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光吸收系数的英文

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"光吸收系数"怎么读用"光吸收系数"造句

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  • coefficient of light absorption (k)

例句与用法

  • Colourless optical glass test methods - coefficient of optical absorption
    光吸收系数测试方法
  • Measuring method for coefficient of optical absorption of optical crystals
    光学晶体光吸收系数测量方法
  • Testing method of light scattering and absorption coefficient for paper and pulps
    纸和纸浆的光散射和光吸收系数测定法
  • Coefficient of light absorption
    光吸收系数
  • The results indicate that with increasing the thickness of fes2 thin films , the electrical conductivity , the carrier concentration and the absorption coefficient decrease
    结果表明,随着薄膜厚度的增加, fes2的电阻率升高,载流子浓度下降,在高吸收区fes2薄膜的光吸收系数也呈下降趋势。
  • When tg . is too low , the film would grown too fast to well - proportioned or take in ion pb which could increase the absorption coefficient . it was found that tg of film ybilg was 10 lower than tg of film ybig
    温度过高时薄膜质量差,不易生长或容易脱落;温度过低,则不但会促进pb离子进入薄膜而增大薄膜光吸收系数,而且容易因为生长速度过大而导致薄膜的不均匀性甚至开裂。
  • Fe layers of different thickness have been converted to fes2 thin films by thermal sulfidation . the influence of the thickness on the crystal structure , electrical resistivity , carrier concentration , absorption coefficient and energy gap of fes2 thin films have been investigated
    采用硫化不同厚度的fe膜制备了不同厚度的fes2薄膜的方法,研究了不同厚度fes2薄膜的晶体结构、电阻率、载流子浓度、光吸收系数以及禁带宽度。
  • And it has a high absorption coefficient ( > 10 ~ 4cm ~ ( - 1 ) ) and a high conversion efficiency of ~ 25 % . in addition , elements sn and s are abundant and non - toxic in nature , which has good compatibility to environment . thus , it can be used as an absorbing layer material in the solar photovoltaic cells
    其具有很大的光吸收系数( > 10 ~ 4cm ~ ( - 1 ) ) ,且在理论上其能量转换效率最高可达到25 % ,其组成元素在地球上储存含量丰富,有很好的环境兼容性,因而非常适合于作为太阳能电池中的光吸收层。
  • Test and analysis some properties such as crystal structure , superficial resistivity , light transparence , absorption coefficient etc . obtain the best technical process and parameters with analyzing how film thickness , deposition rate , boat temperature , substrate temperature affect the films " structure and optical and electrical properties
    并对薄膜的晶相结构、电阻率、光透过率、光吸收系数等电学和光学性质进行了测试和分析。通过分析薄膜厚度、沉积速率、舟温、基温等工艺参数对薄膜结构及光电特性的影响,得出了制备复合光吸收层的最佳工艺参数以及工艺条件。
  • Fes _ 2 ( pyrite ) has been considered as a valuable semiconductor for solar energy conversion and other photoelectrochemical applications since it consists of nontoxic and abundant elements . because of the band gap of about 0 . 95ev and the very high light absorption coefficient ( < 700nm 时 , > 5 10 ~ 5cm ~ - 1 ) , it might be suitable for sensitization solar cells and in the form of ultrathin films
    Fes _ 2 ( pyrite )是一种具有合适禁带宽度( e _ g 0 . 95ev )和较高光吸收系数( < 700nm时, > 5 10 ~ 5cm ~ - 1 )的半导体材料,其组元元素储量十分丰富、无毒,而且在制备太阳能电池时可以以薄膜形式使用,成本较低,与已有半导体材料相比,是一种较有研究价值的太阳能电池材料。
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