Cassini

基本解釋〈卡西尼〉土星探測(cè)器

網(wǎng)絡(luò)釋義

1)Cassini,〈卡西尼〉土星探測(cè)器2)Saturn detector,土星探測(cè)器3)Cassini orbiter,卡西尼號(hào)軌道器4)Satellite-borne detector,星載探測(cè)器5)Star detectors,星光探測(cè)器6)Mars probe,火星探測(cè)器

用法和例句

Based on the China\'s first Mars probe, the main purpose of this thesis is to have a research to their attitude control technology.

本文是以中國(guó)第一顆火星探測(cè)器為背景,著重對(duì)其姿態(tài)控制技術(shù)展開(kāi)研究。

) of China\'s first Mars probe are analyzed.

對(duì)中國(guó)第一顆火星探測(cè)器的功能與組成以及超遠(yuǎn)距離通信技術(shù),深空探測(cè)自主姿態(tài)確定與控制技術(shù),火星探測(cè)器熱控制技術(shù),火星探測(cè)器超低溫適應(yīng)等關(guān)鍵技術(shù)進(jìn)行了分析,并提出了關(guān)鍵技術(shù)的解決途徑,結(jié)合工程階段的技術(shù)狀態(tài),論述了中國(guó)火星探測(cè)器的設(shè)計(jì)特點(diǎn),對(duì)該探測(cè)器的研制以及后續(xù)相關(guān)型號(hào)任務(wù)的研制和生產(chǎn)具有良好的參考價(jià)值。

This paper′s aim is to reduce rocket engine fuel or to increase effective load of Mars probe through utilizing lunar gravitation to achieve energy saving.

提出了通過(guò)月球引力加速來(lái)節(jié)省火星探測(cè)器發(fā)射燃料的方法。

The Design Features and Research Processing of YH-1 Mars Probe

YH-1火星探測(cè)器設(shè)計(jì)及研制進(jìn)展

Efficiency Analysis of China’s Mars Detector Remote Control Tracking Network

我國(guó)火星探測(cè)器遙控跟蹤網(wǎng)效率分析

Orbit Design and STK-Based Simulation for YH-1 Spacecraft to Mars

螢火一號(hào)火星探測(cè)器的軌道設(shè)計(jì)和STK仿真

NASA's Mars detector, Opportunity, succeeded in finding signs that water once existed on the planet.

美國(guó)國(guó)家航空航天局的“機(jī)遇號(hào)”火星探測(cè)器于一月份在火星上著陸。

Attitude Control of Mars Probe during the Whole Mode Flight

火星探測(cè)器全模式飛行的姿態(tài)控制技術(shù)研究

Reconstruction of the Remote Tracking Network for Chinese Mars Explorer

我國(guó)火星探測(cè)器遙控跟蹤網(wǎng)的改造設(shè)計(jì)

Study of the Time-Space Bench Transformation of Mars Probe Orbital Motion Modeling

火星探測(cè)器軌道運(yùn)動(dòng)建模的時(shí)空基準(zhǔn)轉(zhuǎn)換研究

Development of an experiment system using for a Mars detector's materials testing at liquid helium temperature

火星探測(cè)器星外材料液氦溫區(qū)貯存試驗(yàn)系統(tǒng)的研制與試驗(yàn)驗(yàn)證

Nowadays nobody is laughing off the idea of Martian life, and that change in perception could affect the design of future Mars probes.

現(xiàn)在,沒(méi)有人會(huì)對(duì)火星生命僅僅付之一笑了,這種認(rèn)識(shí)的轉(zhuǎn)變將會(huì)影響下一代火星探測(cè)器的設(shè)計(jì)。

The Mars Global Surveyor, arrived at the red planet nine years ago.

火星環(huán)球探測(cè)器九年前到達(dá)了火星。

The two Viking spacecraft reached Mars successfully.

兩個(gè)海盜號(hào)探測(cè)器成功抵達(dá)了火星。

Joint Russian-Chinese Satellite-to-satellite Martian Radio Occultation Experiment

中俄聯(lián)合火星電離層星-星掩星探測(cè)

Preliminary Analysis of Martian Ionospheric Observation data Based on MGS Radio Occultation Experiment

基于MGS探測(cè)器掩星觀測(cè)的火星電離層數(shù)據(jù)初步分析

asteroid/meteoroid detector

小行星/流星體探測(cè)器

planetary and interplanetary probe

行星和行星際探測(cè)器

Mars Global Surveyor has operated longer than any spacecraft ever sent to the red planet.

火星環(huán)球探測(cè)器已經(jīng)運(yùn)行了比其它發(fā)送到火星上去的任何其它衛(wèi)星的時(shí)間都長(zhǎng)。

Satellite-to-satellite radio occultation technology for martian ionosphere exploration

用于火星電離層探測(cè)的星-星無(wú)線電掩星技術(shù)

Simulation of Satellite-to-Satellite Radio Occultation Technique to Explore Martian Ionosphere

星星間無(wú)線電掩星探測(cè)火星電離層的仿真

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