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Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes
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A. ZEYTİNOĞLU Et Al. , "Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes," ACTA PHYSICA POLONICA A , vol.133, no.1, pp.140-151, 2018

ZEYTİNOĞLU, A. Et Al. 2018. Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes. ACTA PHYSICA POLONICA A , vol.133, no.1 , 140-151.

ZEYTİNOĞLU, A., SARI, M., & Allahverdiev, B. P., (2018). Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes. ACTA PHYSICA POLONICA A , vol.133, no.1, 140-151.

ZEYTİNOĞLU, Asuman, Murat SARI, And B. P. Allahverdiev. "Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes," ACTA PHYSICA POLONICA A , vol.133, no.1, 140-151, 2018

ZEYTİNOĞLU, Asuman Et Al. "Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes." ACTA PHYSICA POLONICA A , vol.133, no.1, pp.140-151, 2018

ZEYTİNOĞLU, A. SARI, M. And Allahverdiev, B. P. (2018) . "Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes." ACTA PHYSICA POLONICA A , vol.133, no.1, pp.140-151.

@article{article, author={Asuman ZEYTİNOĞLU Et Al. }, title={Numerical Simulations of Shock Wave Propagating by a Hybrid Approximation Based on High-Order Finite Difference Schemes}, journal={ACTA PHYSICA POLONICA A}, year=2018, pages={140-151} }