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1)  peak response wavelength
峰值响应波长
2)  response peak wavelength
响应峰值波长
1.
The response peak wavelength of a quantum well infrared detector was predicted directly by measuring Raman spectrum of multiquantum well materials.
通过测量多量子阱材料的Raman散射谱,可以预测出:由该种材料制出的量子阱红外探测器的响应峰值波长。
3)  maximum response
峰值响应
1.
Simulation results demonstrate that the presented control method is effective in reducing maximum responses of structures.
算例结果显示 ,所提控制方法能够较好地控制系统的峰值响应 ;若按无时滞控制设计对时滞系统进行振动控制 ,系统响应有可能出现发
2.
The simulation results demonstrate that the presented control method is effective in reducing maximum responses of the systems, and the system stability can be guaranteed by using this control method.
算例结果显示 ,所提控制方法能够较好地控制系统的峰值响应 ,且能够保证控制系统的稳定性 ;若按无时滞控制设计对时滞系统进行振动控制 ,系统响应有可能发
3.
The simulation results demonstrate that the presented control method is effective in the reducing maximum responses of the sys.
算例结果显示,所提控制方法能够较好地控制系统的峰值响应,且能够保证控制系统的稳定性;若按无时滞控制设计对时滞系统进行振动控制,系统响应有可能出现发散。
4)  peak value of response
响应峰值
5)  peak wavelength
峰值波长
1.
Meanwhile,we also conduct an experiment on the change of luminous intensity,luminous flux and peak wavelength with current and time.
同时,对大功率白色发光二极管法向光强、光通量和峰值波长随电流和时间的变化情况做了分析,说明PN结温度对于大功率发光二极管的发光具有较大的影响。
2.
Different shifts of peak wavelengths of blue and red LEDs were studied by measuring the two kinds of LEDs under DC and pulse currents,and it demonstrates that it is the heat and polarization effects that influence the shifts of peak wavelengths.
通过对蓝光和红光发光二极管在直流和脉冲电流两种情况下进行变电流测试,对其峰值波长的偏移情况进行了深入的对比分析和研究,指出主要是热效应和极化效应两个因素造成蓝光LED的峰值波长发生偏移,并计算出热效应单独引起峰值波长偏移的温度系数为0。
3.
Peak wavelength,bandwith,domain wavelength,and centroid wavelength are factors affecting on light color of LED.
影响发光二极管 (L ED)颜色的光谱参数有 :峰值波长、带宽、主波长和质心波长。
6)  long-wave response
长波响应
1.
The long-wave response 800~815 nm decreases largely,cut-off wavelength and peak value wave.
结果显示,铟封后阴极整个响应波段的光谱响应下降,长波响应受到最显著的影响,表现为800~815 nm之间长波响应大幅度衰减,截止波长和峰值波长向短波移动,峰值响应和积分灵敏度减小,最终的光谱响应曲线变得平坦。
补充资料:第二峰值法试验
分子式:
CAS号:

性质:一种检验不锈钢晶间腐蚀倾向的快速的电化学方法。对敏化的不锈钢试样在1mol/L  H2SO4中测定阳极极化曲线,曲线上在比活化钝化峰更正的电位下出现第二峰,峰的高度可以表示晶间腐蚀倾向的大小。也可在第二峰值电位下保持2h,然后进行弯曲试验,根据试样的裂纹判断晶间腐蚀倾向。

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