Dr. Waleed Othman Younis Othman

Professor
Imam Abdulrahman Bin Faisal University, Saudi Arabia


Highest Degree
Ph.D. in Physics from Cairo University, Egypt

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Area of Interest:

Physics
Electronic and Physics
Energy Transfer
Electric Power
Multi Physics

Selected Publications

  1. Abdelsalam, H., V.A. Saroka and W.O. Younis, 2019. Phosphorene quantum dot electronic properties and gas sensing. Phys. E: Low-Dimensional Syst. Nanostruct., 107: 105-109.
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  2. Abdelsalam, H., V.A. Saroka and W.O. Younis, 2019. Edge functionalization of finite graphene nanoribbon superlattices. Superlattices Microstruct., 129: 54-61.
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  3. Younis, W.O. and A. Hibbert, 2015. New atomic data for Ge XX. J. Quantitative Spectrosc. Radiative Transfer, 167: 119-125.
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  4. Younis, W.O., S.H. Allam and T.M. El-Sherbini, 2012. Laser gain calculations of the excited ion Mn XV. Int. Rev. Phys., 6: 433-438.

  5. Younis, W.O., S.H. Allam and T. El-Sherbini, 2011Younis, W.O., S.H. Allam and T. El-Sherbini, 2011. Laser gain for radiation in soft x-ray spectral region produced via electron collisional of Fe XVI ion. Int. Rev. Phys., 5: 105-110.

  6. Younis, W.O. and S.H. Allam, 2011. Relativistic energy levels and transition probabilities for the Al-Like ions (Z = 33-35). Int. Rev. Phys., 5: 207-246.
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  7. Younis, W.O. and S.H. Allam, 2011. Energy levels, oscillator strengths and transition probabilities for fine-structure transitions in Ar VI, KVII and Ca VIII. Int. Rev. Phys., 5: 199-206.

  8. Younis, W.O., S.H. Allam and T. El-Sherbini, 2010. Rate coefficients for electron impact excitation, dexcitation and laser gain calculations of the excited ions. Can. J. Phys. Natl. Res., 88: 257-269.

  9. Younis, W.O., S.H. Allam and T.M. El-Sherbini, 2006. Fine-structure calculations of energy levels, oscillator strengths and transition probabilities for sodium-like ions (Co XVII-Kr XXVI). Atomic Data Nucl. Data Tables, 92: 187-205.
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