@article{MO_2021_2_a1,
author = {G. A. Klekovkin},
title = {Modeling the contours of plant leaves in the {GeoGebra} environment},
journal = {Matemati\v{c}eskoe obrazovanie},
pages = {5--17},
year = {2021},
number = {2},
language = {ru},
url = {http://geodesic.mathdoc.fr/item/MO_2021_2_a1/}
}
G. A. Klekovkin. Modeling the contours of plant leaves in the GeoGebra environment. Matematičeskoe obrazovanie, no. 2 (2021), pp. 5-17. http://geodesic.mathdoc.fr/item/MO_2021_2_a1/
[1] O. L. Bezumova, R. P. Ovchinnikova, O. N. Troitskaya i dr., Obuchenie geometrii s ispolzovaniem vozmozhnostei GeoGebra, Ucheb.-metod. posobie, KIRA, Arkhangelsk, 2011, 140 pp.
[2] N. N. Vorobev, Teoriya ryadov, 6-e izd., stereotip., Lan, SPb, 2002, 408 pp.
[3] A. R. Esayan, “Postroenie lokusov v GeoGebra”, Vestnik RUDN. Seriya: Informatizatsiya obrazovaniya, 14:3 (2017), 334–347
[4] A. A. Savelov, Ploskie krivye: Sistematika, svoistva, primeneniya, Spravochnoe rukovodstvo, Izd. Stereotip, ed. A. P. Norden, Knizhnyi dom “LIBROKOM”, M., 2014, 296 pp.
[5] N. F. Chetverukhin, “Geometricheskie formy organicheskogo mira”, Matematicheskoe obrazovanie, 1930, no. 5, 2–14
[6] G. Grandi, Flores geometrici ex rhodanearum et claelarum descriptione resultants, Florentiae, 1728
[7] B. Habenicht, Analytische Form der Blätter, Quedlinburg, 1895 | Zbl
[8] B. Habenicht, Flächengleichungen organischer und verwandter Formen, intuitiv behandelt, Quedlinburg, 1897 | Zbl
[9] B. Habenicht, Beiträge zur mathematischen Begründung einer Morphologie der Blätter, O. Salle, Berlin, 1905 | Zbl