional, Cianciulli, A., additional, Falco, A. De, additional, Carvalho, B.B., additional, Figueredo, H., additional, Alves, H., additional, and Fernandes, H., additional
- Published
- 2020
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27. MTCA control and data acquisition platform for Plasma Diagnostics
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Sousa, J., primary, Correia, M., additional, Pereira, R.C., additional, Rodrigues, A.P., additional, Carvalho, P.F., additional, Combo, A., additional, Santos, B., additional, Carvalho, B.B., additional, Batista, A.J.N., additional, Dias, R., additional, and Gonçalves, B., additional
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- 2019
- Full Text
- View/download PDF
28. On-site developed components for control and data acquisition on next generation fusion devices
- Author
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Varandas, C.A.F., primary, Carvalho, B.B., additional, Correia, C., additional, Loureiro, C., additional, Malaquias, J.L., additional, Rodrigues, A.P., additional, and Sousa, J., additional
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- 1997
- Full Text
- View/download PDF
29. Mineral insulated cable assessment for inductive magnetic diagnostic sensors of a hot-wall tokamak
- Author
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Torres, A., primary, Kovarik, K., additional, Markovic, T., additional, Adamek, J., additional, Weinzettl, V., additional, Carvalho, B.B., additional, Fernandes, H., additional, Hron, M., additional, and Panek, R., additional
- Published
- 2019
- Full Text
- View/download PDF
30. ISTTOK poloidal field coils positioning assessment
- Author
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Torres, A., primary, Carvalho, B.B., additional, Corona, D., additional, Figueiredo, H., additional, Alves, H., additional, and Fernandes, H., additional
- Published
- 2019
- Full Text
- View/download PDF
31. Effect of temperature on the electrochemical synthesis of MnO 2 recycled from spent Zn–MnO 2 alkaline batteries and application of recycled MnO 2 as electrochemical pseudocapacitors
- Author
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Carvalho, B.B., primary, Pegoretti, V.C.B., additional, Celante, V.G., additional, Dixini, P.V.M., additional, Gastelois, P.L., additional, Macedo, W.A.A., additional, and Freitas, M.B.J.G., additional
- Published
- 2017
- Full Text
- View/download PDF
32. Conceptual architecture of the plant system controller for the magnetics diagnostic of the ITER tokamak
- Author
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Neto, A.C., primary, Arshad, S., additional, Sartori, F., additional, Vayakis, G., additional, Ambrosino, G., additional, Batista, A., additional, Bas, I., additional, Campagnolo, R., additional, Carvalho, B.B., additional, De Magneval, G., additional, De Tommasi, G., additional, Dominguez, O., additional, Fernandez-Hernando, J.L., additional, Pironti, A., additional, Simrock, S., additional, Sousa, J., additional, Sterle, C., additional, Vergara, A., additional, Winter, A., additional, and Zabeo, L., additional
- Published
- 2015
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33. Measurement of plasma centroid position on ISTTOK using cleaned magnetic signals
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Kudlacek, O., primary, Finotti, C., additional, Marchiori, G., additional, Carvalho, B.B., additional, Henriques, R., additional, Figuereido, H., additional, and Fernandes, H., additional
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- 2015
- Full Text
- View/download PDF
34. Upgrade of the COMPASS tokamak real-time control system
- Author
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Janky, F., primary, Havlicek, J., additional, Batista, A.J.N., additional, Kudlacek, O., additional, Seidl, J., additional, Neto, A.C., additional, Pipek, J., additional, Hron, M., additional, Mikulin, O., additional, Duarte, A.S., additional, Carvalho, B.B., additional, Stockel, J., additional, and Panek, R., additional
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- 2014
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35. Overview of the COMPASS CODAC system
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Hron, M., primary, Janky, F., additional, Pipek, J., additional, Sousa, J., additional, Carvalho, B.B., additional, Fernandes, H., additional, Vondracek, P., additional, Cahyna, P., additional, Urban, J., additional, Paprok, R., additional, Mikulín, O., additional, Aftanas, M., additional, Panek, R., additional, Havlicek, J., additional, Fortunato, J., additional, Batista, A.J.N., additional, Santos, B.A., additional, Duarte, A., additional, Pereira, T., additional, and Valcarcel, D., additional
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- 2014
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- View/download PDF
36. Real-time algorithms for JET hard X-ray and gamma-ray profile monitor
- Author
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Fernandes, A., primary, Pereira, R.C., additional, Valcárcel, D.F., additional, Alves, D., additional, Carvalho, B.B., additional, Sousa, J., additional, Kiptily, V., additional, Correia, C.M.B.A., additional, and Gonçalves, B., additional
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- 2014
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- View/download PDF
37. The JET real-time plasma-wall load monitoring system
- Author
