Let's Go Bats
A Bats have a problem: how to find their way around in the dark. They hunt at night, and cannot use light to help them find prey and avoid obstacles. You might say that this is a problem of their own making, one that they could avoid simply by changing their habits and hunting by day. But the daytime economy is already heavily exploited by other creatures such as birds. Given that there is a living to be made at night, and given that alternative daytime trades are thoroughly occupied, natural selection has favoured bats that make ago of the night-hunting trade. It is probable that the nocturnal trades go way back in the ancestry of all mammals. In the time when the dinosaurs dominated the daytime economy, our mammalian ancestors probably only managed to survive at all because they found ways of scraping a living at night. Only after the mysterious mass extinction of the dinosaurs about 65 million years ago were our ancestors able to emerge into the daylight in any substantial numbers.
B Bats have an engineering problem: how to find their way and find their prey in the absence of light. Bats are not the only creatures to face this difficulty today. Obviously the night-flying insects that they prey on must find their way about somehow. Deep-sea fish and whales have little or no light by day or by night. Fish and dolphins that live in extremely muddy water cannot see because, although there is light, it is obstructed and scattered by the dirt in the water. Plenty of other modern animals make their living in conditions where seeing is difficult or impossible.
C Given the questions of how to man oeuvre in the dark, what solutions might an engineer consider? The first one that might occur to him is to manufacture light, to use a lantern or a searchlight. Fireflies and some fish (usually with the help of bacteria) have the power to manufacture their own light, but the process seems to consume a large amount of energy. Fireflies use their light for attracting mates. This doesn't require a prohibitive amount of energy: a male's tiny pinprick of light can be seen by a female from some distance on a dark night, since her eyes are exposed directly to the light source itself. However; using light to find one's own way around requires vastly more energy, since the eyes have to detect the tiny fraction of the light that bounces off each part of the scene. The light source must therefore be immensely brighter if it is to be used as a headlight to illuminate the path, than if it is to be used as a signal to others. In any event, whether or not the reason is the energy expense, it seems to be the case that, with the possible exception of some weird deep-sea fish, no animal apart from man uses manufactured light to find its way about.
D What else might the engineer think of? Well, blind humans sometimes seem to have an uncanny sense of obstacles in their path. It has been given the name 'facial vision', because blind people have reported that it feels a bit like the sense of touch, on the face. One report tells of a totally blind boy who could ride his tricycle at good speed round the block near his home, using facial vision. Experiments showed that, in fact, facial vision is nothing to do with touch or the front of the face, although the sensation maybe referred to the front of the face, like the referred pain in a phantom limb. The sensation of facial vision, it turns out, really goes in through the ears. Blind people, without even being aware of the fact, are actually using echoes of their own footsteps and of other sounds, to sense the presence of obstacles. Before this was discovered, engineers had already built instruments to exploit the principle, for example to measure the depth of the sea under a ship. After this technique had been invented, it was only a matter of time before weapons designers adapted it for the detection of submarines. Both sides in the Second World War relied heavily on these devices, under such code names as Asdic (British) and Sonar (American), as well as Radar (American) or RDF (British), which uses radio echoes rather than sound echoes.
E The Sonar and Radar pioneers didn't know it then, but all the world now knows that bats, or rather natural selection working on bats, had perfected the system tens of millions of years earlier; and their 'radar' achieves feats of detection and navigation that would strike an engineer dumb with admiration. It is technically incorrect to talk about bat 'radar', since they do not use radio waves. It is sonar. But the underlying mathematical theories of radar and sonar are very similar; and much of our scientific understanding of the details of what bats are doing has come from applying radar theory to them. The American zoologist Donald Griffin, who was largely responsible for the discovery of sonar in bats, coined the term 'echolocation' to cover both sonar and radar, whether used by animals or by human instruments.
Reading Passage 1 has five paragraphs,A-E.
Which paragraph contains the following information?
Write the correct letter, A-E, in boxes 1-5 on your answer sheet.
NB You may use any letter more than once.
| A | B | C | D | E | |
|---|---|---|---|---|---|
| 1. examples of wildlife other than bats which do not rely on vision to navigate by | |||||
| 2. how early mammals avoided dying out | |||||
| 3. why bats hunt in the dark | |||||
| 4. how a particular discovery has helped our understanding of bats | |||||
| 5. early military uses of echolocation |
题目定位词:examples of wild life, not rely on vision
答案位置:B 段第2 行开始
题解:题目中有“许多野生动物的例子”字样, 意味要出现许多具体的动物名称。本段第2 句提到,“不是只有蝙蝠面临如何在黑暗中辨别方向和寻找猎物的问题”,此后便开始举出具体动物的例子如深海鱼、鲸、海 豚等。最后一句话更直接总结:“许多现代动物仍生活在难以或完全不能视物的环境里。”本题答案为B。
题目定位词:early mammals, avoided dying out
答案位置:A 段倒数第4 行
题解:通常,学术性文章的写作会按时间或发展顺序展开。“早期哺乳动物”在时间上比较靠前,应先在文章的前部找。A 段中倒数第4 行中“our mammalian ancestors”与题目中“early mammals”对应,“managed to survive”与“avoided dying out”对应。 本题答案为A。
题目定位词:why, bats, hunt, in the dark
答案位置:A 段第4 行
题解:本文说的是蝙蝠夜间捕食的原理在科学上的应用。说明文的展开顺序通常会先描写现象,提出理论,然后分析理论,最后才是应用。夜间捕食是其习性,应该在文章前部描写部分先交代。既然说的是原因,应该尝试到文章中找关于原因的关系词。 如:because,since,so,thus 等。 在A 段第4 行可以找到两个信号词“given that”, 其所引导的句子便是是问题的答案。本题答案为A。
题目定位词:a particular discovery, understanding bats
答案位置:E 段倒数第2 行
题解:题目是问哪一段讲了“一项特殊发现如何 有助于我们对蝙蝠的理解”,题目中心在“有助于我们对蝙蝠的理解”,因此不可能是D 段,因为D 段中根本没有提到有关“对蝙蝠的理解”的字眼。而E 段文中直接提到,提出“回声定位”一词的动物学家对于蝙蝠声呐的发现贡献颇大。而将在潜在的数学理论方面与声呐十分相似的“雷达理论应用在蝙蝠身上后,人类对它们的具体行为才有了更科学的了解”。本题答案为E。
题目定位词:early military uses, echolocation
答案位置:D 段倒数第 4 行和倒数第3 行
题解:按照说明文“描写——分析——应用”的写作顺序,“应用”应该在文章后部。同时因为“军事”一词相对意义比较狭窄,即使同义替换后也很明显,所以大致在文章后部先关注与“战争,战斗”有关的词。 本段倒数第3 行正好出现“武器设计”和“二战”的关键词,而且根据句意可推出本段为应选段落。请注意在题目“回声定位的早期军事应用”中,“军事应用”才是主体,而不是E 段中以原词形式出现的“回声定位”。本题答案为D。
