54.A.invent B.discover C.teach D.continue 查看更多

 

题目列表(包括答案和解析)

Simply by analyzing a drop of blood, a doctor will be able to diagnose a birth defect or even cancer when it is in the early stage; using new technology, a material lighter but much stronger than steel can be produced.
These may sound like dreams at present. But the dreams may soon come true as research findings in laboratories are being turned into products more rapidly in the new century, according to experts participating in the fourth Asia-Pacific Economic Cooperation (APEC) Technomart, a technology exhibition and trade fair in Suzhou.  
"Most people think nano-technology(纳米技术)is too far-fetched to be real. But in fact nano-technology has been applied in a wide range of fields, such as medicine. It is coming into our daily life," said Cheng Jiachong from a Hong Kong-based nano-technology firm.
Nano-technology based on the nanometer, the unit of which is a billionth of a meter, enables scientists to have new concepts of disease diagnosis and treatment on a molecular(分子)and atomic scale, Cheng said.  
By using nanometer particles, a doctor can separate the fetus cells(胚胎细胞)from the blood of a pregnant woman to see if the development of the fetus is normal. This method is also being used in the early diagnosis of cancer and heart disease, he said.  
One of the most significant impacts of nano-technology is at the bio-inorganic materials interface, according to Greg Tegart, executive advisor of the APEC Center for Technology Foresight.  
"By combining enzymes(酶)and silicon chips we can produce biosensors. These could be implanted in humans or animals to monitor health and to deliver corrective doses(剂量)of drugs," he told the participants a technology forum during the exhibition.  
"Nano-technology could affect the production of nearly every man-made object, from automobiles, tires and computer circuits(电路), to advanced medicines and tissue replacement, and lead to the invention of objects yet to be imagined," said David Minns, a special advisor to the National Research Council of Canada.  
It has been shown that carbon nano-tubes are ten times as strong as steel, with one sixth of the weight, and nano-scale systems have the potential to make supersonic transport cost- effective and to increase computer efficiency by millions of times, he said.
The experts agreed that the APEC technology exhibition and trade fair provided many chances for exchanges of innovative ideas and products.
【小题1】Realization of the dreams mentioned in the first paragraph will mainly base on ________.

A.APECB.Chinese scientist
C.the APEC Center for Technology ForesightD.Nano-technology
【小题2】The length of a nanometer equals to ______.
A.meterB.meterC.meterD.meter
【小题3】We can imply from what David Minns said that _________.
A.Nano-technology could only be used to invent new objects.
B.Nano-technology could be widely used to produce or invent objects.
C.Nano-technology is a money-consuming technology.
D.Nano-technology can not be used to improve the service of Internet.
【小题4】Compared to steel, carbon nano-tubes are ________.
A.stronger and lighterB.lighter but as strong
C.stronger but as lightD.poor in quality

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How men first learned to invent words is unknown, in other words, the origin of language is a mystery. All we really know is that men, unlike animals, somehow invented certain sounds to express thoughts and feelings, actions and things, so that they could communicate with each other; and that later they agreed upon certain signs, called letters, which could be combined to represent those sounds and which could be written down. Those sounds, whether spoken, or written in letters, we call words.

The power of words, then, lies in their association-the thing they bring up before our minds. Words become filled with meaning for us by experience; and the longer we live, the more certain words recall to us the glad and the sad events of our past; and the more we read and learn, the more the number of words that mean something to us increase.

Great writers are those who not only have great thoughts but also express these thoughts in words which appeal powerfully to our minds and emotions. This charming and telling use of words is what we call literary style. Above all, the real poet is a master of words. He can convey (表达,传递)his meaning in words which sing like music, and which by their position and association can move men to tears. We should, therefore, learn to choose our words carefully and use them accurately, or they make our speech silly and vulgar.(粗俗的)

Which of the following about a real poet is NOT true?

A.He is less than a master of words.

B.His style is always charming.

C.His poem can move men to tears.

D.He can express his ideas in words that sing like music.

Where does the real power of the words come from?

A.From the words themselves.   

B.From their characteristics.

C.From their curiosity.

D.From their association.

What is the main idea of the passage? 

A.The importance of choosing words.

B.Where the real power of words come from.

C.What great writers are like.

D.We should learn to choose words carefully.

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完形填空

  A land free from destruction, plus wealth, natural resources, and labor supply-all these were important   1   in helping England to become the center for the Industrial Revolution.  2   they were not enough.Something   3   was needed to start the industrial process.That“something special”was men-  4   individuals who could invent machines, find new   5   of power, and establish business organizations to reshape society.

