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Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations with Variable Exponentials and Multiplicative Airy’s Equation

Year 2023, Volume: 18 Issue: 2, 301 - 309, 01.09.2023
https://doi.org/10.55525/tjst.1282216

Abstract

This paper offers several approaches for solving multiplicative second-order linear differential equations with variable exponentials, such as normalization and reduction to Riccati equations. In addition, in this paper, the multiplicative version of the Airy equation, which emerges in fluid mechanics, geophysics, and atomic physics, is solved using the multiplicative power series solution method.

References

  • Grossman M. An introduction to Non-Newtonian calculus. Int J Math Educ Sci Technol 1979; 10(4): 525-528.
  • Grossman M, Katz R. Non-Newtonian Calculus. Pigeon Cove, MA: Lee Press, 1972.
  • Benford A, The Law of anomalous numbers. Proc Am Philos Soc 1938; 78: 551-572.
  • Bashirov AE, Riza M. On complex multiplicative differentiation. TWMS J Appl Eng Math 2011; 1(1): 75-85.
  • Bashirov AE, Mısırlı E, Tandogdu Y, Özyapıcı A. On modeling with multiplicative differential equations. Appl Math-J Chin Univ 2011; 26(4): 425-438.
  • Boruah K, Hazarika B. G-Calculus. J Appl Eng Math 2018; 8(1): 94-105.
  • Florack L, Assen Hv. Multiplicative calculus in biomedical image analysis. J Math Imaging Vision 2012; 42: 64-75.
  • Guenther RA. Product integrals and sum integrals. Int J Math Educ Sci Technol 1983; 14(2): 243-249.
  • Slavik A. Product Integration, Its History and Applications. Prague: Matfyzpress, 2007.
  • Stanley D. A multiplicative calculus. Primus 1999; 9(4): 310-326.
  • Gulsen T, Yilmaz E, Goktas S. Multiplicative Dirac system. Kuwait J Sci 2022; 49(3): pp. 1-11.
  • Yalçın N, Çelik E, Gokdogan A. Multiplicative Laplace transform and its applications. Optik 2016; 127(20): 9984–9995.
  • Yalçın N, Çelik E. Çarpımsal Cauchy-Euler ve Legendre diferansiyel denklemi. Gumushane Univ J Sci Technol 2019; 9(3): 373–382.
  • Yalçın N, Dedeturk M. Solutions of multiplicative ordinary differential equations via the multiplicative differential transform method. Aims Math 2021; 6(4): 3393-3409.
  • Yalcin N. Multiplicative Chebyshev differential equations and multiplicative Chebyshev polynomials. Therm Sci 2022; 26(2): 785-799.
  • Bal A, Yalçın N, Dedetürk M. Solutions of multiplicative integral equations via the multiplicative power series method. J Polytechnic 2023; 26(1): 311-320.
  • Yalçın N, Dedeturk M. Solutions of multiplicative linear differential equations via the multiplicative power series method. Sigma J Eng Natural Sci 2023; In press.
  • Goktas S. A New Type of Sturm-Liouville equation in the non-Newtonian calculus. J Funct Spaces 2021; 2021: pp. 1-8.
  • Goktas S, Yilmaz E, Yar AÇ. Some spectral properties of multiplicative Hermite equation. Fundam J Math Appl 2022; 5(1): 32-41.
  • Yilmaz E. Multiplicative Bessel equation and its spectral properties. Ric Mat 2021; 1-17.
  • Yalcin N, Celik E. Solution of multiplicative homogeneous linear differential equations with constant exponentials. New Trend Math Sci 2018; 6(2): 58-67.
  • Yalçın N. The solutions of multiplicative Hermite differential equation and multiplicative Hermite polyno-mials. Rendiconti del Circolo Mat di Palermo Serie 2 2021; 70(1): 9-21.
  • Langer RE. On the asymptotic forms of the solutions of ordinary linear differential equations of the third order in a region containing a turning point. Trans Am Math Soc 1955; 80(1): 93-123.
  • Vallee O, Soares M. Airy Functions and Applications to Physics. New Jersey: Imperial College Press, 2010.
  • Swanson CA, Headley VB. An extension of Airy’s equation. SIAM J Appl Math 1967; 15(6): 1400-1412.
  • Fabijonas BR, Lozier DW, Olver FW. Computation of complex Airy functions and their zeros using asymptotics and the differential equation. ACM Trans Math Softw 2004; 30(4): 471-490.
  • Hamdan MH, Kamel MT. An Application of the Ni(x) Integral function to nonhomogeneous Airy’s equation. Math Meth Comput Tech Intelligent Sys 2010; 12: 212-216.
  • Turkyilmazoglu M. The Airy equation and its alternative analytic solution. Phys Scr 2012; 86(5): 055004.
  • Aghili A, Zeinali H. Solution to fractional Schrödinger and Airy differential equations via integral transforms. Br J Math Comput Sci 2014; 4(18): 2630.
  • Robin W. Series Solution of Second-Order linear homogeneous ordinary differential equations via complex integration. Int Math Forum 2014; 9(20): 967-976.
  • Alzahrani SM, Gadoura I, Hamdan MH. Ascending series solution to Airy’s inhomogeneous boundary value problem. Int J Open Problems Compt Math 2016; 9(1): 1-11.
  • Koklu K. A Solution of Airy Differential Equation via Natural Transform, Prime Archives in Applied Mathematics. Hyderabad, India: Vide Leaf, 2021; 1-8.
  • Bashirov AE, Kurpınar EM, Özyapıcı A. Multiplicative calculus and its applications. J Math Anal Appl 2008; 337: 36-48.
  • Yalçın N, Çelik E. The solution of multiplicative non-homogeneous linear differential equations. J Appl Math Comput 2018; 2(1): 27-36.
  • Lanczos C. Linear Differential Operators. Princeton, NJ: D Van Nostrand Company, 16 Inc, 1964.

