Published October 30, 2024 | Version CC-BY-NC-ND 4.0
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On the Model of Transport of Salt Solution in a Xylem

  • 1. Nizhny Novgorod State University, 23 Ga-garinavenue, Nizhny Novgorod, Russia.

Description

Abstract: We consider a model for vertical lifting of an aqueous solution of salts in a xylem. We analyzed changes of movement of the considered solution depending on various parameters. We consider an analytical approach for analysis of the considered model. The approach gives a possibility to take into account changes of parameters in space and time, as well as the nonlinearity of the considered processes.

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Identifiers

DOI
10.54105/ijam.B1173.04021024
EISSN
2582-8932

Dates

Accepted
2024-10-15
Manuscript received on 05 July 2024 | Revised Manuscript received on 05 September 2024 | Manuscript Accepted on 15 October 2024 | Manuscript published on 30 October 2024.

References

  • I.A. Kipnis, Yu.M. Vernigorov, Mathematical modeling of the lifting of water in capillaries shaped like a cylindrical vertical spiral, Bulletin of the far eastern state technical university. 14 (2) (2014) 139-144. https://doi.org/10.12737/4542
  • I.A. Kipnis, Yu.M. Vernigorov, The mechanism of water movement in plant xylem capillaries, Bulletin of the far eastern state technical uni-versity. 14 (3) (2014) 77-87. https://doi.org/10.12737/5698
  • B.N. Ugolev, Wood science and forest commodity science (Moscow: Academy, 2010).
  • L.I. Lotova. Botany. Morphology and anatomy of higher plants (Mos-cow: LIBRICOM, 2010).
  • M. Niu, Zh. Bie, Y. Huang, Root-borne signals and their control of guard cell operation under saline conditions: The role of root signals in stomata regulation, Advances in botanical research, 103, (2022), 195-220. https://doi.org/10.1016/bs.abr.2022.02.014
  • E.L. Pankratov, E.A. Bulaeva, on prognosis of epitaxy from gas phase process for improvement of properties of epitaxial layers, 3D research. 6 (4) (2015) 46-56. https://doi.org/10.1007/s13319-015-0073-4
  • R.A. Talalaev, E.V. Yakovleva, S.Yu. Karpova, Yu.N. Makarov, On low temperature kinetic effects in metal-organic vapor phase epitaxy of III-V compounds, Journal of the crystal growth. 230 (2001) 232-238. https://doi.org/10.1016/S0022-0248(01)01354-9
  • Yu.D. Sokolov, About the definition of dynamic forces in the mine lifting. Applied mechanics.Vol. 1 (1). P. 23-35 (1955).
  • E.L. Pankratov, Decreasing of depth of p-n-junction in a semiconductor heterostructure by serial radiation processing and microwave annealing, Journal of computational and theoretical nanoscience, 9 (1) (2012) 41-49. https://doi.org/10.1166/jctn.2012.1994
  • Kumar, A., avtar, Dr. R., & Seth, Dr. D. (2019). Mathematical Model-ing of Oxygen Transport in Retinal Layers. In International Journal of Emerging Science and Engineering (Vol. 6, Issue 6, pp. 1–4). https://doi.org/10.35940/ijese.f2304.106619
  • Anusha, G., Rao, S. V. P., & Krishna, C. B. R. (2019). Designing Of Modeling and Applications in Typical Engineering Process. In Interna-tional Journal of Recent Technology and Engineering (IJRTE) (Vol. 8, Issue 2, pp. 2289–2291). . https://doi.org/10.35940/ijrte.b2665.078219
  • Sivaraman, Dr. R., López-Bonilla, Prof. J., & Vidal-Beltrán, S. (2023). On the Polynomial Structure of 𝑟𝑘(𝑛). In Indian Journal of Advanced Mathematics (Vol. 3, Issue 2, pp. 4–6). https://doi.org/10.54105/ijam.a1162.103223