 | 2012 |
| 21 |  | Muhammad Aslam Noor,
Khalida Inayat Noor,
Zhenyu Huang,
Eisa A. Al-Said:
Implicit Schemes for Solving Extended General Nonconvex Variational Inequalities.
J. Applied Mathematics 2012: (2012) |
| 20 |  | Muhammad Aslam Noor,
Khalida Inayat Noor,
Eisa A. Al-Said:
Iterative Schemes for a Class of Mixed Trifunction Variational Inequalities.
J. Applied Mathematics 2012: (2012) |
| 19 |  | Muhammad Aslam Noor,
Khalida Inayat Noor,
Eisa A. Al-Said:
On New Proximal Point Methods for Solving the Variational Inequalities.
J. Applied Mathematics 2012: (2012) |
| 18 |  | Muhammad Aslam Noor,
Khalida Inayat Noor,
Saira Zainab,
Eisa A. Al-Said:
Regularized Mixed Variational-Like Inequalities.
J. Applied Mathematics 2012: (2012) |
| 2011 |
| 17 |  | Khalida Inayat Noor,
Muhammad Aslam Noor,
Eisa A. Al-Said:
On multivalent functions of bounded radius rotations.
Appl. Math. Lett. 24(7): 1155-1159 (2011) |
| 16 |  | S. K. Khattri,
Muhammad Aslam Noor,
Eisa A. Al-Said:
Unifying fourth-order family of iterative methods.
Appl. Math. Lett. 24(8): 1295-1300 (2011) |
| 15 |  | Khalida Inayat Noor,
Muhammad Aslam Noor,
Eisa A. Al-Said:
On certain analytic functions with bounded radius rotation.
Computers & Mathematics with Applications 61(10): 2987-2993 (2011) |
| 14 |  | Khalida Inayat Noor,
Muhammad Aslam Noor,
Eisa A. Al-Said:
Applications of certain operators to the classes of analytic functions related with generalized conic domains.
Computers & Mathematics with Applications 62(11): 4194-4206 (2011) |
| 13 |  | Muhammad Aslam Noor,
Saleem Ullah,
Khalida Inayat Noor,
Eisa A. Al-Said:
Iterative methods for solving extended general mixed variational inequalities.
Computers & Mathematics with Applications 62(2): 804-813 (2011) |
| 12 |  | Khalida Inayat Noor,
Muhammad Aslam Noor,
Eisa A. Al-Said:
On analytic functions of bounded boundary rotation of complex order.
Computers & Mathematics with Applications 62(4): 2112-2125 (2011) |
| 11 |  | Muhammad Aslam Noor,
Khalida Inayat Noor,
Asif Waheed,
Eisa A. Al-Said:
Some new solitonary solutions of the modified Benjamin-Bona-Mahony equation.
Computers & Mathematics with Applications 62(4): 2126-2131 (2011) |
| 10 |  | Muhammad Aslam Noor,
Eisa A. Al-Said,
Khalida Inayat Noor,
Yonghong Yao:
Extragradient methods for solving nonconvex variational inequalities.
J. Computational Applied Mathematics 235(9): 3104-3108 (2011) |
| 9 |  | Muhammad Aslam Noor,
Khalida Inayat Noor,
Eisa A. Al-Said:
Auxiliary Principle Technique for Solving Bifunction Variational Inequalities.
J. Optimization Theory and Applications 149(2): 441-445 (2011) |
| 2010 |
| 8 |  | Muhammad Aslam Noor,
Syed Tauseef Mohyud-Din,
Asif Waheed,
Eisa A. Al-Said:
Exp-function method for traveling wave solutions of nonlinear evolution equations.
Applied Mathematics and Computation 216(2): 477-483 (2010) |
| 7 |  | Z. Y. Huang,
Muhammad Aslam Noor,
Eisa A. Al-Said:
On an Open Question of Takahashi for Nonexpansive Mappings and Inverse Strongly Monotone Mappings.
J. Optimization Theory and Applications 147(1): 194-204 (2010) |
| 6 |  | Muhammad Aslam Noor,
Khalida Inayat Noor,
Eisa A. Al-Said:
Iterative methods for solving general quasi-variational inequalities.
Optimization Letters 4(4): 513-530 (2010) |
| 2007 |
| 5 |  | Eisa A. Al-Said,
Muhammad Aslam Noor:
Numerical solutions of third-order system of boundary value problems.
Applied Mathematics and Computation 190(1): 332-338 (2007) |
| 2006 |
| 4 |  | Eisa A. Al-Said,
Muhammad Aslam Noor,
Themistocles M. Rassias:
Cubic splines method for solving fourth-order obstacle problems.
Applied Mathematics and Computation 174(1): 180-187 (2006) |
| 2005 |
| 3 |  | Eisa A. Al-Said:
Quartic splines solutions for a system of second order boundary value problems.
Applied Mathematics and Computation 166(2): 254-264 (2005) |
| 2004 |
| 2 |  | Muhammad Aslam Noor,
Eisa A. Al-Said:
Quartic splines solutions of third-order obstacle problems.
Applied Mathematics and Computation 153(2): 307-316 (2004) |
| 1 |  | Eisa A. Al-Said,
Muhammad Aslam Noor,
Dogan Kaya,
Kamel Al-khaled:
Finite difference method for solving fourth-order obstacle problems.
Int. J. Comput. Math. 81(6): 741-748 (2004) |