1)  temperature jump
温度跃变
2)  T-jump method
温度跃变
3)  temperature
温度
1.
The control of temperature during the warming up of polymerizer;
聚合釜升温过程中温度的控制
2.
Interaction Effect of Flow Velocity and Temperature on Growth of Microcystis Aeruginosa;
流速与温度的交互作用对铜绿微囊藻生长的影响
3.
Experiment research on coal physical oxygen sorption law with temperature and particle size variation;
煤物理吸氧量随温度及粒径变化规律的试验研究
4)  temperatures
温度
1.
Theoretical Research of Temperatures in High Efficiency Deep Grinding(HEDG);
高效深磨中温度的理论分析
2.
Effects of temperatures and densities on starvation-tolerance and reproductive capacity of hibernating adults of Microvelia horvathi Lundblad:;
温度和密度对尖钩宽黾蝽越冬代成虫耐饥力和生殖力影响
3.
Toxicity of Methamidophos to Anastaus japonicus Ashmead under different temperatures;
不同温度条件下甲胺磷对荔枝蝽卵平腹小蜂的毒效实验
5)  water temperature
温度
1.
The influence of water temperature and salinity on the growth of Scrippsiella trochoidea;
温度和盐度对锥状斯氏藻生长的影响
2.
Excretions of dissolved nitrogen and phosphorus in Ruditapes philippinarum at different water temperatures in the Rushan Bay;
乳山湾菲律宾蛤仔可溶性氮、磷排泄及其与温度的关系
3.
The influence of stocking density and water temperature on growth in juvenile Esox lucius raised in greenhouse;
养殖密度和温度对白斑狗鱼在设施养殖中生长的影响
6)  Tempreture
温度
1.
The Influence of Tempreture on the Performance of Woven Geotextile Fabric with Polypropylene Fibre;
温度对丙纶机织土工布性能的影响
2.
Conclusion is made that to get quality tubes it is important to control proecess tempreture of finish,and the effect of second forming to modelbility of tubes.
从硬聚氯乙稀 (PVC)塑料纱管的塑化度入手 ,介绍了制品塑化度与其抗冲强度、屈服强度的关系 ;着重指出成型加工温度、二次加工对PVC塑化度的影
3.
Test carried out on stress change of Vulcanizate in compression process and after compression at different speed and different tempreture with electronic tensile test AG500A,The test results applieel to development of oil seals gains an excellent effect.
应用AG500A型电子拉力机对硫化橡胶在不同速度、温度下的压缩过程及压缩恒定后的应力变化进行了试验。
参考词条
补充资料:温度跃变
分子式:
CAS号:

性质:温度跃变装置及反光吸收测量用圆柱形温度跃变样品池的横截面。样品池材料通常为耐热有机玻璃或聚三氟氯乙烯聚合体。电极是镀铂的。透镜和锥形小窗是用能经受紫外光的石英制作的。温度扰动是由充电到高压(U0)的电容器产生一强电流I在短时间内通过反应池内的电解质而产生的热效应使温度跃升,反应池由镀铂的电极及检测用的石英窗构成,温度跃变的梯度函数为dT/dt=I2R/ρCpV,T=T0+CU02/2ρCpV[1-exp(-2t/RC)],当C=0.1μF,U0=30kV,R=50Ω(反应池内阻),V=2ml,放电时间t=4μs时,可产生温度跃变为T-T0=5K,为使反应池具有高电导,常在反应液中加入惰性电解质。

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