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Title: Aerodynamic deceleration at velocities near the escape velocity (English)
Author: Bartoň, Stanislav
Language: English
Journal: Programs and Algorithms of Numerical Mathematics
Volume: Proceedings of Seminar. Hejnice, June 23-28, 2024
Issue: 2024
Year:
Pages: 7-15
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Category: math
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Summary: This article presents basic procedures for calculating the trajectory of a spaceship that uses only the Earth's atmosphere to reduce its speed, allowing it to land on the Earth's surface successfully. The first flight of the {\tt ARTEMIS} program, which took place from November 16 to December 11 2022, was used as a template for the calculations. All calculations are performed in the symbolic algebra program Maple. To simplify the calculations, forces that have a less significant impact on the shape of the trajectory, such as the gravitational influence of the Sun and Moon, the rotation of the Earth, and its non-spherical shape, were neglected. To conserve space, only the essential components of the solution are shown, given the intensive calculations involved. The commands used to produce the graphics are not included. (English)
Keyword: Newton's equations of motion
Keyword: aerodynamic drag
Keyword: atmospheric density
Keyword: gravitational field
Keyword: iteration method
Keyword: Maple
MSC: 34A34
MSC: 68W30
MSC: 76-04
DOI: 10.21136/panm.2024.01
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Date available: 2025-06-02T07:38:10Z
Last updated: 2025-06-05
Stable URL: http://hdl.handle.net/10338.dmlcz/703223
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