首页
外语
计算机
考研
公务员
职业资格
财经
工程
司法
医学
专升本
自考
实用职业技能
登录
外语
Animals on the Move A) It looked like a scene from "Jaws" but without the dramatic music. A huge shark was slowly swimming throu
Animals on the Move A) It looked like a scene from "Jaws" but without the dramatic music. A huge shark was slowly swimming throu
admin
2017-03-01
91
问题
Animals on the Move
A) It looked like a scene from "Jaws" but without the dramatic music. A huge shark was slowly swimming through the water, its tail swinging back and forth like the pendulum of a clock. Suddenly sensitive nerve ending in the shark’s skin picked up vibrations of a struggling fish. The shark was immediately transformed into a deadly, efficient machine of death. With muscles taut, the shark knifed through the water at a rapid speed. In a flash the shark caught its victim, a large fish, in its powerful jaws. Then, jerking its head back and forth, the shark tore huge chunks of flesh from its victim and swallowed them. Soon the action was over.
B) Moving to Survive
In pursuing its prey, the shark demonstrated in a dramatic way the important role of movement, or locomotion, in animals. Like the shark, most animals use movement to find food. They also use locomotion to escape enemies, find a mate, and explore new territories. The methods of locomotion include crawling, hopping, slithering, flying, swimming, or walking. Humans have the added advantage of using their various inventions to move about in just about any kind of environment. Automobiles, rockets, and submarines transport humans from deep oceans to as far away as the moon. However, for other animals movement came about naturally through millions of years of evolution. One of the most successful examples of animal locomotion is that of the shark. Its ability to quickly zero in on its prey has always impressed scientists. But it took a detailed study by Duke University marine biologists S. A. Wainwright, F. Vosburgh, and J. H. Hebrank to find out how the sharks did it. In their study the scientists observed sharks swimming in a tank at Marine land in Saint Augustine, Fla. Movies were taken of the sharks’ movements and analyzed. Studies were also made of shark skin and muscle.
C) Skin Is the Key
The biologists discovered that the skin of the shark is the key to the animal’s high efficiency in swimming through the water. The skin contains many fibers that crisscross like the inside of a belted radial tire. The fibers are called collagen fibers. These fibers can either store or release large amounts of energy depending on whether the fibers are relaxed or taut. When the fibers are stretched, energy is stored in them the way energy is stored in the string of a bow when pulled tight. When the energy is released, the fibers become relaxed.
D) The Duke University biologists have found that the greatest stretching occurs where the shark bends its body while swimming. During the body’s back and forth motion, fibers along the outside part of the bending body stretch greatly. Much potential energy is stored in the fibers. This energy is released when the shark’s body snaps back the other way. As energy is alternately stored and released on both sides of the animal’s body, the tail whips strongly back and forth. This whip-like action propels the animal through the water like a living bullet.
E) Source of Energy
What causes the fibers to store so much energy? In finding the answer the Duke University scientists learned that the shark’s similarity to a belted radial tire doesn’t stop with the skin. Just as a radial tire is inflated by pressure, so, too, is the area just under the shark’s collagen "radials". Instead of air pressure, however, the pressure in the shark may be due to the force of the blood pressing on the collagen fibers.
F) When the shark swims slowly, the pressure on the fibers is relatively low, and the shark is able to bend its body at sharp angles. The animal swims this way when looking around for food or just swimming. However, when the shark detects an important food source, some fantastic involuntary changes take place. The pressure inside the animal may increase by 10 times. This pressure change greatly stretches the fibers, enabling much energy to be stored. This energy is then transferred to the tail, and the shark is off. The rest of the story is predictable.
G) Dolphin Has Speed Record
Another fast marine animal is the dolphin. This seagoing mammal has been clocked at speeds of 32 kilometers (20 miles) an hour. Biologists studying the dolphin have discovered that, like the shark, the animal’s efficient locomotion can be traced to its skin. A dolphin’s skin is made up in such a way that it offers very little resistance to the water flowing over it. Normally when a fish or other object moves slowly through the water, the water flows smoothly past the body. This smooth flow is known as laminar flow. However, at faster speeds the water becomes more turbulent along the moving fish. This turbulence muses friction and slows the fish down.
H) In a dolphin the skin is so flexible that it bends and yields to the waviness of the water. The waves, in effect, become tucked into the skin’s folds. This allows the rest of the water to move smoothly by in a laminar flow. Where other animals would be slowed by turbulent water at rapid speeds, the dolphin can race through the water at record breaking speeds.
