Another proof of Borůvka's criterion on global equivalence of the second order ordinary linear differential equations
Časopis pro pěstování matematiky (1990)
- Volume: 115, Issue: 1, page 73-80
- ISSN: 0528-2195
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topNeuman, František. "Another proof of Borůvka's criterion on global equivalence of the second order ordinary linear differential equations." Časopis pro pěstování matematiky 115.1 (1990): 73-80. <http://eudml.org/doc/19550>.
@article{Neuman1990,
author = {Neuman, František},
journal = {Časopis pro pěstování matematiky},
keywords = {geometrical approach; global equivalence},
language = {eng},
number = {1},
pages = {73-80},
publisher = {Mathematical Institute of the Czechoslovak Academy of Sciences},
title = {Another proof of Borůvka's criterion on global equivalence of the second order ordinary linear differential equations},
url = {http://eudml.org/doc/19550},
volume = {115},
year = {1990},
}
TY - JOUR
AU - Neuman, František
TI - Another proof of Borůvka's criterion on global equivalence of the second order ordinary linear differential equations
JO - Časopis pro pěstování matematiky
PY - 1990
PB - Mathematical Institute of the Czechoslovak Academy of Sciences
VL - 115
IS - 1
SP - 73
EP - 80
LA - eng
KW - geometrical approach; global equivalence
UR - http://eudml.org/doc/19550
ER -
References
top- O. Borůvka, Lineare Differentialtransformationen 2, Ordnung. VEB Berlin 1967. Linear Differential Transformations of the Second Order. The English Univ. Press, London 1971. (1967) MR0463539
- M. Čadek, Form of general pointwise transformations of linear differential equations, Czechoslovak Math. J. 35 (110) (1985), 617-624. (1985) MR0809044
- F. Neuman, Geometrical approach to linear differential equations of the n-th order, Rend. Mat. 5 (1972), 579-602 (Abstract: Some results on geometrical approach to linear differential equations of the n-th order. Comment. Math. Univ. Carolin. 12 (1971), 307-315). (1972) Zbl0257.34029MR0288337
- P. Stäckel, Über Transformationen von Differentialgleichungen, J. Reine Angew. Math. 111 (1893), 290-302.
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