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20 results on '"Matthew E. Orr"'

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1. Spiral arms are metal freeways: azimuthal gas-phase metallicity variations in flocculent discs in the FIRE-2 cosmological zoom-in simulations

2. Spatially resolved gas-phase metallicity in FIRE-2 dwarfs: late-time evolution of metallicity relations in simulations with feedback and mergers

3. Reproducing the CO-to-H2 conversion factor in cosmological simulations of Milky-Way-mass galaxies

4. Variations in the slope of the resolved star-forming main sequence: a tool for constraining the mass of star-forming regions

5. Bursting Bubbles: Clustered Supernova Feedback in Local and High-redshift Galaxies

6. Probing Hot Gas Components of Circumgalactic Medium in Cosmological Simulations with the Thermal Sunyaev-Zel'dovich Effect

7. Which AGN jets quench star formation in massive galaxies?

8. Bursting Bubbles: Feedback from Clustered SNe and the Trade-off Between Turbulence and Outflows

9. Live fast, die young: GMC lifetimes in the FIRE cosmological simulations of Milky Way mass galaxies

10. Swirls of FIRE: spatially resolved gas velocity dispersions and star formation rates in FIRE-2 disc environments

11. Pressure balance in the multiphase ISM of cosmologically simulated disk galaxies

12. A Simple Non-equilibrium Feedback Model for Galaxy-Scale Star Formation: Delayed Feedback and SFR Scatter

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

14. The failure of stellar feedback, magnetic fields, conduction, and morphological quenching in maintaining red galaxies

15. Cosmic Rays or Turbulence can Suppress Cooling Flows (Where Thermal Heating or Momentum Injection Fail)

16. SDSS-IV MaNGA:constraints on the conditions for star formation in galaxy discs

17. FIRE-2 Simulations: Physics versus Numerics in Galaxy Formation

18. Stacked star formation rate profiles of bursty galaxies exhibit 'coherent' star formation

19. What FIREs Up Star Formation: the Emergence of the Kennicutt-Schmidt Law from Feedback

20. Fiery Cores: Bursty and Smooth Star Formation Distributions across Galaxy Centers in Cosmological Zoom-in Simulations

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