Hi, I am Jihad Hasan Jabali Asad, My LiveDNA is 962.491
 
   
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Dr. Jihad Hasan Jabali Asad
 
Highest Degree: Ph.D. in Physics from University of Jordan, Jordan
 
Institute: Tabuk University, Saudi Arabia
 
Area of Interest: Physics
  •   Theoretical Condensed Matter Physics
  •   Mathematical Physics
  •   Fractional Calculus
  •   Lattice Green`s Functions in Condensed Matter
 
URL: http://livedna.org/962.491
 
My SELECTED Publications
1:   Asad, J.H., 2006. Differential equation approach for one- and two-dimensional lattice green's function. Mod. Phys. Lett. B, 21: 139-154.
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2:   Asad, J.H., 2009. Analyzing the capacitance networks. Asian J. Applied Sci., 2: 296-299.
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3:   Asad, J.H., 2012. Thermodynamic Functions for Body Centred Lattice-Application on Lattice Green’s Function. Adv. Stud. Theor. Phys., 6: 165-176.
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4:   Asad, J.H., 2013. Analysis of infinite d-dimensional networks-capacitance between two adjacent nodes. J. Electrostat., 71: 754-755.
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5:   Asad, J.H., 2013. Exact evaluation of the resistance in an infinite face-centered cubic network. J. Statistical Phys., 150: 1177-1182.
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6:   Asad, J.H., 2013. Infinite 3D cubic lattices of identical resistors. Applied Mech. Mater., 313-314: 324-328.
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7:   Asad, J.H., 2013. Infinite simple 3D cubic network of identical capacitors. Mod. Phys. Lett., B, Vol. 27, 10.1142/S0217984913501121.
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8:   Asad, J.H., A. Sakaji, R.S. Hijjawi and J.M. Khalifeh, 2006. On the resistance of an infinite square network of identical resistors-theoretical and experimental comparison. Eur. Phys. J. B, 52: 365-370.
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9:   Asad, J.H., A.A. Diab, M.Q. Owaidat and J.M. Khalifeh, 2014. Perturbed infinite 3D simple cubic network of identical capacitors. Acta Physica Polonica A, 126: 777-781.
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10:   Asad, J.H., A.A. Diab, M.Q. Owaidat, R.S. Hijjawi and J.M. Khalifeh, 2014. Infinite body centered cubic network of identical resistors. Acta Physica Polonica A, 125: 60-64.
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11:   Asad, J.H., A.A. Diab, R.S. Hijjawi and J.M. Khalifeh, 2013. Infinite face-centered-cubic network of identical resistors: Application to lattice Green's function. Eur. Phys. J. Plus, Vol. 128, 10.1140/epjp/i2013-13002-8.
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12:   Asad, J.H., R.S. Hijjawi, A. Sakaj and J.M. Khalifeh, 2005. Remarks on perturbation of infinite networks of identical resistors. Int. J. Theor. Phys., 44: 471-483.
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13:   Asad, J.H., R.S. Hijjawi, A. Sakaji and J.M. Khalifeh, 2004. Resistance calculation for an infinite simple cubic lattice application of Green's function. Int. J. Theo. Phys., 43: 2223-2235.
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14:   Asad, J.H., R.S. Hijjawi, A. Sakaji and J.M. Khalifeh, 2005. Capacitance between two points on an infinite grid. Eur. Phys. J. Applied Phys., 32: 149-154.
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15:   Asad, J.H., R.S. Hijjawi, A.J. Sakaji and J.M. Khalifeh, 2005. Infinite network of identical capacitors by Green's function. Int. J. Mod. Phys. B, 19: 3713-3721.
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16:   Asad, J.H., R.S. Hijjawi, A.J. Sakaji and J.M. Khalifeh, 2007. Infinite 2D square network of identical capacitors with two missing bonds. Eur. Phys. J. Applied Phys., 40: 257-264.
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17:   Asad, J.H., R.S. Hijjawi, A.J. Sakaji and J.M. Khalifeh, 2010. Infinite network of identical capacitors. Mod. Phys. Lett. B, 24: 695-705.
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18:   Asad, J.H., R.S. Hijjawi, E.H. Hasan, A.A. Diab and J.M. Khalifeh, 2016. Remarks on the lattice Green's Function for the anisotropic face centered cubic lattice. Acta Physica Polonica A, 129: 52-58.
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19:   Baleanu, D., I. Petras, J.H. Asad and M.P. Velasco, 2012. Fractional Pais–Uhlenbeck Oscillator. Int. J. Theor. Phys., 51: 1253-1258.
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20:   Baleanu, D., J.H. Asad and I. Petras, 2012. Fractional-Order Two-Electric Pendulum. Rom. Rep. Phys., 64: 907-914.
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21:   Baleanu, D., J.H. Asad and I. Petras, 2014. Fractional bateman-feshbach tikochinsky oscillator. Commun. Theoret. Phys., 61: 221-225.
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22:   Baleanu, D., J.H. Asad and I. Petras, 2015. Numerical solution of the fractional Euler-Lagrange's equations of a thin elastica model. Nonlinear Dynamics, 81: 97-102.
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23:   Baleanu, D., J.H. Asad, I. Petras, S. Elagan and A. Bilgen, 2012. Fractional euler-lagrange equation of caldirola-kanai oscillator. Rom. R. Phys., 64: 1171-1177.
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24:   Diab, A.A., R.S. Hijjawi, J.H. Asad and J.M. Khalifeh, 2013. Hamiltonian formulation of classical fields with fractional derivatives: Revisited. Meccanica, 48: 323-330.
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25:   Hijjawi, R.S., J.H. Asad, A.J. Sakaji and J.M. Khalifeh, 2004. Lattice green's function for the face centered cubic lattice. Int. J. Theo. Phys., 43: 2299-2309.
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26:   Hijjawi, R.S., J.H. Asad, A.J. Sakaji and J.M. Khalifeh, 2007. Perturbation of an infinite network of identical capacitors. Int. J. Mod. Phys. B, 21: 199-209.
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27:   Hijjawi, R.S., J.H. Asad, A.J. Sakaji, M. Al-sabayleh and J.M. Khalifeh, 2008. Infinite simple 3D cubic lattice of identical resistors (two missing bonds). Eur. Phys. J. Applied Phys., 41: 111-114.
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28:   Owaidat, M.Q., J.H. Asad and J.M. Khalifeh, 2015. Resistance calculation of the decorated centered cubic networks: Applications of the Green's function. Mod. Phys. Lett. B, Vol. 28, No. 32. 10.1142/S0217984914502522.
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29:   Owaidat, M.Q., R.S. Hijjawi, J.H. Asad and J.M. Khalifeh, 2013. Electrical networks with interstitial single capacitor. Mod. Phys. Lett., Vol. 27, 10.1142/S0217984913501236.
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30:   Owaidat, M.Q., R.S. Hijjawi, J.H. Asad and J.M. Khalifeh, 2014. The two-point capacitance of infinite triangular and honeycomb networks. Eur. Phys. J.-Applied Phys., 68: 10102-10108.
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31:   Sakaji, A.J., J.H. Asad, R.S. Hijjawi and J.M. Khalifeh, 2004. Application of the lattice green's functions for triangular lattice. Elec. J. Theo. Phys., 3: 8-15.
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