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Determination of Gum Arabic (<i>Acacia nilotica</i>) Constituents Using Laser Induced Breakdown Spectroscopy
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作者 Mashair ahmed mohammed Yousif Nafie A. Almuslet +3 位作者 Elfatih A. Hassan Fatima Medany Mohamed Taha mohammed idriss ahmed mohammed Abeer Eltaybe Fagir Osman 《Natural Science》 2021年第3期91-102,共12页
In this work, Laser Induced Breakdown Spectroscopy (LIBS) was used to determine the constituent of Gum Arabic (<i><span>Acacia nilotica</span></i><span>) collected from five different loc... In this work, Laser Induced Breakdown Spectroscopy (LIBS) was used to determine the constituent of Gum Arabic (<i><span>Acacia nilotica</span></i><span>) collected from five different locations in Sudan. Gum samples were irradiated with 80 mJ pulse energy of Nd-YAG laser (1064 nm) and Atomic spectra Database was used for the spectral analysis of the plasma emitted from these samples. It was found that the samples contain the elements C, O, H, S, N, P, Na, Mg, Ca, Fe, Cr, Mn, Co with different amounts. Some elements like (Ti, Br, Ar, Th, Kr, Sc and Pr) are recorded here for the first time.</span> 展开更多
关键词 Gum Arabic LIBS Laser Spectroscopy Gum Investigation
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Explanation of Magnetic Destruction of Superconductor Using Schrodinger Equation in the Energy Space
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作者 Einas Mohamed ahmed Mohamed mohammed idriss ahmed mohammed +2 位作者 Mubarak Dirar Abd-Alla Mohamed Yahia Shergaui Saffa Elsiddig Abd Magid 《Natural Science》 2020年第3期174-180,共7页
The Wave function of Schrodinger Equation is expressed in terms of time dependent energy eigen function and spatial dependent wave function in the energy space, which gives spatial energy probability. This equation is... The Wave function of Schrodinger Equation is expressed in terms of time dependent energy eigen function and spatial dependent wave function in the energy space, which gives spatial energy probability. This equation is utilized to find quantum momentum dependent on temperature. This in turn is used to find quantum complex resistance. This expression shows that the superconducting resistance vanishes for temperatures less than a certain critical value. This result conforms to superconductor conventional theory and empirical relations. The application of external magnetic field destroys superconductivity when its strength exceeds a certain critical value. The expression of the relationship between the critical magnetic field and the critical temperature is typical to the conventional one. This is the first time to obtain the conventional relationship for the superconductor’s resistance and critical magnetic field in one model in the energy space. 展开更多
关键词 Superconductivity SCHRODINGER Equation ENERGY SPACE External MAGNETIC Field Complex Resistance
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