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
"Weather and Chaotic Systems" Scientists today have a very good understanding of the physical laws and mathematical equatio
"Weather and Chaotic Systems" Scientists today have a very good understanding of the physical laws and mathematical equatio
admin
2012-01-14
71
问题
"Weather and Chaotic Systems"
Scientists today have a very good understanding of the physical laws and mathematical equations that govern the behavior and motion of atoms in the air, oceans, and land. Why, then, do we have so much trouble predicting the weather? For a long time, most scientists
assumed
that the difficulty of weather prediction would go away once we had enough weather stations to collect data from around the world and sufficiently powerful computers to deal with all the data. However, we now know that weather is
fundamentally
unpredictable on time scales longer than a few weeks. To understand why, we must look at the nature of scientific prediction.
→ Suppose you want to predict the location of a car on a road 1 minute from now. You need two basic pieces of information: where the car is now, and how fast it is moving. If the car is now passing Smith Road and heading north at 1 mile per minute, it will be 1 mile north of Smith Road in 1 minute.
Now, suppose you want to predict the weather. Again, you need two basic types of information: (1) the current weather and (2) how weather changes from one moment to the next. You could attempt to predict the weather by creating a "model world." For example, you could overlay a globe of the Earth with graph paper and then specify the current temperature, pressure, cloud cover, and wind within each square. These are your starting points, or initial conditions. Next, you could input all the initial conditions into a computer, along with a set of equations (physical laws) that describe the processes that can change weather from one moment to the next.
→ Suppose the initial conditions represent the weather around the Earth at this very moment and you run your computer model to predict the weather for the next month in New York City. The model might tell you that tomorrow will be warm and sunny, with cooling during the next week and a major storm passing through a month from now. Now suppose you run the model again but make one minor change in the initial conditions—say, a small change in the wind speed somewhere over Brazil.A For tomorrow’s weather, this slightly different initial condition will not change the weather prediction for New York City.B But for next month’s weather, the two predictions may not agree at all! C
The disagreement between the two predictions arises because the laws governing weather can cause very tiny changes in initial conditions to be greatly magnified over time.D This extreme sensitivity to initial conditions is sometimes called the butterfly effect: If initial conditions change by as much as the flap of a butterfly’s wings, the resulting prediction may be very different.
→ The butterfly effect is a hallmark of chaotic systems. Simple systems are described by linear equations
in which
, for example, increasing a cause produces a proportional increase in an effect. In contrast, chaotic systems are described by nonlinear equations, which allow for subtler and more intricate interactions. For example, the economy is nonlinear because a rise in interest rates does not automatically produce a corresponding change in consumer spending. Weather is nonlinear because a change in the wind speed in one location does not automatically produce a corresponding change in another location. Many (but not all) nonlinear systems exhibit chaotic behavior.
→ Despite their name, chaotic systems are not completely random. In fact, many chaotic systems have a kind of underlying order that explains the general
features
of their behavior even while details at any particular moment remain unpredictable. In a sense, many chaotic systems are "predictably unpredictable." Our understanding of chaotic systems is increasing at a tremendous rate, but much remains to be learned about them.
The word fundamentally in the passage is closest in meaning to
选项
A、typically
B、historically
C、presently
D、basically
答案
B
解析
In this passage, basically is a synonym for "fundamentally."
转载请注明原文地址:https://kaotiyun.com/show/mJyO777K
0
托福(TOEFL)
相关试题推荐
DothefollowingstatementsagreewiththeinformationgiveninReadingPassage1?Inboxes5-13onyouranswersheet,writeT
Lookatthefollowingstatements(Questions19-23)andthelistofpeoplebelow.MatcheachstatementtothecorrectpersonA-D.W
Completethesentencesbelow.ChooseNOMORETHANTWOWORDSfromthepassageforeachanswer.Writeyouranswersinboxes24-26
Lookatthefollowingnamesofpeopleororganisations(Questions33-36)andthelistofopinionsbelow.Matcheachnamewithth
SECTION1Questions1-10Questions1-4CompletethefollowinginformationaboutthecarsavailableforrentalusingNOMORETH
Theprofessorsaysthatsuperhighways______.【25】
Martaworkedpart-timeasa______.Jeffsaysthatformteachersandsubjectteachersknowmoreaboutstudents’______.
Completethesentencesbelow.WriteNOMORETHANTHREEWORDSforeachanswer.EffectsofweatheronmoodTheyexpecttofindth
NarratorListentoaconversationbetweenastudentandaacademicadviser.Nowgetreadytoanswerthequestions.Youm
NarratorListentoaconversationbetweenastudentandaacademicadviser.Nowgetreadytoanswerthequestions.Youmayusey
随机试题
投资活动现金净流量小于零,只可能是企业投资收益状况较差,没有取得经济效益。
简述工作评价的方法。
肺癌X线表现有_______。
属于营养输液的是
细胞外的细菌进入细胞的过程是
A国出口商甲向B国进口商乙出口一批货物,采用信用证结算方式。出口商甲在向银行提交()的单据后,即确保可以收到贷款。
景区讲解员不仅要讲解本景区开设背景(包括历史沿革)、规模、布局、价值和特色,还要讲解本景区所在旅游地的()。
在一个家庭里,现在所有成员的年龄加在一起是73岁。家庭成员中有父亲、母亲、一个女儿和一个儿子。父亲比母亲大3岁,女儿比儿子大2岁。四年前家庭里所有的人的年龄总和是58岁,现在儿子多少岁?()
Itwaslateintheafternoon,andIwasputtingthefinaltouchonapieceofwritingthatIwasfeelingprettygoodabout.Iwa
Wheredidtheconversationtakeplace?
最新回复
(
0
)