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8篇 您的检索式:作者名="Humaira S"
    题名 作者 年代 出处 被引量
1Etiological patterns of stroke in young patients at a tertiary care hospital显示文摘Samiullah S Humaira M Hanif G 2010J Pak Med Assoc2010,60,3:1
2Vulnerability and adaptability of wheat production in different climatic zones of Pakistan under climate change scenarios显示文摘Humaira S Nazim A M Mohsin I 2009Climatic Change2009,94,:1
3Vulnerability and adaptability of wheat production in different climatic zones of Pakistan under climate change scenarios显示文摘Humaira S Nazim A M Mohsin I 2009Climatic Change2009,94,2:1
4Etiological patternsof stroke in young patients at a tertiary care hospital显示文摘Samiullah S Humaira M Hanif G 0,,03:1
5Synthesis,structure and characterization of some schiff bases bearing phenylferrocene显示文摘FAIZULLAH S ZAREEN A HUMAIRA M 2007Applied Organometallic Chemistry2007,6,21:1
6Etiological pat- terns of stroke in young patients at a tertiary care hospital显示文摘SAMIULLAH S HUMAIRA M HANIF G 2010J Pak Med Assoc2010,60,3:1
7Synthesis,structure and characterization of some Schiff bases bearing phenylferrocene显示文摘FAIZ U S ZAREEN A HUMAIRA M 0,,21:1
8Effect of particle size distribution on magnetic behavior of nanoparticles with uniaxial anisotropy显示文摘The effect of particle size distribution on the field and temperature dependence of the hysteresis loop features like coercivity(H_C), remanence(M_R), and blocking temperature(T_B) is simulated for an ensemble of single domain ferromagnetic nanoparticles with uniaxial anisotropy. Our simulations are based on the two-state model for T < T_B and the metropolis Monte-Carlo method for T > T_B. It is found that the increase in the grain size significantly enhances H_C and T_B. The presence of interparticle exchange interaction in the system suppresses H_C but causes MRto significantly increase.Our results show that the parameters associated with the particle size distribution(D_(d,δ)) such as the mean particle size d and standard-deviation δ play key roles in the magnetic behavior of the system.S Rizwan Ali Farah Naz Humaira Akber M Naeem S Imran Ali S Abdul Basit M Sarim Sadaf Qaseem 2018Chinese Physics B2018,27,9:0
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