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Faculty members

Content

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Bassam Abdulrahman M Shehadeh

College
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Personal data

    Scientific qualifications

    • Ph.D. in Theoretical Nuclear Physics - Iowa State University of Science and Technology - Ames, Iowa - USA
    • Master of Science in Experimental Atomic Physics - King Fahd University of Petroleum and Minerals - Dhahran - Saudi Arabia
    • Bachelor of Science majoring in Physics - King Saud University - Riyadh - Kingdom of Saudi Arabia

    Research interests

    • - The transition from regularity to chaos in nuclear systems.

    Published research

    • Review of Gamow-Teller and Fermi transition strength functions (2023-01-01)
    • Ab initio no-core shell model for light nuclei and other applications (2005-01-01)
    • Calculating Gamow-Teller and Fermi Strength Function Using Two-Particle Two-Hole (2024-01-01)
    • Systematic study of the L-subshell ionization cross sections of Ho, Er, and Tm by MeV α-particle bombardments (1999-01-01)
    • Thermal Properties of 4He, 16O and 40Ca Isotopes Using Harmonic Oscillator Nuclear Potential (2025-01-01)
    • Systematic Study of the L-Subshell Ionization Cross Sections of Ho, Er, and Tm by MeV a-Particle (1996-01-01)
    • Ab initio No-Core Shell Model--Recent results and future prospects (2005-01-01)
    • Statistical Properties of 56-57Fe with Multi-Shell Degrees of Freedom (2018-01-01)
    • Measurements of L-Subshell Ionization Cross Sections by energetic a particles for Ho, Er, and Tm (1994-01-01)
    • Statistical and thermal properties of mesoscopic systems: Application to the many-nucleon system (2003-01-01)
    • by Energetic o Particles for Ho, Er, and Tm. (1994-01-01)
    • Measurements of L-subshell ionization cross sections by energetic alpha particles for holmium, erbium, and thulium (1994-01-01)
    • Nucleon-Nucleon elastic and inelastic scattering using quantum field theory: a comparative study (2023-01-01)

    Teaching materials

    • 211 Fez: Traditional mechanics
    • 342 Phys: Statistical physics
    • 621 Fez: Classical electrodynamics
    • 652 Fez: Relativistic Quantum Mechanics
    • 653 Fez: Quantum Field Theory

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