Quantum Impedance of Proton and Beta Particle by Employing the DE-Broglie Hypothesis alongside Heisenberg’s Uncertainty Principle
Aljomaily, F., Najam, L., Jasim, H., Abdulfattah, R. (2021). Quantum Impedance of Proton and Beta Particle by Employing the DE-Broglie Hypothesis alongside Heisenberg’s Uncertainty Principle. EKB Journal Management System, 64(1), 55-62. doi: 10.21608/ejchem.2020.31036.2689
Firas Aljomaily; Laith Najam; Hala Jasim; Rana Abdulfattah. "Quantum Impedance of Proton and Beta Particle by Employing the DE-Broglie Hypothesis alongside Heisenberg’s Uncertainty Principle". EKB Journal Management System, 64, 1, 2021, 55-62. doi: 10.21608/ejchem.2020.31036.2689
Aljomaily, F., Najam, L., Jasim, H., Abdulfattah, R. (2021). 'Quantum Impedance of Proton and Beta Particle by Employing the DE-Broglie Hypothesis alongside Heisenberg’s Uncertainty Principle', EKB Journal Management System, 64(1), pp. 55-62. doi: 10.21608/ejchem.2020.31036.2689
Aljomaily, F., Najam, L., Jasim, H., Abdulfattah, R. Quantum Impedance of Proton and Beta Particle by Employing the DE-Broglie Hypothesis alongside Heisenberg’s Uncertainty Principle. EKB Journal Management System, 2021; 64(1): 55-62. doi: 10.21608/ejchem.2020.31036.2689