İkinci Mertebeden Değişken Üslü Çarpımsal Lineer Diferansiyel Denklemlerin ve Çarpımsal Airy Denkleminin Çözümleri için Bazı Yaklaşımlar

Year 2023, Volume: 18 Issue: 2, 301 - 309, 01.09.2023
https://doi.org/10.55525/tjst.1282216

Abstract

Bu makale, normalleşme ve Riccati denklemlerine indirgenme gibi ikinci mertebeden değişken katsayılı çarpımsal lineer diferansiyel denklemleri çözmek için çeşitli yaklaşımlar sunmaktadır. Ayrıca bu makalede akışkan mekaniği, jeofizik ve atom fiziğinde ortaya çıkan Airy denkleminin çarpımsal versiyonu çarpımsal kuvvet serisi çözüm yöntemi kullanılarak çözülmüştür.

References

  • Grossman M. An introduction to Non-Newtonian calculus. Int J Math Educ Sci Technol 1979; 10(4): 525-528.
  • Grossman M, Katz R. Non-Newtonian Calculus. Pigeon Cove, MA: Lee Press, 1972.
  • Benford A, The Law of anomalous numbers. Proc Am Philos Soc 1938; 78: 551-572.
  • Bashirov AE, Riza M. On complex multiplicative differentiation. TWMS J Appl Eng Math 2011; 1(1): 75-85.
  • Bashirov AE, Mısırlı E, Tandogdu Y, Özyapıcı A. On modeling with multiplicative differential equations. Appl Math-J Chin Univ 2011; 26(4): 425-438.
  • Boruah K, Hazarika B. G-Calculus. J Appl Eng Math 2018; 8(1): 94-105.
  • Florack L, Assen Hv. Multiplicative calculus in biomedical image analysis. J Math Imaging Vision 2012; 42: 64-75.
  • Guenther RA. Product integrals and sum integrals. Int J Math Educ Sci Technol 1983; 14(2): 243-249.
  • Slavik A. Product Integration, Its History and Applications. Prague: Matfyzpress, 2007.
  • Stanley D. A multiplicative calculus. Primus 1999; 9(4): 310-326.
  • Gulsen T, Yilmaz E, Goktas S. Multiplicative Dirac system. Kuwait J Sci 2022; 49(3): pp. 1-11.
  • Yalçın N, Çelik E, Gokdogan A. Multiplicative Laplace transform and its applications. Optik 2016; 127(20): 9984–9995.
  • Yalçın N, Çelik E. Çarpımsal Cauchy-Euler ve Legendre diferansiyel denklemi. Gumushane Univ J Sci Technol 2019; 9(3): 373–382.
  • Yalçın N, Dedeturk M. Solutions of multiplicative ordinary differential equations via the multiplicative differential transform method. Aims Math 2021; 6(4): 3393-3409.
  • Yalcin N. Multiplicative Chebyshev differential equations and multiplicative Chebyshev polynomials. Therm Sci 2022; 26(2): 785-799.
  • Bal A, Yalçın N, Dedetürk M. Solutions of multiplicative integral equations via the multiplicative power series method. J Polytechnic 2023; 26(1): 311-320.
  • Yalçın N, Dedeturk M. Solutions of multiplicative linear differential equations via the multiplicative power series method. Sigma J Eng Natural Sci 2023; In press.
  • Goktas S. A New Type of Sturm-Liouville equation in the non-Newtonian calculus. J Funct Spaces 2021; 2021: pp. 1-8.
  • Goktas S, Yilmaz E, Yar AÇ. Some spectral properties of multiplicative Hermite equation. Fundam J Math Appl 2022; 5(1): 32-41.
  • Yilmaz E. Multiplicative Bessel equation and its spectral properties. Ric Mat 2021; 1-17.
  • Yalcin N, Celik E. Solution of multiplicative homogeneous linear differential equations with constant exponentials. New Trend Math Sci 2018; 6(2): 58-67.
  • Yalçın N. The solutions of multiplicative Hermite differential equation and multiplicative Hermite polyno-mials. Rendiconti del Circolo Mat di Palermo Serie 2 2021; 70(1): 9-21.
  • Langer RE. On the asymptotic forms of the solutions of ordinary linear differential equations of the third order in a region containing a turning point. Trans Am Math Soc 1955; 80(1): 93-123.
  • Vallee O, Soares M. Airy Functions and Applications to Physics. New Jersey: Imperial College Press, 2010.
  • Swanson CA, Headley VB. An extension of Airy’s equation. SIAM J Appl Math 1967; 15(6): 1400-1412.
  • Fabijonas BR, Lozier DW, Olver FW. Computation of complex Airy functions and their zeros using asymptotics and the differential equation. ACM Trans Math Softw 2004; 30(4): 471-490.
  • Hamdan MH, Kamel MT. An Application of the Ni(x) Integral function to nonhomogeneous Airy’s equation. Math Meth Comput Tech Intelligent Sys 2010; 12: 212-216.
  • Turkyilmazoglu M. The Airy equation and its alternative analytic solution. Phys Scr 2012; 86(5): 055004.
  • Aghili A, Zeinali H. Solution to fractional Schrödinger and Airy differential equations via integral transforms. Br J Math Comput Sci 2014; 4(18): 2630.
  • Robin W. Series Solution of Second-Order linear homogeneous ordinary differential equations via complex integration. Int Math Forum 2014; 9(20): 967-976.
  • Alzahrani SM, Gadoura I, Hamdan MH. Ascending series solution to Airy’s inhomogeneous boundary value problem. Int J Open Problems Compt Math 2016; 9(1): 1-11.
  • Koklu K. A Solution of Airy Differential Equation via Natural Transform, Prime Archives in Applied Mathematics. Hyderabad, India: Vide Leaf, 2021; 1-8.
  • Bashirov AE, Kurpınar EM, Özyapıcı A. Multiplicative calculus and its applications. J Math Anal Appl 2008; 337: 36-48.
  • Yalçın N, Çelik E. The solution of multiplicative non-homogeneous linear differential equations. J Appl Math Comput 2018; 2(1): 27-36.
  • Lanczos C. Linear Differential Operators. Princeton, NJ: D Van Nostrand Company, 16 Inc, 1964.
There are 35 citations in total.

