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Morphology, Kinematics and Star Formation Across the Hubble Sequence of Galaxies (Hardcover, 1st ed. 2016): Santiago... Morphology, Kinematics and Star Formation Across the Hubble Sequence of Galaxies (Hardcover, 1st ed. 2016)
Santiago Erroz-Ferrer
R3,875 R3,492 Discovery Miles 34 920 Save R383 (10%) Ships in 12 - 17 working days

This thesis discusses the evolution of galaxies through the study of the morphology, kinematics, and star formation properties of a sample of nearby galaxies. The main body of the thesis describes the kinematic observations with the GHaFAS Fabry-Perot instrument on the William Herschel Telescope of a sample of 29 spiral galaxies. The work is closely related to the Spitzer Survey of Stellar Structure in Galaxies, and uses the mid-infrared data of that survey to determine key parameters of the galaxies studied. From these data, important results are obtained on streaming and other non-circular motions in galaxies, on the distribution and rates of star formation, and on how correlations of these parameters and of the rotation curve shape with basic galaxy parameters yield clues on the evolutionary processes taking place in disk galaxies.

Morphology, Kinematics and Star Formation Across the Hubble Sequence of Galaxies (Paperback, Softcover reprint of the original... Morphology, Kinematics and Star Formation Across the Hubble Sequence of Galaxies (Paperback, Softcover reprint of the original 1st ed. 2016)
Santiago Erroz-Ferrer
R3,075 R2,899 Discovery Miles 28 990 Save R176 (6%) Out of stock

This thesis discusses the evolution of galaxies through the study of the morphology, kinematics, and star formation properties of a sample of nearby galaxies. The main body of the thesis describes the kinematic observations with the GHaFAS Fabry-Perot instrument on the William Herschel Telescope of a sample of 29 spiral galaxies. The work is closely related to the Spitzer Survey of Stellar Structure in Galaxies, and uses the mid-infrared data of that survey to determine key parameters of the galaxies studied. From these data, important results are obtained on streaming and other non-circular motions in galaxies, on the distribution and rates of star formation, and on how correlations of these parameters and of the rotation curve shape with basic galaxy parameters yield clues on the evolutionary processes taking place in disk galaxies.

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