


Daten von IATA https://www.iata.org/en/publications/safety-report/interactive-safety-report/
Es gibt dort noch mehr, sodass Sie bei Bedarf einen Drilldown durchführen können, um nach „toten Passagieren in Europa“ usw. zu suchen.
Python Matplotlib-Code und Daten unter https://gist.github.com/cavedave/69b717d1e1740343bfe92be4ebe20abb
Von cavedave
8 Kommentare
Technically they all land when they crash.
I guess they never crash on ascent after initial climb.
Data from IATA [https://www.iata.org/en/publications/safety-report/interactive-safety-report/](https://www.iata.org/en/publications/safety-report/interactive-safety-report/)
Date range 2002-june 2025
There is more there so you can drill down to find ‚fatal passenger in Europe‘ etc if you want to.
Python matplotlib code and data at [https://gist.github.com/cavedave/69b717d1e1740343bfe92be4ebe20abb](https://gist.github.com/cavedave/69b717d1e1740343bfe92be4ebe20abb)
What is Tom Cruise’s problem with plains?
I’d love to see these sorted by the order they occur in on an average flight.
Real question: how do they crash (have an accident) “parked post arrival” or is that another way to say they were struck by something?
OP did a fine job with this. Another interesting display might be to collapse relate categories into (1) Going Up; (2) Going Down; (3) Cruising. As long they can maintain flight w/o taking off or landing, things look fine. 🙂
What is the date range on this?