咨询时间:8:00~24:00 400-618-8866

您的位置: 首页> 考培资讯> 雅思> 阅读> 雅思阅读——人名理论配对

雅思阅读——人名理论配对

关键字  
2015-07-31 来源:新通外语网igo99.cn 作者: 阅读量: 手机阅读

导读

新通雅思高分素材库出炉啦!众所周知,雅思阅读一直是中国考生的薄弱项,新通教育为帮助广大雅思考生突破阅读瓶颈,提高阅读成绩,特地精心整理了雅思阅读高分分类素材库。那快来雅思阅读高分素材库汲取营养吧!

 

Venus in transit
June 2004 saw the first passage, known as a ‘transit’, of the planet Venus across the face of the Sun in 122 years. Transits have helped shape our view of the whole Universe, as Heather Cooper and Nigel Henbest explain
 
A  On 8 June 2004, more than half the population of the world were treated to a rare astronomical event. For over six hours, the planet Venus steadily inched its way over the surface of the Sun. This ‘transit’ of Venus was the first since 6 December 1882. On that occasion, the American astronomer Professor Simon Newcomb led a party to South Africa to observe the event. They were based at a girls’ school, where - it is alleged - the combined forces of three schoolmistresses outperformed the professionals with the accuracy of their observations.
 
B  For centuries, transits of Venus have drawn explorers and astronomers alike to the four corners of the globe. And you can put it all down to the extraordinary polymath Edmond Halley. In November 1677, Halley observed a transit of the innermost planet, Mercury, from the desolate island of St Helena in the South Pacific. He realised that, from different latitudes, the passage of the planet across the Suns disc would appear to differ. By timing the transit from two widely-separated locations, teams of astronomers could calculate the parallax angle - the apparent difference in position of an astronomical body due to a difference in the observers position. Calculating this angle would allow astronomers to measure what was then the ultimate goal: the distance of the Earth from the Sun. This distance is known as the astronomical unit’ or AU.
 
C  Halley was aware that the AU was one of the most fundamental of all astronomical measurements. Johannes Kepler, in the early 17th century, had shown that the distances of the planets from the Sun governed their orbital speeds, which were easily measurable. But no-one had found a way to calculate accurate distances to the planets from the Earth. The goal was to measure the AU; then, knowing the orbital speeds of all the other planets round the Sun, the scale of the Solar System would fall into place. However, Halley realised that Mercury was so far away that its parallax angle would be very difficult to determine. As Venus was closer to the Earth, its parallax angle would be larger, and Halley worked out that by using Venus it would be possible to measure the Suns distance to 1 part in 500. But there was a problem: transits of Venus, unlike those of Mercury, are rare, occurring in pairs roughly eight years apart every hundred or so years. Nevertheless, he accurately predicted that Venus would cross the face of the Sun in both 1761 and 1769 - though he didn’t survive to see either.
 
D  Inspired by Halley’s suggestion of a way to pin down the scale of the Solar System, teams of British and French astronomers set out on expeditions to places as diverse as India and Siberia. But things weren’t helped by Britain and France being at war. The person who deserves most sympathy is the French astronomer Guillaume Le Gentil. He was thwarted by the fact that the British were besieging his observation site at Pondicherry in India. Fleeing on a French warship crossing the Indian Ocean, Le Gentil saw a wonderful transit - but the ships pitching and rolling ruled out any attempt at making accurate observations. Undaunted, he remained south of the equator, keeping himself busy by studying the islands of Mauritius and Madagascar before setting off to observe the next transit in the Philippines. Ironically after travelling nearly 50,000 kilometres, his view was clouded out at the last moment, a very dispiriting experience.
 
E  While the early transit timings were as precise as instruments would allow, the measurements were dogged by the (black drop effect. When Venus begins to cross the Suns disc, it looks smeared not circular - which makes it difficult to establish timings. This is due to diffraction of light. The second problem is that Venus exhibits a halo of light when it is seen just outside the Suns disc. While this showed astronomers that Venus was surrounded by a thick layer of gases refracting sunlight around it, both effects made it impossible to obtain accurate timings.
 
F  But astronomers laboured hard to analyse the results of these expeditions to observe Venus transits. Johann Franz Encke, Director of the Berlin Observatory, finally determined a value for the AU based on all these parallax measurements: 153,340,000 km. Reasonably accurate for the time, that is quite close to today’s value of 149,597,870 km, determined by radar, which has now superseded transits and all other methods in accuracy. The AU is a cosmic measuring rod, and the basis of how we scale the Universe today. The parallax principle can be extended to measure the distances to the stars. If we look at a star in January - when Earth is at one point in its orbit - it will seem to be in a different position from where it appears six months later. Knowing the width of Earths orbit, the parallax shift lets astronomers calculate the distance.
 
G  June 2004’s transit of Venus was thus more of an astronomical spectacle than a scientifically important event. But such transits have paved the way for what might prove to be one of the most vital breakthroughs in the cosmos - detecting Earth-sized planets orbiting other stars.
Questions 19-21
Look at the following statements (Questions 19-21) and the list of people below.
Match each statement with the correct person, A, B, C or D.
Write the correct letter, A, B, C or D, in boxes 18-21 on your answer sheet
19    He understood that the distance of the Sun from the Earth could be worked out by comparing observations of a transit.
20    He realised that the time taken by a planet to go round the Sun depends on its distance from the Sun.
21    He witnessed a Venus transit but was unable to make any calculations.

     List of People
 A  Edmond Halley
 B  Johannes Kepler
 C  Guillaume Le Gentil
 D  Johann Franz Encke

 
 

 

 

查看正确答案和解析

  • 有疑问在线咨询老师

    咨询时间:0:00 ~ 24:00
    非咨询时间也可留言

  • 400-618-8866

    咨询时间:8:00 ~ 24:00

定制备考方案
留学快读通道

课程推荐

更多课程+

新通为您定制更适合您的学习方案

想要获取更多考试培训信息,可以通过以下方式联系到距离您最近的新通教育;

1、拨打新通教育咨询热线:400-618-8866;

2、点击【立即咨询】 ,我们会有课程老师为你解答考试难题;

3、完成以下表单,轻松预约,预约获取定制学习方案的机会。

姓名
联系电话

城市
  • 杭州
  • 北京
  • 上海
  • 广州
  • 深圳
  • 南京
  • 武汉
  • 苏州
  • 太原
  • 济南
  • 合肥
  • 天津
  • 郑州
  • 长春
  • 宁波
  • 舟山
  • 温州
  • 成都
  • 重庆
  • 西安
  • 南昌
  • 厦门
  • 福州
学习科目
  • 雅思
  • 托福
  • SAT
  • ACT
  • GRE
  • GMAT
  • 国际高中备考班
  • A-level
  • AP
马上预约

定制学习方案

  • 雅思
  • 托福
  • SAT
  • ACT
  • GRE
  • GMAT
  • 国际高中备考班
  • A-level
  • AP
获取你的学习方案

*温馨提示:新通承诺绝不泄露您的个人信息

大家都在看

更多>

近期活动

  • 北京
  • 成都
  • 福州
  • 广州
  • 杭州
  • 合肥
  • 济南
  • 南昌
  • 南京
  • 宁波
  • 青岛
  • 厦门
  • 上海
  • 深圳
  • 苏州
  • 太原
  • 天津
  • 温州
  • 武汉
  • 西安
  • 长春
  • 长沙
  • 郑州
  • 重庆
  • 舟山