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Valcárcel, D.F., primary, Alves, D., additional, Card, P., additional, Carvalho, B.B., additional, Devaux, S., additional, Felton, R., additional, Goodyear, A., additional, Lomas, P.J., additional, Maviglia, F., additional, McCullen, P., additional, Reux, C., additional, Rimini, F., additional, Stephen, A., additional, Zabeo, L., additional, and Zastrow, K-D., additional
- Published
- 2014
- Full Text
- View/download PDF
38. ITER prototype fast plant system controller based on ATCA platform
- Author
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Goncalves, B., primary, Sousa, J., additional, Carvalho, B.B., additional, Batista, A., additional, Neto, A., additional, Santos, B., additional, Duarte, A., additional, Valcarcel, D., additional, Alves, D., additional, Correia, M., additional, Rodrigues, A. P., additional, Carvalho, P.F., additional, Fortunato, J., additional, Carvalho, P. J., additional, Ruiz, M., additional, Vega, J., additional, Castro, R., additional, Lopez, J.M., additional, Utzel, N., additional, Makijarvi, P., additional, Leong, C., additional, Bexiga, V., additional, Teixeira, I.C., additional, Teixeira, J.P., additional, Barbalace, A., additional, Lousa, P., additional, Godinho, J., additional, and Mota, P., additional
- Published
- 2011
- Full Text
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39. Integration of EPICS subsystem control on FireSignal
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Duarte, A.S., primary, Carvalho, P.R., additional, Santos, B., additional, Carvalho, B.B., additional, Pereira, T., additional, Fortunato, J., additional, Sousa, J., additional, and Fernandes, H., additional
- Published
- 2010
- Full Text
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40. An overview of the ATCA® timing and synchronization resources for Control and Data Acquisition
- Author
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Sousa, J., primary, Fernandes, A.M., additional, Batista, A.J.N., additional, Correia, M., additional, Fernandes, H., additional, Carvalho, B.B., additional, Goncalves, B., additional, and Varandas, C.A.F., additional
- Published
- 2010
- Full Text
- View/download PDF
41. ATCA fast data acquisition and processing system for JET gamma-ray cameras upgrade diagnostic
- Author
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Pereira, R. C., primary, Fernandes, A. M., additional, Neto, A., additional, Sousa, J., additional, Batista, A.J., additional, Carvalho, B.B., additional, Correia, C. M. B. A., additional, and Varandas, C. A. F., additional
- Published
- 2009
- Full Text
- View/download PDF
42. Multi-Rate DSP/FPGA-Based Real-Time Acquisition and Control on the ISTTOK Tokamak
- Author
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Carvalho, B.B., primary, Batista, A.J.N., additional, Patricio, F., additional, Correia, M., additional, Fernandes, H., additional, and Sousa, J., additional
- Published
- 2007
- Full Text
- View/download PDF
43. Fast feedback control for plasma positioning with a PCI hybrid DSP/FPGA board
- Author
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Valcarcel, D.F., primary, Carvalho, I.S., additional, Carvalho, B.B., additional, Fernandes, H., additional, Sousa, J., additional, and Varandas, C.A.F., additional
- Published
- 2005
- Full Text
- View/download PDF
44. A cooperative JAVA Web-start environment for shared multi-user remote operation
- Author
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Neto, A., primary, Fernandes, H., additional, Carvalho, B.B., additional, Sousa, J., additional, and Varandas, C.A.F., additional
- Published
- 2005
- Full Text
- View/download PDF
45. EPICS as a MARTe configuration environment.
- Author
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Valca?rcel, D.F., Barbalace, A., Neto, A., Duarte, A.S., Alves, D., Carvalho, B.B., Carvalho, P.J., Sousa, J., Fernandes, H., Gon?alves, B., Sartori, F., and Manduchi, G.
- Published
- 2010
- Full Text
- View/download PDF
46. The COMPASS tokamak plasma control software performance.
- Author
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Valca?rcel, D.F., Neto, A., Carvalho, I.S., Carvalho, B.B., Fernandes, H., Sousa, J., Janky, F., Havlicek, J., Ben?o, R., Horacek, J., Hron, M., and Pa?nek, R.
- Published
- 2010
- Full Text
- View/download PDF
47. HDL based FPGA interface library for data acquisition and multipurpose real time algorithm processing.
- Author
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Fernandes, A.M., Pereira, R.C., Sousa, J., Batista, A.J.N., Combo, A., Carvalho, B.B., Correia, C.M.B.A., and Varandas, C.A.F.
- Published
- 2010
- Full Text
- View/download PDF
48. ATCA control system hardware for the plasma vertical stabilization in the JET tokamak.
- Author
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Batista, A.J.N., Neto, A., Correia, M., Fernandes, A.M., Carvalho, B.B., Fortunato, J.C., Sousa, J., Varandas, C.A.F., Sartori, F., and Jennison, M.
- Published
- 2009
- Full Text
- View/download PDF
49. Fast digital link for a tokamak current source control.
- Author
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Carvalho, I.S., Valcarcel, D.F., Fernandes, H., Carvalho, B.B., Sousa, J., Pironti, A., and De Tommasi, G.
- Published
- 2008
- Full Text
- View/download PDF
50. On-site developed components for control and data acquisition on next generation fusion devices
- Author
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Varandas, C.A.F, primary, Carvalho, B.B, additional, Correia, C, additional, Loureiro, C, additional, Malaquias, J.L, additional, Rodrigues, A.P, additional, and Sousa, J, additional
- Published
- 1997
- Full Text
- View/download PDF
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