992 resultados para 325-M0037A


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利用能量为165 MeV的32S束流, 通过反应118Sn(32S, 1p4n)布居了145Tb的高自旋态. 基于标准在束核谱学实验测量结果, 首次建立了激发能高达 7.4 MeV的145Tb能级纲图. 145Tb的能级结构具有球形原子核的特征, 其高自旋态是由单粒子激发形成的. 根据邻近N = 80同中子素核结构的系统性, 采用一个11/2h价质子与偶偶核芯144Gd的弱耦合很好地解释了145Tb激发能在2 MeV以下的能级结构. 利用多准粒子壳模型组态解释了激发能在2 MeV以上的晕态和部分近晕态能级.

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本文介绍了重离子束的基本特性和在生命科学应用中的优势,以及它的能区划分,传能线密度LET,相对生物效率RBE等,分别叙述了中、高能和低能离子束与介质作用的特点、在农学中应用的模式及其吸收剂量的计算,最后还对一些机理问题进行了简单讨论。

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描述了一个 5× 5阵列带电粒子 PHOSWICH闪烁探测器望远镜结构。它的每一个单元由 1片厚度为 1mm,面积为 2 4 mm× 2 4 mm快塑料闪烁体 NE10 2 A和 1个前表面为 2 4 mm× 2 4 mm,后表面为 37mm×37mm,厚度为 4 0 mm的 Cs I( Tl)晶体组成的。在兰州放射性离子次级束流线 ( RIBL L )上测试到 Z/ΔZ =2 0

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在入射能量E为40和100MeV/u时,对~(112)Sn+~(112)Sn和~(124)Sn+~(124)Sn两个反应系统在不同碰撞参数下进行了同位旋相关的量子分子动力学模型计算,系统研究了阻塞率、线性动量转移、荷电粒子多重性、轻荷电粒子多重性、中子多重性以及束缚核总电荷Z_(bound)随碰撞参数的变化规律,结果表明,中子多重性对碰撞参数的依赖在两个能量下都存在着明显的同位旋效应,Z_(bound)在E为40MeV/u时存在着同位旋效应.同时讨论了在较低和较高能量时如何更合理地确定反应事件的碰撞参数.

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中能重离子碰撞中的核反应机制及其形成的高激发热核的性质是中能重离子物理研究的重要领域,而高激发热核性质的同位旋效应研究是这一领域的热点之一。选取了具有不同N亿比的反应体系以研究激发热核性质的同位旋效应。本论文涉及的反应系统三对共六个反应体系:55MeV/u~(40)Ar+~(58.64)Ni、30MeV/u~(40)Ar+~(112,124)Sn、35Mev/u~(36)Ar+~(112,124)Sn,这六个反应体系的N/z比分别为1.13,1.26、1.24,1.41、1.18,1.35。分别从带电粒子多重性、相对态布居核温度、关联函数等角度研究了这三对反应体系高激发热核性质的同位旋效应。在55MeV/u 40Ar+58,64Ni核反应中,用兰州4π带电粒子探测器阵列测量带电粒子多重性,研究了He和中等质量碎片的产额与反应系统的同位旋的关系,以及这种同位旋效应与反应系统的碰撞参数(即碰撞的激烈程度)、系统的激发能的变化关系。对两个反应系统,观察到带电粒子多重性中He的比分随带电粒子多重性的增加而增大,带电粒子多重性中IMF的比分随带电粒子多重性的增加而先增大,后减小的规律。两个反应系统虽然具有相同的核电荷数,但轻粒子He和中等质量碎片在多重性中的比分有明显的同位旋相关性。在30Mev/u40Sn、35MeV/u~(40)Ar~(112,124)Sn、35Mev/u 36Ar+112,124Sn反应中用13单元望远镜探测器阵列测量了小角关联粒子。由价a关联函数提取了30Mev/u 40Ar+112,12Sn反应系统中激发热核的态布居核温。对于不同同位旋反应系统舜UAr+112Sn和4VAr+124Sn,提取的相对杰布居核温度分别是4.18+0.28/0.21MEV和4.10士0.22/0.20MeV;考察态布居核温度和粒子能量的关薰时,观察到两个系统的发射温度均随着粒子能量的增加而降低,缺中子系统40Ar+l12Sn中由低能时的5.13士.30/0.26MEV降低到高能时的3.87士0.37/0.29MeV,丰中子系统40Ar+124Sn中由低能时的5.39士0.30/0.26MeV降低到高能时的3.32士MeV。讨论了这种布居态核温度的同位旋相关性。在35Mev/u 36Ar+112,124Sn反应中提取了洲F(3‘25)的约化速度关联函数。相对丰中子36Ar+124Sn系统的IMF关联函数在小约化速度处反关联程度更强,表明36Ai+124Sn系统的发射IMF的平均时间更短。用MENEKA程序提取了两个系统IMF的平均发射时间,36Ai+112sn反应中IMF的发射时间约为150fm/c,而36Ar十124Sn反应IME的发射时间稍短,约为120fm/c。以关联IMF的单核子总能量/动量为窗条件,发现低能IMF关联函数几乎没有差别,而高能IMF关联函数在小约化速度处的差别更为明显,表明两个系统IMF关联函数的同位旋效应可能来自于IMF的早期发射。为了得到进一步的信息,我们提取了高动量窗条件下的IMF发射时间,它们比平均发射时间短,36Ar+112Sn反应中高能IMF的发射时间约为100蒯c,而36Ai+124Sn反应中IMF的发射时间则更短,约为50fm/c。

