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  2. Reactive gas atomization processing for Fe-based ODS alloys

    Rieken, J. R., Anderson, I. E., Kramer, M. J., Odette, G. R., Stergar, E., Haney, E. & Gavrilov, S., Sep 2012, In: Journal of Nuclear Materials. 428, 1-3, p. 65-75

    Research output: Contribution to journalArticlepeer-review

  3. Reactive spark plasma sintering of Ti3SnC2, Zr3SnC2 and Hf3SnC2 using Fe, Co or Ni additives

    Lapauw, T., Tunca, B., Cabioc'h, T., Vleugels, J. & Lambrinou, K., 24 Jun 2017, In: Journal of the European Ceramic Society. 37, p. 4539 - 4545 7 p.

    Research output: Contribution to journalArticlepeer-review

  4. Reactive transport codes for subsurface environmental simulation

    Jacques, D., 1 Jun 2015, In: Computational Geosciences. 19, 3, p. 445-478

    Research output: Contribution to journalArticlepeer-review

  5. Reactive transport modelling to infer changes in soil hydraulic properties induced by non-conventional water irrigation

    Valdes-Abellan, J., Jiménez-Martínez, J., Candela, L., Jacques, D., Kohfahl, C. & Tamoh, K., 1 Jun 2017, In: Journal of Hydrology. 549, p. 114-124 11 p.

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  6. Reactivity measurement in subcritical nuclear systems: Results of the H2020 MYRTE project

    Bécares, V., Villamarin, D., Baeten, P., Billebaud, A., Chevret, T., Kochetkov, A., Krása, A., Lecolley, F-R., Lehaut, G., Marie, N., Vittiglio, G. & Wagemans, J., 1 Apr 2019, In: Nuclear España. April 2019, p. 74-78 4 p.

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  7. Reactivity monitoring of the accelerator driven VENUS-F subcritical reactor with the ‘‘current-to-flux” method

    Marie, N., Lecouey, J-L., Lehaut, G., Chevret, T., Billebaud, A., Chabod, S., Doligez, X., Kochetkov, A., Krása, A., Lecolley, F-R., Mellier, F., Uyttenhove, W., Vittiglio, G. & Wagemans, J., 3 Jan 2019, In: Annals of nuclear energy. 128, p. 12-23

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  8. Reactor dosimetry with niobium

    Wagemans, J., Borms, L., Willekens, M., Oeyen, J., Moens, A., Kochkin, V. & D'hondt, P., Feb 2006, In: Journal of ASTM International. 3, 2, p. 1-8

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  9. Real-Time Fibered Optically Stimulated Luminescence Dosimeter Based on SrS:Ce,Sm Phosphor

    Benoit, D., Garcia, P., Matias Vaillé, S., Ravotti, F., Vaillé, JR., Glaser, M., Brichard, B., Fernandez, A., Chatry, C., Dusseau, L. & Van Uffelen, M., Aug 2008, In: IEEE transactions on nuclear Science. 55, 4, p. 2154-2160

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  10. Real-time two dimensional dosimetry using Al2O3:C and Al2O3:C,Mg films

    De Freitas Nascimento, L., Goossens, J., Leblans, P., Sterckx, P., Vanhavere, F., Struelens, L., Akselrod, M. & Verellen, D., 10 Dec 2020, In: Sensors and Actuators A: Physical. 318, p. 1-11 11 p., 112491.

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  11. Reasons why Plutonium 242 is the best fission chamber deposit to monitor the fast component of a high neutron flux

    Filliatre, P., Oriol, L., Jammes, C., Vermeeren, L. & Wéber, M., 11 Aug 2008, In: Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 593, 3, p. 510-518

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