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Wolfgang Kundt, The 1908 Tunguska catastrophe: An alternative explanation, CURRENT SCIENCE, VOL. 81, NO. 4, 25 AUGUST 2001
L. Gasperini, et al, Geophysical/ sedimentological study of a lake close to the epicenter of the great 1908 Siberian (Tunguska) explosion.
G. Longo, E. Bonatti, M. Di Martino, L. Foschini, L. Gasperini, Exploring the site of the Tunguska impact
L. Foschini, G. Longo, T.J. Jopek, Ch. Froeschlй, R. Gonczi, P. Michel, On the Atmospheric Dynamics of the Tunguska Cosmic Body
P. Farinella, L. Foschini, Ch. Froeschlй, R. Gonczi, T.J. Jopek, G. Longo, P. Michel: Probable asteroidal origin of the Tunguska Cosmic Body
Luigi Foschini, A solution for the Tunguska event
L. Foschini, On the atmospheric fragmentation of small asteroids
Тектиты, субтектиты, стримергласы и Тунгусский метеорит
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P. Farinella, L. Foschini, Ch. Froeschlй, R. Gonczi, T.J. Jopek, G. Longo, P. Michel: Probable asteroidal origin of the Tunguska Cosmic Body. Astronomy and Astrophysics 377 (2001) 1081-1097
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Тунгусский феномен » Исследования » Библиография » 2000-09 » 2001 » P. Farinella, L. Foschini, Ch. Froeschlй, R. Gonczi, T.J. Jopek, G. Longo, P. Michel: Probable asteroidal origin of the Tunguska Cosmic Body

Abstract. The complete characterisation of the Tunguska event of 30th June 1908 is still a challenge for astrophysicists. We studied the huge amount of scienti c literature to select data directly available from measurements and we introduced parameters calculated by the application of models, and evaluated other possibilities. We then selected a range of meaningful atmospheric trajectories, from which we extracted a set of possible orbits. We obtained 886 orbits, which were used to estimate the probabilities of the possible origin of the Tunguska Cosmic Body (TCB). We found that the probability that the TCB moved on an asteroidal path is higher than it moved on a cometary one, 83% to 17%, respectively.

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