Details

Primary Language English
Journal Section TJST
Authors

Tuba Gülşen 0000-0002-2288-8050

Publication Date September 1, 2023
Submission Date April 12, 2023
Published in Issue Year 2023 Volume: 18 Issue: 2

Cite

APA Gülşen, T. (2023). Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations with Variable Exponentials and Multiplicative Airy’s Equation. Turkish Journal of Science and Technology, 18(2), 301-309. https://doi.org/10.55525/tjst.1282216
AMA Gülşen T. Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations with Variable Exponentials and Multiplicative Airy’s Equation. TJST. September 2023;18(2):301-309. doi:10.55525/tjst.1282216
Chicago Gülşen, Tuba. “Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations With Variable Exponentials and Multiplicative Airy’s Equation”. Turkish Journal of Science and Technology 18, no. 2 (September 2023): 301-9. https://doi.org/10.55525/tjst.1282216.
EndNote Gülşen T (September 1, 2023) Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations with Variable Exponentials and Multiplicative Airy’s Equation. Turkish Journal of Science and Technology 18 2 301–309.
IEEE T. Gülşen, “Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations with Variable Exponentials and Multiplicative Airy’s Equation”, TJST, vol. 18, no. 2, pp. 301–309, 2023, doi: 10.55525/tjst.1282216.
ISNAD Gülşen, Tuba. “Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations With Variable Exponentials and Multiplicative Airy’s Equation”. Turkish Journal of Science and Technology 18/2 (September 2023), 301-309. https://doi.org/10.55525/tjst.1282216.
JAMA Gülşen T. Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations with Variable Exponentials and Multiplicative Airy’s Equation. TJST. 2023;18:301–309.
MLA Gülşen, Tuba. “Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations With Variable Exponentials and Multiplicative Airy’s Equation”. Turkish Journal of Science and Technology, vol. 18, no. 2, 2023, pp. 301-9, doi:10.55525/tjst.1282216.
Vancouver Gülşen T. Some Approaches for Solving Multiplicative Second-Order Linear Differential Equations with Variable Exponentials and Multiplicative Airy’s Equation. TJST. 2023;18(2):301-9.