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by Abbott, B.P and Bloemen, S and Canizares, P and Falcke, H and Fender, R.P and Ghosh, S and Groot, P and Hinderer, T and Hörandel, J.R and Jonker, P.G and Kostrzewa-Rutkowska, Z and Nelemans, G and Nichols, D and Nissanke, S and Schmidt, P and Timmermans, C and Vliet, A.R. van and Williamson, A.R and et al and Las Cumbres Observatory Grp and ATCA Australia Telescope and LIGO Sci Collaboration & Virgo and KU Collaboration and GROUND and RIMAS RATIR and AGILE Team and ASKAP Australian SKA Pathfinder and IPN Collaboration and LOFAR Collaboration and Salt Grp and VINROUGE Collaboration and Nordic Optical Telescope and MAXI Team and Fermi GBM and Fermi Large Area Telescope and J-GEM and IceCube Collaboration and BOOTES Collaboration and Pi Sky Collaboration and Pan-STARRS and LWA Long Wavelength Array and SKA South Africa MeerKAT and CALET Collaboration and AstroSat Cadmium Zinc Telluride and HAWC Collaboration and GROWTH JAGWAR CALTECH and ATLAS and ePESSTO and DFN Desert Fireball Network and Insight-Hxmt Collaboration and Texas Tech Univ and MASTER Collaboration and TZAC Consortium and Dark Energy Camera GW-EM and GRAWITA GRAvitational Wave and INTERGRAL and Toros Transient Robotic Observat and Chandra Team McGill Univ and H E S S Collaboration and Swift Collaboration and Pierre Auger Collaboration and OzGrav DWF Deeper Wider Faster and IKI-GW Follow-up Collaboration and Euro VLBI Team and High Time Resolution Universe and ANTARES Collaboration and DLT40 Collaboration and ALMA Collaboration and The 1M2H Team and MWA Murchison Widefield Array and The Insight-HXMT Collaboration and The MAXI Team and The Swift Collaboration and The Fermi Large Area Telescope Collaboration and GROND and TOROS: Transient Robotic Observatory of the South Collaboration and Texas Tech University and OzGrav, DWF (Deeper, Wider, Faster program), AST3, and CAASTRO Collaborations and MWA: Murchison Widefield Array and GROWTH, JAGWAR, Caltech-NRAO, TTU-NRAO, and NuSTAR Collaborations and INTEGRAL and RIMAS and RATIR and Pi of the Sky Collaboration and The Chandra Team at McGill University and LWA: Long Wavelength Array and The DLT40 Collaboration and DFN: Desert Fireball Network and LIGO Scientific Collaboration and Virgo Collaboration and ASKAP: Australian SKA Pathfinder and AstroSat Cadmium Zinc Telluride Imager Team and The BOOTES Collaboration and The Pierre Auger Collaboration and ATCA: Australia Telescope Compact Array and SALT Group and H.E.S.S. Collaboration and The Dark Energy Camera GW-EM Collaboration and the DES Collaboration and High Time Resolution Universe Survey and Las Cumbres Observatory Group and GRAWITA: GRAvitational Wave Inaf TeAm and The VINROUGE Collaboration and The CALET Collaboration and SLAC National Accelerator Lab., Menlo Park, CA (United States) and Brookhaven National Lab. (BNL), Upton, NY (United States) and Los Alamos National Lab. (LANL), Los Alamos, NM (United States) and Fermi National Accelerator Lab. (FNAL), Batavia, IL (United States) and Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States) and Lawrence Berkeley National Laboratory-National Energy Research Scientific Computing Center (NERSC) and Lawrence Berkeley National Lab. (LBNL), Berkeley, CA (United States) and Fysikum and Naturvetenskapliga fakulteten and Institutionen för astronomi and Stockholms universitet and Oskar Klein-centrum för kosmopartikelfysik (OKC)
Astrophysical Journal Letters, ISSN 2041-8205, 2017, Volume 848, Issue 2, pp. 1 - 59
Journal Article
by Miguel, R. Núñez and Sanders, J and Furmaniak, J and Smith, B. Rees and Li, C and Menconi, F and Osman, R and Concepcion, E and David, C and Tomer, Y and Braun, D and Schweizer, U and Nicola, J.P and Masini-Repiso, A.M and Chaker, L and Wolters, F and Bos, D and Dehghan, A and Korevaar, T.I and Korevaar, T.I and Hofman, A and Franco, O and Vernooij, M and Ikram, M and Peeters, R and Peeters, R and Kurmann, A.A and Serra, M and Hawkins, F and Rankin, S and Mori, M and Astapova, I and Ullas, S and LIn, S and Bilodeau, M and Rossant, J and Jean, J.C and Ikonomou, L and Deterding, R and Shannon, J and Zorn, A and Kotton, D.N and Hollenberg, A and Hollenberg, A and Paz-Filho, G.J and Kaminski, J and Miasaki, F.Y and de Carvalho, G.A and Rovet, J.F and McLelland, V and Wheeler, S and McAndrews, M and Landa, I and Ibrahimpasic, T and Boucai, L and Sinha, R and Knauf, J.A and Shah, R.H and Dogan, S and Ricarte-Filho, J.C and Schultz, N and Berger, M and Sander, C and Ghossein, R.A and Taylor, B.S and Ganly, I and Fagin, J.A and Vietor, N.O and Burman, K and Burman, K and Burman, K and Cooper, D and Hennessey, J and Burch, H and Shi, Y and Zou, M and Baitei, E and Al-Rijjala, R and Parhar, R and Al-Mohanna, F and Kimura, S and Pritchard, C and BinEssa, H and Alzahrani, A and Assiri, A and Meyer, B and Yoon, J and Kwon, H and Kwon, H and Kwon, H and Kim, E and Moon, H and Kwak, J and Bassett, J.H and Nordstrom, K and Butterfield, N.C and Boyde, A and Vennstrom, B and Williams, G.R and Hönes, S and ...
