Inference accuracy about an aircraft crash

Fuente: arXiv
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Autori principali: Graner, François, Panebianco, Stefano Matthias
Natura: Preprint
Pubblicazione: 2025
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author Graner, François
Panebianco, Stefano Matthias
author_facet Graner, François
Panebianco, Stefano Matthias
contents Problem-based learning benefits from situations taken from real life, which arouse student interest. The shooting of Rwanda president aircraft on April 6th, 1994 is still unsolved. We discuss the methods to infer information and conclusions about where the aircraft was shot and its trajectory during its fall, as well as about the place from which the missiles were launched, and their trajectory and type. To this goal, we compiled expert reports, witness indications and other public sources, then translated plain language sentences into quantitative equalities and inequalities applied to geometry and mechanics at undergraduate level. The accuracy of each result is discussed and propagated in order to ensure a proper assessment of the hypotheses and a traceability of their consequences. Overall, the accuracy discussion can train the students critical mind, and teach inference methods which are routinely used in several fields of physics research. In addition, it demonstrates the importance and limits of scientific expertise during a judiciary process. The publicly available information interpreted by our calculations shows that the question of missile launching position is still open.
format Preprint
id arxiv_https___arxiv_org_abs_2501_07261
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Inference accuracy about an aircraft crash
Graner, François
Panebianco, Stefano Matthias
Physics Education
Physics and Society
Problem-based learning benefits from situations taken from real life, which arouse student interest. The shooting of Rwanda president aircraft on April 6th, 1994 is still unsolved. We discuss the methods to infer information and conclusions about where the aircraft was shot and its trajectory during its fall, as well as about the place from which the missiles were launched, and their trajectory and type. To this goal, we compiled expert reports, witness indications and other public sources, then translated plain language sentences into quantitative equalities and inequalities applied to geometry and mechanics at undergraduate level. The accuracy of each result is discussed and propagated in order to ensure a proper assessment of the hypotheses and a traceability of their consequences. Overall, the accuracy discussion can train the students critical mind, and teach inference methods which are routinely used in several fields of physics research. In addition, it demonstrates the importance and limits of scientific expertise during a judiciary process. The publicly available information interpreted by our calculations shows that the question of missile launching position is still open.
title Inference accuracy about an aircraft crash
topic Physics Education
Physics and Society
url https://arxiv.org/abs/2501.07261