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Titlebook: European Conference on Laboratory Astrophysics ECLA2020; The Interplay of Dus Vito Mennella,Christine Joblin Conference proceedings 2023 Th

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https://doi.org/10.1007/978-3-531-90774-1er covered by a CO-rich layer. Interstellar ice mantles are characterized by a rich chemistry, ultimately leading to the formation of complex organic molecules (COMs), that can be simulated in the laboratory. Most studies focus on the chemistry of the H.O-rich layer. Regarding the CO-rich layer, onl
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Die Zukunft der Qualitativen Forschung almost any molecule in the molecular ice, covering dust particles in low-temperature regions of the interstellar medium (ISM). Therefore, the accretion of C atoms to the grains covered with ice mantles is expected to lead to the formation of a large variety of complex organic molecules (COMs). Here
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Die Zukunft der „Sozialen Stadt“dust condensate in the atmospheres of oxygen-rich evolved stars. Therefore, alumina dust grains can trigger mass loss released in stellar winds. The conundrum, or puzzling problem, consists in the formation of alumina. In particular, the nucleation of alumina, including the clustering of gas-phase m
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,Autowirtschaft – der Weg in der Zukunft,dust and small to intermediate sized molecules—especially molecules composed of refractory materials like metal atoms, carbon or silicon. To better understand the chemical composition of gas-phase species in the region around these stars, molecules can be observed at mid-infrared wavelengths, i.e.,
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Jakob Lempp,Thomas Pitz,Jörn Sickmannon zone of the inner envelope of evolved stars. Stardust offers a high degree of control and in-situ analysis capabilities of the molecular species and grains produced, and thus provides astronomers with a workbench to test ideas about possible chemical mechanisms operating in the photosphere of a r
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