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MCM-22 zeolite with mid-strong acidity and openings of 10-membered ring channels may obtain a high catalytic activity and selectivity for alkylation of toluene with methanol. The acidic sites, for catalyzing alkylation of toluene with methanol, are weaker than that for catalyzing toluene disproportionation. Compared with silicon as a modifier, modification of MCM-22 with La(NO3)(3) is a promising way to improve the catalytic selectivity of para-xylene. In addition, the experimental results also clearly indicate the characteristics of MCM-22 structure consisting of large intracrystalline cages, some of which may locate on surface of MCM-22. (C) 2004 Elsevier B.V. All rights reserved.

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Molar heat capacities of ibuprofen were precisely measured with a small sample precision automated adiabatic calorimeter over the temperature range from 80 to 400 K. The polynomial functions of C-p,C-m (J K-1 mol(-1)) versus T were established on the heat capacity measurements by means of the least fitting square method. The functions are as follows: for solid ibuprofen, at the temperature range of 79.105 K less than or equal to T less than or equal to 333.297 K, C-p,C-m = 144.27 + 77.046X + 3.5171X(2) + 10.925X(3) + 11.224X(4), where X = (T - 206.201)/127.096; for liquid ibuprofen, at the temperature range of 353.406 K less than or equal to T less than or equal to 378.785 K, C-p,C-m = 325.79 + 8.9696X - 1.6073X(2) - 1.5145 X-3, where X = (T - 366.095)/12.690. A fusion transition at T = 348.02 K was found from the C-p-T curve. The molar enthalpy and entropy of the fusion transition were determined to be 26.65 kJ mol(-1) and 76.58 J mol(-1) K-1, respectively. The thermodynamic functions on the base of the reference temperature of 298.15 K, (H-T - H-298.15) and (S-T - S-298.15), were derived. Thermal characteristic of ibuprofen was studied by thermo-gravimetric analysis (TG-DTG) and differential scanning calorimeter (DSC). The temperature of fusion, the molar enthalpy and entropy of fusion obtained by DSC were well consistent with those obtained by adiabatic calorimeter. The evaporation process of ibuprofen was investigated further by TG and DTG, and the activation energy of the evaporation process was determined to be 80.3 +/- 1.4 kJ mol(-1). (C) 2003 Elsevier B.V. All rights reserved.

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该文应用LANDIS模拟大兴安岭图强林业局森林景观1987年特大火灾后,在不同的火干扰条件(不模拟火、火烧轮回期为150年和325年)和不同人工更新方式(完全自然更新、种植落叶松和种植樟子松),3×3种(共9种)模拟方案下300年的动态变化.研究结果表明:火烧轮回期为150年条件下的火烧明显比火烧轮回期为325年方案下的火烧频繁,总的过火面积也多,但前者以轻度火为主,后者以重度火为主.而人工更新下(无论是种植落叶松还是种植樟子松)过火面积要高于自然更新下的过火面积.造林树种的不同对火也有较大的影响,种植樟子松方案下的过火面积相对较大.不同火干扰条件不仅会影响森林主要物种组成面积,而且还会造成其年龄结构的巨大差异.一般而言,火烧轮回期长有利于低耐火性物种,火烧轮回期短有利于高耐火性物种.但如果物种具有很强的种子扩散和定居更新能力,无论该物种的耐火性高还是低,火烧轮回期短则更利于该物种的生存,但幼龄林所占的比重较大.不同的种植更新方案对于森林物种有显著的影响,可以明显地增加所种植的物种在该区所占的比例.

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Porous polytetrafluoroethylene (PTFE) membranes were used as support material for Nafion((R))/PTFE composite membranes. The composite membranes were synthesized by impregnating porous PTFE membranes with a self-made Nafion solution. The resulting composite membranes were mechanically durable and quite thin relative to traditional perfluorosulfonated ionomer membranes (PFSI); we expect the composite membranes to be of low resistance and cost. In this study, we used three kinds of porous PTFE films to prepare Nafion/PTFE composite membranes of different thickness. Scanning electron micrographs and oxygen permeabilities showed that Nafion resin is distributed uniformly in the composite membrane and completely plug the micropores, there is a continuous thin Nation film present on the PTFE surface. The variation in water content of the composite and Nafion 115 membranes with temperature was determined. At the same temperature, water content of the composite membranes was smaller than that of the Nafion 115. In both dry and wet conditions, maximum strength and break strength of C-325(#) and C-345(#) were larger than those of Nafion 112 due to the reinforcing effect of the porous PTFE films. And the PEMFC performances and the lifetime of the composite membranes were also tested on the self-made apparatus. Results showed that the bigger the porosity of the substrate PTFE films, the better the fuel cell performance; the fuel cell performances of the thin composite membranes were superior to that of Nation 115 membrane; and after 180 h stability test at 500 mA/cm(2), the cell voltage showed no obvious drop. (C) 2002 Published by Elsevier Science B.V.

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