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1.
The outermost region of a planet's atmosphere.
外大气圈行星大气层的最外部
2.
The Application of Quadrupole Mass Spectrometer in Planetary Atmosphere Study
四极质谱计在行星大气分析中的应用
3.
will image extrasolar planets and take spectra of their atmospheres,
就会描摹出太阳系外行星的情形,摄取行星大气层的光谱,
4.
The application of Mass spectrometer in planetary atmosphere and soil analysis
质谱计在行星大气和土壤成份分析中的应用
5.
Research on Real-time Rendering of Planet’s Atmospheric Scattering Effects based on GPU
基于GPU的行星大气散射效果实时渲染技术研究
6.
Most of the new planets are probably huge balls of gas, more like Jupiter than Earth.
大部分这些行星是与木星类似的气体行星。
7.
The planets' strong force of gravity holds huge amounts of hydrogen and helium gas.
行星的巨大引力吸引了大量的氢气和氦气。
8.
Analysis of the Planetary Waves in the Mesosphere and Lower Thermosphere;
中间层—低热层大气中的行星波研究
9.
Planetary Wave Examined from Ozone Profile Data of Odin-OSIRIS;
利用Odin-OSIRIS数据检测大气行星波
10.
It belongs to a classification of planets outside our solar system known as 'hot Jupiters' and has an atmospheric temperature of more than 700 degrees Celsius.
这颗行星属于太阳系之外的“热木星”,大气层温度超过摄氏700度。
11.
His study showed that most of the present atmospheric gases originated in each planet's interior.
他的研究表明,现有大气中的大部分气体都来源于诸行星的内部。
12.
Internal Structure and Atmospheric Composition of Super-Earths
系外类地行星的内部结构及大气成分研究进展
13.
greatest eastern elongation
(内行星,卫星) 东大距
14.
planets have temperatures near absolute zero and hydrogen- dominated atmospheres.
而外部行星温度都接近绝对零度,并围绕着以氢气为主的大气层。
15.
But these techniques only work with massive planets and, in general, giant planets are gaseous.
但这些技术仅对于大体积的行星有用,而从整体上看,大体积行星都由气体构成。
16.
Hydrogen is abundant in the universe, and can be gathered by ram scooping stars or gas giants.
氢在宇宙中是十分丰富的,可以被填充收集器在星球大气或巨型气体行星中收集。
17.
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。
18.
absorption and scattering of stellar atmosphere
恒星大气的吸收和散射