Hafiz Abdul Wahab
Hazara University
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Publication
Featured researches published by Hafiz Abdul Wahab.
Symmetry | 2018
Muhammad Gulistan; Naveed Yaqoob; Zunaira Rashid; Florentin Smarandache; Hafiz Abdul Wahab
Neutrosophic cubic sets are the more generalized tool by which one can handle imprecise information in a more effective way as compared to fuzzy sets and all other versions of fuzzy sets. Neutrosophic cubic sets have the more flexibility, precision and compatibility to the system as compared to previous existing fuzzy models. On the other hand the graphs represent a problem physically in the form of diagrams, matrices etc. which is very easy to understand and handle. So the authors applied the Neutrosophic cubic sets to graph theory in order to develop a more general approach where they can model imprecise information through graphs. We develop this model by introducing the idea of neutrosophic cubic graphs and introduce many fundamental binary operations like cartesian product, composition, union, join of neutrosophic cubic graphs, degree and order of neutrosophic cubic graphs and some results related with neutrosophic cubic graphs. One of very important futures of two neutrosophic cubic sets is the R-union that R-union of two neutrosophic cubic sets is again a neutrosophic cubic set, but here in our case we observe that R-union of two neutrosophic cubic graphs need not be a neutrosophic cubic graph. Since the purpose of this new model is to capture the uncertainty, so we provide applications in industries to test the applicability of our defined model based on present time and future prediction which is the main advantage of neutrosophic cubic sets.
Symmetry | 2018
Muhammad Gulistan; Hafiz Abdul Wahab; Florentin Smarandache; Salma Khan; Sayed Shah
In this paper, we combined entropy with linguisti neutrosophic cubic numbers and used it in daily life problems related to a corporation that is going to choose an area supervisor, which is the main target of our proposed model. For this, we first develop the theory of linguistic neutrosophic cubic numbers, which explains the indeterminate and incomplete information by truth, indeterminacy and falsity linguistic variables (LVs) for the past, present, as well as for the future time very effectively. After giving the definitions, we initiate some basic operations and properties of linguistic neutrosophic cubic numbers. We also define the linguistic neutrosophic cubic Hamy mean operator and weighted linguistic neutrosophic cubic Hamy mean (WLNCHM) operator with some properties, which can handle multi-input agents with respect to the different time frame. Finally, as an application, we give a numerical example in order to test the applicability of our proposed model.
NUST Journal of Engineering Sciences | 2017
Hafiz Abdul Wahab; Hazrat Ali; Khalid Usman; Muhammad Naeem; Saira Bhatti; Muhammad Shahzad; Sarfraz Ahmed
In this paper, the homotopy analysis method is applied to non-linear reaction diffusion system of Lotka-Volterra type subject of extensive numerical and analytical studies. The comparisons of the other analytical techniques are presented in tables to show the accuracy of this method. The results show that the homotopy analysis method is more reliable than the other available techniques giving the advantage of the choice of some quantities such as initial guess, auxiliary function, auxiliary parameter that play an important role in the convergence of the series solution.
Archive | 2014
Muhammad Sufyan Javed; Muhammad Naeem; Hafiz Abdul Wahab
Archive | 2014
Muhammad Afzal; Hafiz Abdul Wahab; Saira Bhatti; Muhammad Naeem; Muhammad Tauseef Qureshi
Archive | 2014
Hafiz Abdul Wahab; Tahir Khan; Muhammad Shakil; Saira Bhatti; Muhammad Naeem
Journal of Intelligent and Fuzzy Systems | 2018
Muhammad Gulistan; Naveed Yaqoob; Thomas Vougiouklis; Hafiz Abdul Wahab
Archive | 2015
Muhammad Shahzad; Sumaira Rehman; Rabia Bibi; Hafiz Abdul Wahab; Saleem Abdullah; Sarfraz Ahmed
Computational Ecology and Software | 2015
Ghulam Mustafa Assad; Muhammad Naeem; Hafiz Abdul Wahab
Journal of Nanofluids | 2018
Hassan Zeb; Hafiz Abdul Wahab; Muhammad Shahzad; Saira Bhatti; Muhammad Gulistan