15 resultados para 78-543A

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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Direct current SQUIDs (superconducting quantum interference devices) have been successfully fabricated by using a Pb-doped BiSrCaCuO superconducting thin film made by mixed evaporation of a single source composed of related components with a resistance heater. The dc SQUID comprises a square washer with a small hole. These SQUIDs show perfectly periodic voltage-flux characteristics without magnetic shield, that is, typically, the flux noise and energy resolution at a frequency range from dc to 1 Hz and at 78 K being 1.7 x 10(-3) PHI-0/ square-root Hz and 3.6 x 10(-26) J/Hz, respectively. Meanwhile, we have found out that one of the SQUIDs still was able to operate on flux-locked mode without bias currents and showed voltage-flux second harmonic characteristics. This phenomenon is not well understood, but it may be related to I-V (current-voltage) characteristics of the dc SQUID.

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Ridge-waveguide distributed-feedback(DFB) lasers with highly strained InGaAs/InGaAsP active regions,emitting at 1.78 μm were fabricated by low pressure metal-organic vapor phase epitaxy(LP-MOVPE) and tested.The lasers exhibited threshold current of 33 mA for 900 μm long cavities at room temperature.A maximum light output power of 8 mW from one facet and an external differential quantum efficiency of 7% were also obtained.In oddition,the side mode suppression ratio (SMSR) is 27.5 dB.

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研究了科尔沁沙地 78种植物的繁殖体 (2 3种为种子 ,5 5种为果实 )重量和形状 ,其重量差别很大 ,最小的单粒重不足 0 .1mg,最大的超过 130 mg;形状差异也很大 ,最小的方差不足 0 .0 3,最大的超过 0 .18。综合本研究和以前研究的全部 14 0种植物的研究结果 ,进行了分析。结果表明 :1计有 2 4种植物繁殖体单粒重小于 1mg并接近圆球形 (方差小于 0 .0 9) ,它们可能具有持久种子库 ;2 1年生植物 (平均方差为 0 .0 70 )与 2年生植物 (平均方差为 0 .12 9)间的形状差异显著 (P<0 .0 5 ) ,2年生植物的繁殖体更加扁、长 ;1年生植物也与多年生草本植物 (平均方差为 0 .10 9)之间形状差异显著 (P<0 .0 5 ) ,多年生草本植物的繁殖体更加扁、长 ;3有 5 5 %的豆科植物、70 %的藜科植物繁殖体接近圆球形 (方差 <0 .0 6 ) ,所有的菊科、萝摩科植物繁殖体都很扁、长 (方差 >0 .0 6 )。豆科植物显著比菊科、禾本科、藜科植物繁殖体的重量大 (P<0 .0 5 ) ;4繁殖体附属物在植物的传播和定居方面具有重要的作用 :6种萝摩科植物和 3种杨柳科植物具有绢毛 ,6 0 %的菊科植物具有冠毛 ,6种植物有翅 ,8种植物有宿存花柱或宿存花萼 ,这些植物可能易于被风传播 ;5 4 %的禾本科植物具芒 ,减小了传播可能 ;苍耳、雾冰藜、鹤虱、蒺藜、

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GRP78 (78 kDa glucose-regulated protein), also known as BiP (immunoglobulin heavy-chain-binding protein), is an essential regulator of endoplasmic reticulum (ER) homeostasis because of its multiple functions in protein folding, ER calcium binding, and controlling of the activation of transmembrane ER stress sensors. In this report, we cloned the full length cDNA of GRP78 (FcGRP78) from Chinese shrimp Fenneropenaeus chinensis. This cDNA revealed a 2,325 bp with 1,968 bp open reading frame encoding 655 amino acids. This is the first reported GRP78 gene in Crustacea. The deduced amino acid sequence of FcGRP78 shared high identity with previously reported insect GRP78s: 86, 87 and 85% identity with GRP78s of Drosophila melanogaster, Aedes aegypti and Bombyx mori, respectively. Northern blot analysis shows that FcGRP78 is ubiquitously expressed in tissues of shrimp. Heat shock at 35A degrees C significantly enhanced the expression of FcGRP78 at the first hour, reached the maximum at 4 h post heat shock, dropped after that and resumed to the normal level until 48 h of post recovery at 25A degrees C. Additionally, differential expression of FcGRP78 was detected in haemocytes, hepatopancreas and lymphoid organ when shrimp were challenged by white spot syndrome virus (WSSV). We inferred that FcGRP78 may play important roles in chaperoning, protein folding and immune function of shrimp.

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Molar heat capacities of n-butanol and the azeotropic mixture in the binary system [water (x=0.716) plus n-butanol (x=0.284)] were measured with an adiabatic calorimeter in a temperature range from 78 to 320 K. The functions of the heat capacity with respect to thermodynamic temperature were established for the azeotropic mixture. A glass transition was observed at (111.9 +/- 1.1) K. The phase transitions took place at (179.26 +/- 0.77) and (269.69 +/- 0.14) K corresponding to the solid-liquid phase transitions of. n-butanol and water, respectively. The phase-transition enthalpy and entropy of water were calculated. A thermodynamic function of excess molar heat capacity with respect to temperature was established, which took account of physical mixing, destructions of self-association and cross-association for n-butanol and water, respectively. The thermodynamic functions and the excess thermodynamic ones of the binary systems relative to 298.15 K were derived based on the relationships of the thermodynamic functions and the function of the measured heat capacity and the calculated excess heat capacity with respect to temperature.