Mathematical Model Simulation of Non-Linear Equations using MATLAB: Specific Volume of Gas with Van der Waals Equation
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Amalia, A. F., Budhi, W., & Arifin, N. (2020). Comparative analysis of edge detection methods on beaker glass. Journal of Physics: Conference Series, 1446(1), 1–7. https://doi.org/10.1088/1742-6596/1446/1/012054
Ball, D. W., & Key, J. A. (2014). Introductory chemistry-1st canadian edition.
Berberan, S, M. N., Bodunov, E. N., & Pogliani, L. (2008). The van der waals equation: Analytical and approximate solutions. Journal of Mathematical Chemistry, 43, 1437–1457. https://doi.org/10.1007/s10910-007-9272-4
Chapra, S. C., & Canale, R. P. (2015). Numerical methods for engineers (7th Edition). McGrow-Hill education.
Chogle, A., & Maddah, H. (2015). Critical state behavior of van der waal gases & conformation to nelson-obert characteristics. International Journal of Scientific & Engineering Research, 6(10), 134–139.
Cordero, A., Hueso, J. L., Martínez, E., & Torregrosa, J. R. (2012). Steffensen type methods for solving nonlinear equations? Journal of Computational and Applied Mathematics, 236(12), 3058–3064. https://doi.org/10.1016/j.cam.2010.08.043
Gilat, A., & Subramaniam, V. (2014). An introduction with appliications using MATLAB® (L. Ratts & H. Ellis, Eds.; 3rd Edition). Don Fowley.
Gimenez, A., Chausse, V., & Meseguer, A. (2015). Numerical continuation in classical mechanics and thermodynamics. European Journal of Physics, 36(1), 1–18. https://doi.org/10.1088/0143-0807/36/1/015015
Haqueqy, N., Silalahi, B. P., & Sitanggang, I. (2018). Uji komputasi algoritme varian metode newton pada permasalahan optimasi nonlinear tanpa kendala. Journal of Mathematics and Its Applications, 15(2), 63–76. https://doi.org/10.29244/jmap.15.2.63-76
Hutagalung, S. N. (2017). Pemahaman metode numerik (studi kasus metode new-rhapson) menggunakan pemprograman MatLab. Jurnal Teknologi Informasi, 1(1), 95–100. https://doi.org/10.36294/jurti.v1i1.109
Israelachvili, J. N. (2011). 6 - Van der Waals Forces. In J. N. Israelachvili (Ed.), Intermolecular and Surface Forces (Third Edition) (pp. 107–132). Academic Press. https://doi.org/https://doi.org/10.1016/B978-0-12-375182-9.10006-5
Johnston, D. C. (2014). Van der Waals equation of state, reduced variables and laws of corresponding states. In Advances in Thermodynamics of the van der Waals Fluid (pp. 5–1 to 5–13). Morgan & Claypool Publishers. https://doi.org/10.1088/978-1-627-05532-1ch5
Juhari, J. (2021). On the modification of newton-secant method in solving nonlinear equations for multiple zeros of trigonometric function. CAUCHY, 7(1), 84–96. https://doi.org/10.18860/ca.v7i1.12934
Khdhr, F. W., Saeed, R. K., & Soleymani, F. (2019). Improving the computational efficiency of a variant of Steffensen’s method for nonlinear equations. Mathematics, 7(3), 1–9. https://doi.org/10.3390/math7030306
Kulinskii, V. L. (2014). The critical compressibility factor value: Associative fluids and liquid alkali metals. Journal of Chemical Physics, 141(5), 1–6. https://doi.org/10.1063/1.4891806
Kurasov, D. (2020). Mathematical modeling system MatLab. Journal of Physics: Conference Series, 1691(1), 1–9. https://doi.org/10.1088/1742-6596/1691/1/012123
Manikantachari, K. R. v, Martin, S., Bobren-Diaz, J. O., & Vasu, S. (2017). Thermal and transport properties for the simulation of direct-fired sCO2 combustor. Journal of Engineering for Gas Turbines and Power, 139(12), 1–14. https://doi.org/10.1115/1.4037579
Moiseeva, E. F., & Malyshev, V. L. (2019). Compressibility factor of natural gas determination by means of molecular dynamics simulations. AIP Advances, 9(5), 1–6. https://doi.org/10.1063/1.5096618
Muhaijir, M. N., & Djumadila, S. A. (2017). Penyelesaian persamaan nonlinear menggunakan metode iterasi tiga langkah. Seminar Nasional Teknologi Informasi, Komunikasi Dan Industri (SNTIKI) 9, 598–603.