Thyroid, ISSN 1050-7256, 10/2015, Volume 25, Issue S1, pp. P-1 - A-337
Journal Article
Journal of Non-Crystalline Solids, ISSN 0022-3093, 07/2011, Volume 357, Issue 14, pp. 2590 - 2594
Crystallization transformation kinetics in isothermal and non-isothermal (continuous heating) modes were investigated in Cu Zr Al Y bulk metallic glass by... 
Crystallization kinetics | Activation energy | Kissinger and Johnson-Mehl-Avrami methods | Metallic glass
Journal Article
by Bruneel, Fabrice and Tubach, Florence and Mira, Jean-Paul and Houze, Sandrine and Gibot, Sebastien and Huisse, Marie-Genevieve and Megarbane, Bruno and Choquet, Christophe and Corne, Philippe and Peytel, Eric and Villers, Daniel and Camus, Christophe and Bouchaud, Olivier and Caumes, Eric and Girard, Pierre-Marie and Simon, Fabrice and Kalloumeh, Antoine and Roy, Carine and Durand, Remy and Le Bras, Jacques and Matheron, Sophie and Wolff, Michel and Mourvillier, B and Aubron, C and Bouadma, L and Regnier, B and d’Ortenzio, E and Matra, R and Bouvet, E and Tourret, J and Dorchies, J and Males, S and Rioux, C and Flicoteaux, R and Yeni, P and Spingler, F and Kargougou, E and Casalino, E and Ollivier, V and Grandchamp, B and Miri, Y and Fresnoy, E and Grelon, F and Asfar, P and Kouatchet, A and Mercat, A and Joly-Guillou, M.L and Kempf, M and Eveillard, M and Daoudal, P and Royer, A and Runge, I and Mathonnet, A and Boulain, T and Bret, L and Hocqueloux, L and Segalin, J.M and Mille, C and Niang, M and Prazuck, T and Fortin, M and Schortgen, F and Brun Buisson, C and Botterel, F and Bretagne, S and Leroy, O and Georges, H and Meybeck, A and Guery, B and Patoz, P and Dhennain, C and Chakarian, D and Azougagh, K and Bonmarchand, G and Abboud, P and Favennec, L and Lemeland, J.F and Petrognani, R and Nau, A and Puidupin, A and Carpentier, J.P and Garnotel, E and Moalic, J.L and Tual, L and Amathieu, R and Dhonneur, G and N’Diaye, M and Jeantils, V and Chassaignon, C and Guillerm, A.L and Riche, D and Javaud, N and Pevirieri, F and Benkel, J and Luis, D and Bon, M.C and Lenoir, G and Bernot, B and Collignon, A and Bemba, D and ...
Intensive Care Medicine, ISSN 0342-4642, 01/2018, Volume 44, Issue 1, pp. 141 - 143
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 02/2013, Volume 549, pp. 370 - 374
Atomic mobility in as-cast and annealed Cu Zr Ag Al bulk metallic glass samples is analyzed by performing dynamic mechanical analysis. The loss factor is... 
Relaxation | Internal friction | Dynamic mechanical analysis | Bulk metallic glass | Defects
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 12/2014, Volume 615, p. S85-S89
acents Atomic mobility in Zr-based metallic glass were evaluated by DMA and nanoindentation. acents Atomic mobility is reduced by physical aging while... 
Metallic glasses
Journal Article
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 05/2005, Volume 393, Issue 1-2, pp. 223 - 230
The dynamic mechanical response was investigated in a bulk metallic glass Zr Ti Cu Ni Be (called Vit4). Mechanical spectroscopy was performed either using... 
Mechanical spectroscopy | Bulk metallic glass | Visco-elasticity
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 02/2013, Volume 549, p. 370
a* Atomic mobility in Cu.sub.38Zr.sub.46Ag.sub.8Al.sub.8 bulk metallic glass have been investigated by DMA. a* Loss factor is directly connected to the energy... 
Metallic glasses | Zirconium | Analysis
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 04/2020, Volume 820, p. 153119
Journal Article
Journal of Alloys and Compounds, ISSN 0925-8388, 04/2020, Volume 819, p. 152987
Journal Article
The New England Journal of Medicine, ISSN 0028-4793, 03/2016, Volume 374, Issue 10, pp. 940 - 950
Journal Article
Journal Article