选课中心
7099人选课
GRE公开讲座
0元
GMAT公开讲座
0元
一对一体验课
99元
GRE模考网站
10000人
托福TPO模考网站HOT
39209人预约
GRE辅导课程
17537 人
GMAT辅导课程
17537 人
托福辅导课程
17537 人
【定制】1v1
私人订制
资料下载
考前冲刺
扫码关注掌握一手留学资讯
回复XDF免费领
水平测试和备考资料
扫码关注公众号
【GRE阅读题目解析:红巨星超巨星的身世之谜】GRE考试考什么?GRE阅读是重点。新东方在线GRE频道为大家带来GRE阅读题目解析:红巨星超巨星的身世之谜,答案见下一页,希望对大家GRE备考有所帮助。更多精彩尽请关注新东方在线GRE频道!
查看全部:GRE阅读答案解析(汇总)
GRE阅读题目解析:红巨星超巨星的身世之谜
P2
Until recently astronomers have been puzzled by the fate of red giant and supergiant stars. When the core of a giant star whose mass surpasses 1.4 times the present mass of our Sun (M⊙) exhausts its nuclear fuel, it is unable to support its own weight and collapses into a tiny neutron star. The gravitational energy released during this implosion of the core blows off the remainder of the star in a gigantic explosion, or a supernova.
Since around 50 percent of all stars are believed to begin their lives with masses greater than 1.4M⊙, we might expect that one out of every two stars would die as a supernova. But in fact, only one star in thirty dies such a violent death. The rest expire much more peacefully as planetary nebulas. Apparently most massive stars manage to lose sufficient material that their masses drop below the critical value of 1.4 M⊙ before they exhaust their nuclear fuel. Evidence supporting this view comes from observations of IRC+10216, a pulsating giant star located 700 light-years away from Earth. A huge rate of mass loss (1 M⊙ every 10,000 years) has been deduced from infrared observations of ammonia (NH3) molecules located in the circumstellar cloud around IRC+10216.
Recent microwave observations of carbon monoxide (CO) molecules indicate a similar rate of mass loss and demonstrate that the escaping material extends outward from the star for a distance of at least one light-year. Because we know the size of the cloud around IRC+10216 and can use our observations of either NH3 or CO to measure the outflow velocity, we can calculate an age for the circumstellar cloud. IRC+10216 has apparently expelled, in the form of molecules and dust grains, a mass equal to that of our entire Sun within the past ten thousand years. This implies that some stars can shed huge amounts of matter very quickly and thus may never expire as supernovas. Theoretical models as well as statistics on supernovas and planetary nebulas suggest that stars that begin their lives with masses around 6 M⊙ shed sufficient material to drop below the critical value of 1.4M⊙. IRC+10216, for example, should do this in a mere 50,000 years from its birth, only an instant in the life of a star.
But what place does IRC+10216 have in stellar evolution? Astronomers suggest that stars like IRC+10216 are actually “protoplanetary nebulas” -old giant stars whose dense cores have almost but not quite rid themselves of the fluffy envelopes of gas around them. Once the star has lost the entire envelope, its exposed core becomes the central star of the planetary nebula and heats and ionizes the last vestiges of the envelope as it flows away into space. This configuration is a full-fledged planetary nebula, long familiar to optical astronomers.
2. The primary purpose of the passage is to
(A) offer a method of calculating the age of circum-stellar clouds
(B) describe the conditions that result in a star‘s expiring as a supernova
(C) discuss new evidence concerning the composition of planetary nebulas
(D) explain why fewer stars than predicted expire as supernovas
(E) survey conflicting theories concerning the composition of circumstellar clouds
3. The view mentioned in the middle of the second paragraph serves to
(A) reconcile seemingly contradictory facts
(B) undermine a previously held theory
(C) take into account data previously held to be insignificant
(D) resolve a controversy
(E) question new methods of gathering data
4. It can be inferred from the passage that the author assumes which of the following in the discussion of the rate at which IRC+10216 loses mass?
