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1.
absorption and scattering of stellar atmosphere
恒星大气的吸收和散射
2.
Automatic prediction of stellar atmospheric parameters with neural network
基于神经网络的恒星大气参数自动测量
3.
A point worth emphasizing is that hydrostatic equilibrium is fulfilled with great accuracy in stellar atmosphere.
值得强调指出,在恒星大气中,流体静力平衡是非常精确地成立的。
4.
NLTE Effects of Li in Late-type Stellar Atmosphere;
晚型恒星大气中锂元素非局部热动平衡效应的研究
5.
Thick clouds of interstellar gas absorb most of the light and screen other stars from us.
恒星间气体所形成的厚云层,吸收大部分的光,并遮住其他星星。
6.
The largest stars are called giant stars.
最大的恒星叫做巨星。
7.
This is a very large circular collection of stars and gas that surrounds our Milky Way galaxy.
这是一个围绕银河系的恒星及大气圈群体。
8.
Usually if the star is small in mass, most of the gases will be consumed while some of it escapes.
通常如果恒星质量不大,大多数气体燃烧消耗,部分气体则会逃逸。
9.
Our sun is an average size star.
太阳是中等大小的恒星。
10.
Stars are radiators of vast power.
恒星是强大的发光体。
11.
It could also help illuminate how giant, gaseous exoplanets often come to orbit their parent stars so closely.
还有助于说明,巨大的气态外部行星如何这么近地围绕起源恒星的轨道运行。
12.
Around young stars, disks are found to range in shape.
在年轻恒星周遭的气盘,外形各有不同。
13.
Balloon-borne Ultra-violet Stellar Spectrometers
气球运载紫外线恒星分光仪
14.
A gaseous layer similar to a chromosphere around a star.
色球层象恒星光球一样的气体层
15.
A star is created when huge, gigantic, gas clouds bind together due to attractive forces and form a hot core, combined from all the energy of the two gas clouds.
引力作用使巨大的气云结合在一起,两团气云所有的能量共同形成一个热核,这时恒星就诞生了。
16.
The starts were formed from gases that originally permeated the whole galaxy.
恒星是由原来遍及于整个星系内的气体所形成。
17.
About three millions stars with the size of our sun could fit into Antares.
它能装进太阳大小的大约300万颗恒星。
18.
The black hole could then grow even stronger (from the star's mass) as to possibly absorb another.
吸收了恒星质量之后,黑洞进一步膨大,并有可能吞噬下一颗恒星。