Editorial
Preface
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- 23 May 2013, pp. 1-2
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Introduction
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Betelgeuse – Challenging our Understanding for more than 2000 years
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- 23 May 2013, pp. 5-16
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The past and future evolution of a star like Betelgeuse
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- 23 May 2013, pp. 17-28
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Structure and Evolution of Massive Stars
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Red supergiants and stellar evolution
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- 23 May 2013, pp. 31-41
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How the mass-loss rates of red-supergiants determine the fate of massive stars?
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- 23 May 2013, pp. 43-50
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The evolution of Red Supergiants at very low metallicity
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- 23 May 2013, pp. 51-55
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Atmospheric Structure and Dynamics
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Atmospheric structure and dynamics: the spatial and temporal domains
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- 23 May 2013, pp. 59-68
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The Temperatures of Red Supergiants: how cool are the coolest massive stars?
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- 23 May 2013, pp. 69-76
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Direct ultraviolet imaging and spectroscopy of betelgeuse
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- 23 May 2013, pp. 77-84
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Atmosphere tomography of red supergiant stars
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- 23 May 2013, pp. 85-92
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The atmospheric structure and fundamental parameters of Red Supergiants
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- 23 May 2013, pp. 93-101
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<3D> NLTE line formation in the atmospheres of red supergiants
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- 23 May 2013, pp. 103-109
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NLTE water lines in Betelgeuse-like atmospheres
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- 23 May 2013, pp. 111-119
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Spatially resolving the atmospheric dynamics over the surface of red supergiants with the Very Large Telescope Interferometer
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- 23 May 2013, pp. 121-129
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Turbulent Structure in the Upper Chromospheres of Cool Supergiants
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- 23 May 2013, pp. 131-136
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Global radiation-hydrodynamics simulations of red supergiant stars
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- 23 May 2013, pp. 137-144
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3D hydrodynamical simulations to interpret observations of stellar surfaces of red supergiant stars
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- 23 May 2013, pp. 145-153
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What is the Origin of the Water Vapour Signatures in Red Giant Stars?
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- 23 May 2013, pp. 155-159
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Long-term spectropolarimetric monitoring of the cool supergiant betelgeuse
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- 23 May 2013, pp. 161-165
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Exploring the water and carbon monoxide shell around Betelgeuse with VLTI/AMBER
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- 23 May 2013, pp. 167-172
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