Article
Fractional Differential Equation of LC and LR Electrical Circuit
Authors
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Abstract
The fractional derivative is used to calculate the current and charge at any time t in LC, RC and LR circuits by using Laplace Transform of fractional derivatives.
Keywords
Caputo derivative, Fractional derivative, Laplace Transform, LC, RC and LR circuits, Mitag-Leffler function
Citation
Jadhav, C. P., Navlekar, A. A., Ghadle, K. P., & Dhondge, S. L. (2020). Fractional differential equation of LC and LR electrical circuit. Turkish Journal of Computer and Mathematics Education, 11(3), 927–933.
C. P. Jadhav, A. A. Navlekar, K. P. Ghadle and S. L. Dhondge, “Fractional differential equation of LC and LR electrical circuit,” Turkish Journal of Computer and Mathematics Education, vol. 11, no. 3, pp. 927–933, 2020.
Jadhav CP, Navlekar AA, Ghadle KP, Dhondge SL. Fractional differential equation of LC and LR electrical circuit. Turkish Journal of Computer and Mathematics Education. 2020;11(3):927–933.
Jadhav, C. P., Navlekar, A. A., Ghadle, K. P. and Dhondge, S. L. (2020), ‘Fractional differential equation of LC and LR electrical circuit’, Turkish Journal of Computer and Mathematics Education, 11(3), pp. 927–933.
Jadhav, C. P., et al. “Fractional Differential Equation of LC and LR Electrical Circuit.” Turkish Journal of Computer and Mathematics Education, vol. 11, no. 3, 2020, pp. 927–933.
Jadhav, C. P., A. A. Navlekar, Kirtiwant P. Ghadle, and S. L. Dhondge. “Fractional Differential Equation of LC and LR Electrical Circuit.” Turkish Journal of Computer and Mathematics Education 11, no. 3 (2020): 927–933.
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Published by: Engineering Journals