(A) The circumstellar cloud surrounding IRC+10216 consists only of CO and NH3 molecules.
(B) The circumstellar cloud surrounding IRC+10216 consists of material expelled from that star.
(C) The age of a star is equal to that of its circumstellar cloud.
(D) The rate at which IRC+10216 loses mass varies significantly from year to year.
(E) Stars with a mass greater than 6 M⊙ lose mass at a rate faster than stars with a mass less than 6 M⊙ do.
5. According to information provided by the passage, which of the following stars would astronomers most likely describe as a planetary nebula?
(A) A star that began its life with a mass of 5.5 M⊙, has exhausted its nuclear fuel, and has a core that is visible to astronomers
(B) A star that began its life with a mass of 6 M⊙, lost mass at a rate of 1 M⊙ per 10,000 years, and exhausted its nuclear fuel in 40,000 years
(C) A star that has exhausted its nuclear fuel, has a mass of 1.2 M⊙, and is surrounded by a circumstellar cloud that obscures its core from view
(D) A star that began its life with a mass greater than 6 M⊙, has just recently exhausted its nuclear fuel, and is in the process of releasing massive amounts of gravitational energy
(E) A star that began its life with a mass of 5.5 M⊙, has yet to exhaust its nuclear fuel, and exhibits a rate of mass loss similar to that of IRC+10216
资料下载
2024中国学生留学备考白皮书下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
GRE高频真词表资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
GRE数学-OG官方150题资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
GRE数学常用词汇资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
2024GRE数学重点突破资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
2024GMAT模考题&答案资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
GRE&GMAT阅读难句教程资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
2024年托福考试重点题目资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
托福独立口语必练70题资料下载
发布时间:2024-05-20关注新东方在线美研订阅号
回复【GRE】获取
托福口语综合口语精听50题节选资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
托福听力1200词资料下载
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
托福写作综合写作练习册-听力精听25篇资...
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
托福写作综合写作练习册-阅读改写50篇资...
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
托福阅读核心词表1500词(前30天优先必学...
发布时间:2024-05-20添加新东方在线美研助教号
回复【资料】获取
添加美研助教号,
回复【GRE】获取备考必看资料包

推荐阅读
备考GRE,对大部分同学来说也是一个新挑战,尤其是阅读部分,如何在有限的时间内大幅提高阅读速度呢? 快来本文看看吧。
本文今天为大家带来的是gre考试中easy等级难度的阅读片段,一起来看看吧!
2022年3月13-19日GRE阅读题回忆及答案(六)来啦,来本文和新东方在线GRE一起来看看详细信息吧。
2022年3月13-19日GRE阅读题回忆及答案(五)来啦,来本文和新东方在线GRE一起来看看详细信息吧。
2022年3月13-19日GRE阅读题回忆及答案(四)来啦,来本文和新东方在线GRE一起来看看详细信息吧。
2022年3月13-19日GRE阅读题回忆及答案(三)来啦,来本文和新东方在线GRE一起来看看详细信息吧。
2022年3月13-19日GRE阅读题回忆及答案(二)来啦,来本文和新东方在线GRE一起来看看详细信息吧。
2022年3月13-19日GRE阅读题回忆及答案(一)来啦,来本文和新东方在线GRE一起来看看详细信息吧。
2022年2月13日GRE阅读题回忆及答案来啦,来本文和新东方在线GRE一起来看看详细信息吧。
2022年2月13日GRE阅读题回忆及答案来啦,来本文和新东方在线GRE一起来看看详细信息吧。
GRE录播课(全科班/单项班)
GMAT6-8人直播VIP小班
托福直播精讲班(30天/60天)
添加美研助教号,
回复【GRE】获取备考必看资料包

资料下载
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
关注新东方在线美研订阅号
回复【GRE】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
添加新东方在线美研助教号
回复【资料】获取
阅读排行榜
相关内容