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The Hydrangea simulations: galaxy formation in and around massive clusters, , , , , , , , , и 5 other автор(ы). (2017)cite arxiv:1703.10610Comment: 22 pages, 15 figures (18 pages, 14 figures without appendices); submitted to MNRAS.The origin of the enhanced metallicity of satellite galaxies, , , , , , , и . (2016)cite arxiv:1609.03379Comment: 22 pages, 15 figures; accepted by MNRAS.The environmental dependence of HI in galaxies in the EAGLE simulations, , , , , , и . (2016)cite arxiv:1606.06288Comment: 23 pages, 16 figures, accepted for publication by MNRAS.An Efficient SIMD Implementation of Pseudo-Verlet Lists for Neighbour Interactions in Particle-Based Codes., , , , и . PARCO, том 32 из Advances in Parallel Computing, стр. 507-516. IOS Press, (2017)Numerical overcooling in shocks, , , и . (2011)cite arxiv:1106.0306Comment: 16 pages, 11 figures, accepted into MNRAS.The distribution of neutral hydrogen around high-redshift galaxies and quasars in the EAGLE simulation, , , , , , и . (2015)cite arxiv:1503.05553Comment: 24 pages, 20 figures; submitted to MNRAS.The origin of the $\alpha$-enhancement of massive galaxies, , , , , и . (2016)cite arxiv:1603.05653Comment: 5 pages, 3 figures, submitted to MNRAS Letters.The impact of dark energy on galaxy formation. What does the future of our Universe hold?, , , , , , , , и . (2017)cite arxiv:1710.06861Comment: Submitted to MNRAS. 16 pages, 11 figures. The EAGLE simulation data is available at http://icc.dur.ac.uk/Eagle/database.php.SWIFT: Maintaining weak-scalability with a dynamic range of 104 in time-step size to harness extreme adaptivity., , , , и . CoRR, (2018)An Efficient SIMD Implementation of Pseudo-Verlet Lists for Neighbour Interactions in Particle-Based Codes., , , , и . CoRR, (2018)