Prodanov, E. (2022). Mathematical analysis of the van der Waals Equation. Technological University Dublin. https://doi.org/10.21427/HZE3-YD97
Ritonga, J., & Suryana, D. (2019). Perbandingan kecepatan konvergensi akar persamaan non linier metode titik tetap dengan metode newton raphson menggunakan matlab. INFORMASI (Jurnal Informatika Dan Sistem Informasi), 11(2), 51–64. https://doi.org/10.37424/informasi.v11i2.17
Sabda, D., Prasetya, B., & Kinasih, I. P. (2014). Kajian gelombang satu dimensi berdsarakan hasil komputasi numerik. Jurnal Ilmiah Pendidikan Fisika “Lensa,” 2(2), 217–219.
Sadhukhan, S., Kar, A., & Chattopadhay, S. (2021). Thermodynamic analysis for Non-linear system (Van-der-Waals EOS) with viscous cosmology. European Physical Journal C, 81(10), 1–21. https://doi.org/10.1140/epjc/s10052-021-09738-w
Sadiku, M., Shadare, A., & Musa, S. (2017). Computational physics: An introduction. International Journal of Engineering Research, 6, 427–428. https://doi.org/10.5958/2319-6890.2017.00054.X
Saheya, B., Chen, G. qing, Sui, Y. kang, & Wu, C. ying. (2016). A new Newton-like method for solving nonlinear equations. SpringerPlus, 5(1), 1–13. https://doi.org/10.1186/s40064-016-2909-7
Sahoo, T., & Pine, S. (2016). Design and simulation of various edge detection techniques using MatLab Simulink. 2016 International Conference on Signal Processing, Communication, Power and Embedded System (SCOPES), 1224–1228. https://doi.org/10.1109/SCOPES.2016.7955636
Shah, F. A., & Noor, M. A. (2015). Some numerical methods for solving nonlinear equations by using decomposition technique. Applied Mathematics and Computation, 251, 378–386. https://doi.org/10.1016/j.amc.2014.11.065
Soleymani, F. (2013). Some optimal iterative methods and their with memory variants. Journal of the Egyptian Mathematical Society, 21(2), 133–141. https://doi.org/10.1016/j.joems.2013.01.002
Sumardi, Y., Amalia, A. F., & Prabowo, U. N. (2022). Develoment of the computer simulation of oscillation in physics learning. Jurnal Pendidikan Fisika Indonesia, 18(1), 33–44. https://doi.org/10.15294/jpfi.v18i1.29040
Suzuki, M. S., & Suzuki, I. S. (2015). Understanding on thermodynamic properties of van der Waals equation of state with the use of Mathematica. Department of Physics, SUNY.
Temelcan, G., Sivri, M., & Albayrak, I. (2020). A new iterative linearization approach for solving nonlinear equations systems. International Journal of Optimization and Control: Theories and Applications, 10(1), 47–54. https://doi.org/10.11121/IJOCTA.01.2020.00684
Utari, K., Mulyaningsih, N. N., Astuti, I. A. D., Bhakti, Y. B., & Zulherman, Z. (2021). Physics calculator application with matlab as a learning media to thermodynamics concept. Momentum: Physics Education Journal, 5(2), 101–110. https://doi.org/10.21067/mpej.v5i2.5133
Wibowo, N. A., Susilo, W., Sigit, A., Setiyani, A., & Fillimditty, E. J. (2017). Desain eksperimen karakterisasi perilaku udara sekitar dalam tinjauan sebagai gas ideal atau gas nyata. Scientiae Educatia: Jurnal Pendidikan Sains, 6(2), 102–110. https://doi.org/10.24235/sc.educatia.v6i2.1823
Zhong, W., Xiao, C., & Zhu, Y. (2017). Modified Van der Waals equation and law of corresponding states. Physica A: Statistical Mechanics and Its Applications, 471(11375091), 295–300. https://doi.org/10.1016/j.physa.2016.12.029
DOI: http://dx.doi.org/10.24042/jipfalbiruni.v11i2.12546
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