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Soft matter, ISSN 1744-6848, 2016, Volume 12, Issue 21, pp. 4686 - 4703
Journal Article
Proceedings of the National Academy of Sciences - PNAS, ISSN 1091-6490, 2013, Volume 110, Issue 3, pp. 853 - 858
Journal Article
The Astronomical journal, ISSN 1538-3881, 2018, Volume 156, Issue 4, p. 171
.... Abundance gradients have been derived using Gaia DR2 parallax data, as well as Bayesian distance estimates based upon Gaia DR2 from Bailer-Jones et al. The abundance gradient derived for iron is d[Fe/H]/dR = -0.05 dex kpc(-1), similar to gradients derived in previous studies. 
Galaxy: evolution | stars: variables: Cepheids | stars: abundances | Galaxy: abundances | OXYGEN ABUNDANCES | CARBON | PERIODS | PHASE-DEPENDENT VARIATION | ATMOSPHERIC MOTIONS | ASTRONOMY & ASTROPHYSICS | CHEMICAL-COMPOSITION | YELLOW SUPERGIANTS | NITROGEN | STARS | FUNDAMENTAL PARAMETERS | Iron | Parameters | Parallax | Cepheid variables | Velocity | Stars | Physics - Solar and Stellar Astrophysics
Journal Article
Journal of fluid mechanics, ISSN 0022-1120, 03/2016, Volume 791, pp. 154 - 173
The interaction between the large and the small scales of turbulence is investigated in a mixing layer, at a Reynolds number based on the Taylor microscale (... 
Papers | shear layer turbulence | turbulent flows | turbulence modelling | FREQUENCY-MODULATION | STATISTICS | PHYSICS, FLUIDS & PLASMAS | AMPLITUDE | MODEL | SIMULATION | MOTIONS | MECHANICS | TURBULENCE | THIN SHEAR LAYERS | Fluid mechanics | Flow velocity | Numerical analysis | Turbulent flow | Reynolds number | Correlation | Turbulence | Computational fluid dynamics | Small scale | Fluctuation | Vorticity | Fluid flow
Journal Article
The Astrophysical journal, ISSN 1538-4357, 2018, Volume 865, Issue 1, p. 59
Journal Article