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A team of researchers has discovered a bacterium (细菌) at the bottom of a 1,000 feet deep cave that is to 70 per cent of modern antibiotics (抗菌素). (resist)

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第1题

Section B

Directions: There are 2 passages in this section. Each passage is followed by some questions or unfinished statements. For each of them there are four choices marked A, B, C and D. You should decide on the best choice.

An accidental discovery has brought seismologists(地震学家) one step closer to being able to predict earthquakes. As part of an unrelated effort to measure underground changes caused by shifts in barometric pressure (大气压力), a team of researchers found that increases in subterranean pressure(地下压力) preceded earthquakes along California's San Andreas Fault(断层) by as much as 10 hours. If follow-up tests advance the findings, seismologists may eventually be able to provide a few hours' notice for people to find safe places prior to quakes.

Researchers used a high-tech equivalent of a stereo speaker lowered into a bore hole near Parkfield, Calif., a half-mile deep and five yards from a measuring device. For two months beginning in late 2005, researchers transmitted pulse signals three times per second, from the speaker to the measuring device, calculating travel time between the two stations. Surprised scientists learned the seismic waves slowed dramatically on only two occasions: two hours prior to a magnitude-1 temblor (地震), and a startling 10 hours before a magnitude-3 quake.

The research team theorizes that the immense amount of pressure building along the fault causes small cracks within the rock during the final hours before an earthquake, increasing rock density and slowing the transmission signals. "The more cracks you have, the slower the seismic velocity," says study co-author Paul Silver, a geophysicist with the Carnegie Institution of Washington. Still unknown is whether there is any significance to the fact that the magnitude-3 quake had a much longer pre-seismic signal than the lower-magnitude quake, or whether it was simply because its magnitude was larger and its epicenter closer to the sensors.

If scientists can flesh out the new findings during future earthquakes — a two-year study at the same seismically active location begins this September — it could form. the basis of a vastly improved early-warning system for quakes. Current earthquake-warning systems give just a few seconds' notice because they detect only waves, the fast-moving seismic waves that precede the more destructive waves released during a quake. Upgrading to a seismic stress meter, however, is still a long way of{. Researchers hope to test whether the stress signals would still be detectable on a larger scale, with the two sensors spaced more than a few yards apart.

Barring a major effort to drill multiple, half-mile-deep holes along fault lines, researchers would also need to develop a surface-based detection system capable of filtering out temperature swings and other "noise" that could confuse their seismic readings.

The passage mainly tells us about ______.

A.the importance of predicting earthquakes

B.a new method to predict earthquakes

C.the great damages caused by earthquakes

D.a traditional method to predict earthquakes

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第2题

Explorer of the Extreme Deep

?? Oceans cover more thantwo-thirds of our planet.Yet,just a small fraction of the underwater world hasbeen explored. Now, Scientists at the Woods olel Oceanographic Institution(WHOI) in Massachusettsare building an underwater vehicle hat will carry explorers as deep as 6, 500meters (21,320 feet). The new machine, known as a manned submersible orhuman-operated vehicle (HOV) , will replace another one named Alvin which bas an amazing record ofdiscovery, playing a key role in various important and famous underseaexpeditions. Alvinhas been operating for 40 years but can go down only 4,500 meters (14,784feet). It's about time for an upgrade,WHOI researchers say.

?? Alvin was launched in 1964. Since then, Alvin has worked between 200 and 250 days a year, says Daniel Fornari,a marinegeologist and director of the Deep Ocean Exploration Institute at WHOI. Duringits lifetime, Alvinhas carried some 12,000 people on atotal of more than 3,000 dives. A newer, better versions of Alvin is bound to reveal even more surprisesabout a world that is still full of mysteries, Fornari says. It might also makethe job of exploration a little easier. "We take so much for granted onland, " Fomari says. "We can walk around and see with our eyes howbig things are. We can see colors, special arrangements. "

?? Size-wise, the new HOV will??be similar to Alvin.It'II be about 37 feet long. The setting area inside will be a small sphere,about 8 feet wide,like Alvin,it'II carry a pilot and two passengers. It will bejust as maneuverable. In most other ways,it will give passengers moreopportunities to enjoy the view,for one thing. Alvin has only three windows,the new vehiclewill have five,with more overlap so that the passengers and the pilot can seethe same thing.

Alvin can go up and down at a rate of 30meters every second,and its maximum speed is 2 knots (about 2. 3 miles perhour) ,while the new vehicle will be able to ascend and descend at 44 metersper second It'II reach speeds of 3 knots,or 3. 5 miles per hour.

What is Alvin???????

A.research institute

B.A transporting vehicle

C.A submersible

D.A scientist

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第3题

What did P and S waves help scientists discover about the layers of the earth?

A.How deep they are.

B.Where earthquakes form.

C.How hot they are.

D.What purpose they serve.

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第4题

What did P and S waves help scientists discover about the layers of the earth?

A.How deep they are.

B.Where earthquakes form.

C.How hot they are.

D.What purpose they serve.

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第5题

Wilson could not control his deep jealousy at the thought of another man taking up his role as father.

A.tampering

B.sophisticating

C.seizing

D.usurping

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第6题

Wilson could not control his deep jealousy at the thought of another man taking up his role as father.

A.tampering

B.sophisticating

C.seizing

D.usurping

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第7题

During Camerons stay at the bottom of the 7-mile-deep sea, the only thing he saw was __________.

A.various strange fishes he had never seen

B.some small creatures that ate a lot

C.some unknown small primitive sea animals

D.many sunken wrecks

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第8题

In looking at the class structure of an entire system, we may find that its inheritance (1) is either wide and shallow, narrow and deep, or balanced. Class structures that are wide and shallow usually represent forests of (2) classes that can be mixed and matched. Class structures that are narrow and deep represent trees of classes that are related by a common ancestor. There are advantages and disadvantages to each approach. Forests of classes are more loosely (3) , but they may not exploit all the commonality that exists. Trees of classes exploit this commonality, so that individual classes are smaller than in forests. However, to understand a particular class, it is usually necessary to understand the meaning of all the classes it inherits from or uses. The proper shape of a class structure is highly problem-dependent. We must make similar trade-offs among inheritance, aggregation, and using relation- ships. For example, should the class Car inherit, contain, or use the classes named Engine and Wheel? In this case, we suggest that an (4) relationship is more appropriate than inheritance relationship. Meyer states that between the class A and B," (5) is appropriate if every instance of B may also be viewed as an instance of A. The client relationship is appropriate when every instance of B simply possesses one or more attributes of A". From another perspective, if the behavior. of an object is more than the sum of its individual parts, then creating an aggregation relationship rather than an inheritance relationship between the appropriate classes is probably superior.

A.distinction

B.level

C.grade

D.hierarchy

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