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   1. M. Zafar and  V. D. Sharma, Characteristic decomposition of compressible Euler equations for a non-ideal gas in two-dimensions, J.Math.Phys. (AIP, USA), 55, 093103.

   2. M. Zafar and  V. D. Sharma,  Expansion of a wedge of non-ideal gas into vacuum,  Nonlinear Analysis: Real World Applications  (Elsevier),  31 (2016) 580-592.

   3. M. Zafar,  A note on characteristic decomposition for two-dimensional Euler system in van der Waals fluids, Internat. J.  Non-Linear Mech. (Elsevier), 86 (2016) 33-36.

   4. M. Zafar and  V. D. Sharma, Classification of the Riemann problem for compressible two-dimensional Euler system in non-ideal gas,  Nonlinear Analysis: Real World Applications  (Elsevier),  43 (2018)   245-261.

   5. H. Srivastava and M. Zafar, Three pieces Riemann problem for 2-D full Euler system in the Noble-Abel gas, Mathematical Methods in the Applied Sciences (2022) 

   6. Priyanka and M. Zafar,  Delta Shocks and vacuum states in the Riemann solutions of Chaplygin Euler equations as pressure and magnetic field drop to zero, Journal of Mathematical Physics (AIP,  USA) 63, 121505 (2022).

   7. H. Srivastava and M. Zafar, A note on special solutions for magnetohydrodynamics system in the van der Waals fluid, International Journal of Non-Linear Mechanics (Elsevier) 154, 104424 (2023).

   8. H. Srivastava and M. Zafar, Degenerate Cauchy-Goursat problem for 2-D steady isentropic Euler system with van der Waals gas, Studies in Applied Mathematics (Wiley) 151(4), 1525-1549 (2023).

   9. S. Sharma, R. Mondal, and M. Zafar, Effect of step bottom and waterway on flexural gravity wave scattering, Physics of Fluids (AIP, USA) 36, 107136 (2024).

  10. S. Sharma, R. Mondal, and M. Zafar, Effect of step bottom on oblique water wave scattering by a finite floating plate, Ocean Engineering (Elsevier) 337, 121896 (2025).

  11. R. Mandal and M. Zafar, Existence and uniqueness of C1 solution to the Goursat problem for the dusty gas flow, Journal of Mathematical Physics (AIP, USA) 66, 043101 (2025).

  12. H. Srivastava and M. Zafar, The supersonic flow of van der Waals gas past a curved wedge in magnetic field, Applicable Analysis (Taylor & Francis) 1-12 (2025).

  13. Priyanka and M. Zafar, Dynamics of delta shock waves originating from a three pieces Riemann problem for traffic flow model, ( Accepted in Mathematical Methods in the Applied Sciences (Wiley),2025).

  14. Priyanka and M. Zafar, Intrinsic phenomena of delta shock waves in more realistic Chaplygin Aw-Rascle model, (Accepted in Applicable Analysis (Taylor & Francis), 2025).

  15. H. Srivastava and M. Zafar, Existence and regularity of sonic-supersonic solutions for 2-D steady magnetohydrodynamics system with van der Waals fluid, (Accepted in Mathematical Methods in the Applied Sciences (Wiley),2025).
  16. H. Srivastava and M. Zafar, Simple Waves and a Characteristic decomposition of two dimensional magnetohydrodynamic system with general equation of state, ( Accepted in Differential Equations (Springer), 2025).
  17. H. Srivastava and M. Zafar, Vacuum appearance in convex duct for van der Waals fluid, (Accepted in Journal of Mathematical Physics (AIP, USA),2025). 




 

    
 

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“The measure of greatness in a scientific idea is the extent to which it stimulates thought and opens up new lines of research.” 

- Paul A. M. Dirac-

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