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铟字的意思

铟
拼音yīn
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统一码

铟字UNICODE编码U+94DF,UTF-32: 000094df,UTF-8: E9939F。

详细解释

yīn

1、一种软的有延展性的易熔银白色金属元素,原子序数49,不易失去光泽,与铝和镓类似,主要是三价,在闪锌矿和其他矿石中有很小量存在,主要作飞机用的涂敷铅的银轴承的镀层 ——元素符号In。

例句

例如,人们以前认为铟的原子质量介于砷和硒之间。

Indium, for example, had previously been assigned an atomic mass between those of arsenic and selenium.

铟的高成本是一个需要考虑的问题。

The high cost of indium is a consideration.

金属铟是重要的稀有金属新材料。

Metal indium is an important rare metal new material.

封铟实验可以区分这两条氧原子流。

The two currents can be distinguished by indium seal experiment.

一种是氧化锡铟。

One is indium tin oxide.

这种铟同位素与地球产生在同一时代。

This indium isotope was created at the same time as the earth.

基于图像处理的铟钢尺自动检测系统。

Automatic Measurement System of Invar Rods Based on Image Processing.

这些新技术为分离回收铟提供了新的选择。

The technologies will open up some new approaches for the separation of indium.

目前为止,光电薄膜最有效的材质是铜铟硒化镓(CIGS)。

The most effective material for thin-film photovoltaics so far is copper indium gallium selenide (known as CIGS).

光伏电池依赖于非晶态或晶态的硅,碲化镉或者硒化、硫化铜铟。

Photovoltaic cells rely on amorphous or crystalline silicon, cadmium telluride, or copper indium selenide and sulfide.

铟锡氧化物(ito)是制造透明电极的重要材料。

ITO is important material of making the transparent electrode.

进一步分析了铟封过程中影响阴极表面激活层的因素。

The influencing factors on the surface activation layers during indium seal are also analyzed.

在此条件下,铟和锌的挥发率分别达到97%和95%。

The volatilizing rates of indium and zinc reach 97% and 95%, respectively.

随着铟需求量的稳定增长,铟的回收技术越来越受到重视。

The technology for indium recovery becomes more and more important with the steady increase of indium demand.

铟的这些特性使其在碱性锌锰电池中较好地起到代汞的作用。

With these characteristics, indium could play an important role like mercury in alkaline zinc manganese battery.

铟锡氧化物超出寻常的昂贵,因为它是由珍贵的的原料构成的。

ITO is exceedingly expensive, because it's made of rare materials.

介绍了铟的生产工艺及应用,并对铟的开发前景进行了预测。

Technical process and application of indium are described, and its future is also predicted.

论述了世界生产铟的主要国家的资源、生产、应用和铟市场走势。

Resource, production, application and indium market trend in main countries producing indium were discussed.

探讨了铟在基夫·塞特直接炼铅工艺主要工序中的富集规律和机理。

This paper explores the enrichment law and mechanism of indium in the main steps of KIVCET process.

对锑化铟-铟共晶薄膜磁阻元件的齿轮转速传感器电路进行了研究。

The gear velocity sensor made up of a InSn-In eutectic film magnetoresistor(MR) is studied.

他认为不仅砷属于在磷下面,我预言还有一个元素,是在铝之上和铟的下边的。

He says not only does arsenic belong under phosphorus, I predict that there is an element that lies below aluminum and above indium.

由于钼元素参与镓、铟和铊的原子化反应,从而改变了原子化机理,提高了原子化效率。

Because molybdenum participated in atomization reaction of gallium, indium and thallium, it can change atomization mechanism and improve atomization efficiency.

利用上述反应拟定了测定铟的方法,经过适当处理,可用于锡箔和铅挖样中微量铟的测定。

The method can be used to determine indium in tin foil and lead excavation sample with satisfactory results.

现代的LED生产商通过精确的控制铟,镓,铝和氮在晶体层中的比例,来制造蓝色的光亮。

Modern LED makers accomplish this by using precise ratios of indium, gallium, aluminum, and nitrogen for the crystal layer, which results in a bluish color.

利用氧化铟易于溶于酸性溶液的性质,提出了在倒装焊接之前使用酸性溶液对铟柱进行酸洗。

This article presents acid could be used to wash the indium bumps before flip chip bonding, based on indium oxide dissolved in acid.

这些微晶是一种叫作磷化铟的半导体化合物,它们被喷撒在一张透明塑料薄片上,然后用另一张薄片盖好。

The dots, composed of a semiconductor called indium phosphide, are sprayed onto a transparent plastic sheet that is then covered with a second sheet.

该设备的电极由被称为共晶镓-铟的独特液态金属制成,当它延展和松弛时,该液态金属沿一个表面变化。

The device's electrode is made from a unique liquid metal called eutectic gallium-indium, which conforms to a surface as it lengthens and relaxes.

指出目前国内生产铟的主要方法是采用浸出—萃取—置换工艺回收铅、冶炼副产品中的金属铟。

The main process of producing indium in China is leaching-extraction-replacement, which is adopted to reclaim indium from lead and zinc metallurgical byproducts.

碲和铟的短缺可能破灭一些型号的薄膜太阳能电池的开发前景,但不是所有。其他的型号也许能弥补上空白。

Limited supplies of tellurium and indium could reduce the prospects for some types of thin-film solar cells, though not for all; the other types might be able to take up the slack.

碲和铟的短缺可能破灭一些型号的薄膜太阳能电池的开发前景,但不是所有。其他的型号也许能弥补上空白。

Limited supplies of tellurium and indium could reduce the prospects for some types of thin-film solar cells, though not for all; the other types might be able to take up the slack.