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Discrete Effects in Stellar Feedback: Individual Supernovae, Hypernovae, and IMF Sampling in Dwarf Galaxies

, , , , , , , , and . (2017)cite arxiv:1712.02795Comment: 9 pages, 4 figures.

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Feedback first: the surprisingly weak effects of magnetic fields, viscosity, conduction, and metal diffusion on galaxy formation, , , , , , and . (Jul 18, 2016)FIRE-2 Simulations: Physics versus Numerics in Galaxy Formation, , , , , , , , , and 18 other author(s). (2017)cite arxiv:1702.06148Comment: 66 pages, 39 figures. Simulation animations and visualizations available at http://www.tapir.caltech.edu/~phopkins/Site/animations and http://fire.northwestern.edu Paper includes complete FIRE algorithms and public ICs (http://www.tapir.caltech.edu/~phopkins/publicICs).Discrete Effects in Stellar Feedback: Individual Supernovae, Hypernovae, and IMF Sampling in Dwarf Galaxies, , , , , , , , and . (2017)cite arxiv:1712.02795Comment: 9 pages, 4 figures.Local positive feedback in the overall negative: the impact of quasar winds on star formation in the FIRE cosmological simulations, , , , , , , , , and 3 other author(s). (2023)cite arxiv:2301.01784Comment: 17 pages, 12 figures. Accepted for publication in MNRAS.But What About... Cosmic Rays, Magnetic Fields, Conduction, & Viscosity in Galaxy Formation, , , , , , , , and . (2019)cite arxiv:1905.04321Comment: 33 pages, 23 figures, submitted to MNRAS.Exploring supermassive black hole physics and galaxy quenching across halo mass in FIRE cosmological zoom simulations, , , , , , , , , and . (2022)cite arxiv:2203.06201Comment: 18 pages, 9 figures. Submitted to MNRAS, comments welcome.