I) Other Animals Less Efficient
Not all animals move as efficiently as sharks and dolphins. Perhaps the greatest loser in locomotion efficiency is the slug. The slug, which looks like a snail without a shell, lays down a slimy trail over which it crawls. It uses so much energy producing the slimy mucus and crawling over it that a mouse traveling the same distance uses only one twelfth as much energy.
J) Scientists say that because of the slug’s inefficient use of energy, its lifestyle must be restricted. That is, the animals are forced to confine themselves to small areas for obtaining food and finding proper living conditions. Have humans ever been faced with this kind of problem?
Consuming the equal amount of energy as a slug does, a mouse can travel 12 times as long as a slug.
选项
答案
I
解析
定位题。根据题目中的mouse定位到I)段最后一句:It uses so much energy producing the slimy mucus and crawling over it that a mouse traveling the same distance uses only one twelfth as much energy.原句中的“one twelfth”被替换成了“12 times”。
转载请注明原文地址:https://www.kaotiyun.com/show/pLU7777K
0
大学英语六级
相关试题推荐
IfthepopulationoftheEarthgeesonincreasingatitspresentrate,therewilleventuallynotbeenoughresourcesleftto【B1】
IfthepopulationoftheEarthgeesonincreasingatitspresentrate,therewilleventuallynotbeenoughresourcesleftto【B1】
A、Studentsarenotrequiredtoattendregularclasslectures.B、Theprofessorvideotapesclasslecturesforreview.C、Classesar
Newtechnologylinkstheworldasneverbefore.Ourplanethas【B1】______.It’snowa"globalvillage"wherecountriesareonlys
A、IndonesiaB、YellowstoneNationalPark.C、TheWales.D、TheGreatBritain.AA是提到lasteruption后听到的地点,为答案。对于对话中提及的时间、地点、数据、顺序应该特别注
GeorgeHerbertMeadsaidthathumansaretalkedintohumanity.Hemeantthatwegainpersonalidentityaswecommunicatewithot
Negotiationsworkwonders.Thisisparticularlysoininternationalbusinesssinceitismostlythroughnegotiationsthatexport
A、Blackdoctorsweren’tallowedtousemedicalequipment.B、Blackdoctorswerehatedbypatients.C、Blacksweren’tallowedtodo
A、Theyknowhowtospendmoney.B、Theyareforcedoutoftheirclass.C、Theyarethesameasolderworkers.D、Theysupporttheir
Widespreadadoptionofplug-inelectricvehiclescoulddramaticallycutgreenhousegaspollutionandreduceU.S.dependenceonf
随机试题
热极津枯重证之人,可见()(2007年第157题)
客观评价的测量方法的参数不包括
酚类药物的降解的主要途径是()。
随机事件的频率和概率是两个不同的概念,但在通常的情况下,通过大量的反复试验,把其频率视作概率的近似值。()
图5—73所示细长杆AB的A端自由,B端固定在简支梁上,该压杆的长度细数μ是()。
社区交往是社区居民所进行的人际交往活动。目前,社区居民的社交活动范围比较狭小,多限于邻里之间的熟人社交;社交方式较为单一,多采用餐桌社交、电视社交、宠物社交和网络社交。随着社会现代化程度的提高,丰富精神生活空间成为居_民的普遍需求。让社区居民(尤其居家型居
科学始终具有强大而神奇的力量,它可以促进社会进步,给人类带来幸福。但一项科学技术如果被视为可以解决人类根本苦难,就会有神话的感觉。这段话表明的主要观点是()。
2016年1月9日,国家统计局公布2015全国居民消费价格指数(CPI)上涨1.4%,而2015年12月份的一年期的存款基准利率为1.5%,那么2015年12月份一年期存款的实际利率为0.1%,这一结果的依据是()。
负责对身体形态形成认识的顶骨皮质区的正常功能被扰乱,人们可能产生厌食症,同时会夸大或缩小对自己身体体积的认识。神经学家亨里克.埃里森在志愿者的手腕上都戴上了一个振动装置,对肌腱进行刺激,使其产生一种自己的腕关节在缩小的错觉。当志愿者将他们的手放到身体的任何
以下数组定义语句中,错误的是()。
最新回复
(
0
)