  The men who   6   the machines of the Industrial Revolution   7   from many backgrounds and many occupations.Many of them were   8   inventors than scientists.A man who is a   9   scientist is primarily interested in doing his research   10  .He is not necessarily working   11   that his findings can be used.

  An inventor or one interested in applied science is   12   trying to make something that has a concrete use.He may try to solve a problem by   13   the theories   14   science or by experimenting through trial and error.Regardless of his method, he is working to obtain a   15   result:the construction of a harvesting machine, the burning of a light bulb, or one of   16   other objectives.

  Most of the people who   17   the machines of the Industrial Revolution were inventors, not trained scientists.A few were both scientists and inventors.Even those who had   18   or no training in science might not have made their inventions   19   a groundwork had not been laid by scientists years   20  

(1)

[  ]

A.

cases

B.

reasons

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factors

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situations

(2)

[  ]

A.

But

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Besides

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Even

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near

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extra

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similar

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generating

B.

effective

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motivating

D.

creative

(5)

[  ]

A.

origins

B.

sources

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bases

D.

discoveries

(6)

[  ]

A.

employed

B.

created

C.

operated

D.

controlled

(7)

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came

B.

arrived

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stemmed

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appeared

(8)

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A.

less

B.

better

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more

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(9)

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genuine

B.

practical

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pure

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clever

(10)

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A.

happily

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occasionally

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reluctantly

D.

accurately

(11)

[  ]

A.

now

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(12)

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A.

seldom

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sometimes

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all

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(13)

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planning

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(20)

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before

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Simply by analyzing a drop of blood, a doctor will be able to diagnose a birth defect or even cancer when it is in the early stage; using new technology, a material lighter but much stronger than steel can be produced.

These may sound like dreams at present. But the dreams may soon come true as research findings in laboratories are being turned into products more rapidly in the new century, according to experts participating in the fourth Asia-Pacific Economic Cooperation (APEC) Technomart, a technology exhibition and trade fair in Suzhou.  

"Most people think nano-technology(纳米技术)is too far-fetched to be real. But in fact nano-technology has been applied in a wide range of fields, such as medicine. It is coming into our daily life," said Cheng Jiachong from a Hong Kong-based nano-technology firm.

Nano-technology based on the nanometer, the unit of which is a billionth of a meter, enables scientists to have new concepts of disease diagnosis and treatment on a molecular(分子)and atomic scale, Cheng said.  

By using nanometer particles, a doctor can separate the fetus cells(胚胎细胞)from the blood of a pregnant woman to see if the development of the fetus is normal. This method is also being used in the early diagnosis of cancer and heart disease, he said.  

One of the most significant impacts of nano-technology is at the bio-inorganic materials interface, according to Greg Tegart, executive advisor of the APEC Center for Technology Foresight.  

"By combining enzymes(酶)and silicon chips we can produce biosensors. These could be implanted in humans or animals to monitor health and to deliver corrective doses(剂量)of drugs," he told the participants a technology forum during the exhibition.  

"Nano-technology could affect the production of nearly every man-made object, from automobiles, tires and computer circuits(电路), to advanced medicines and tissue replacement, and lead to the invention of objects yet to be imagined," said David Minns, a special advisor to the National Research Council of Canada.  

It has been shown that carbon nano-tubes are ten times as strong as steel, with one sixth of the weight, and nano-scale systems have the potential to make supersonic transport cost- effective and to increase computer efficiency by millions of times, he said.

The experts agreed that the APEC technology exhibition and trade fair provided many chances for exchanges of innovative ideas and products.

1.Realization of the dreams mentioned in the first paragraph will mainly base on ________.

A. APEC                              B. Chinese scientist   

C. the APEC Center for Technology Foresight     D. Nano-technology

2.The length of a nanometer equals to ______.

    A.  meter         B.  meter      C.  meter        D.  meter

3. We can imply from what David Minns said that _________.

A. Nano-technology could only be used to invent new objects.

B. Nano-technology could be widely used to produce or invent objects.

C. Nano-technology is a money-consuming technology.

D. Nano-technology can not be used to improve the service of Internet.

4. Compared to steel, carbon nano-tubes are ________.

A. stronger and lighter      B. lighter but as strong

C. stronger but as light                                     D. poor in quality

 

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Charles Babbage is generally considered ______ the first computer.

  A. to invent         B. inventing

  C. to have invented   D. having invented

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