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Approximate Analytic Solutions of the LotkaVolterra System
The equation for the orbit of the Lotka-Volterra system is approximately solved for one of two variables in terms of the other by using the Pade approximant of order (2, 2) for the function exp(x)-x -1. The approximate formulas are found to describe the time behavior of the solutions. A comparison with numerical calculations is demonstrated.
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ZFAS1 is a lncRNA promoting cell proliferation and migration, exhibiting high expression in various cancers. It is conserved, widely expressed, and produces multiple splice variants with unclear roles. We identified several splice variants in hepatocyte models, and found that inhibiting or suppressing regulators of the unfolded protein response (PERK ...
Sébastien Soubeyrand +2 more
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Advanced analysis of nonlinear stability of two horizontal interfaces separating three-stratified non-Newtonian liquids. [PDF]
Moatimid GM, Mohamed YM.
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Hybrid nanofluid-based targeted drug delivery system for tumor therapy under magnetic and thermal control. [PDF]
Zar PM, Zar VM.
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Nonlinear stability and vibration of flexible spacecraft solar arrays under thermally induced flutter during the penumbra phase. [PDF]
Motaharifard O +2 more
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Dynamical networking of polymer networks with dedicated cross-linker particles. [PDF]
du Toit N +2 more
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Analytical treatment of the fractional Zakharov-Kuznetsov equation via the generalized integral residual power series method. [PDF]
Abdelhafeez SA +4 more
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An approximate analytical solution of one-dimensional groundwater recharge by spreading
Mahendrakumar Amrutbhai Patel +1 more
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