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1、I am told that Professor Atkins has already visited this site for five times since the area was opened to geologists in 2007.
A、I am told
B、 has already visited
C、for five times
D、was opened to geologists
E、沒有錯誤
2、At the moment I’m reading an F.D.A. report that summarizes the debate on the responsibility of various agricultural and manufacturing corporations for the spread of mercury pollution in food products.
A、At the moment
B、an F.D.A. report
C、debate on
D、various agricultural and manufacturing
E、沒有錯誤
3、Beijing is the political centre of China,nevertheless it is arguably at least as important as a centre of the arts,including such fields as painting, drama and film.
A、China,nevertheless
B、arguably at least as important
C、as a centre of the arts
D、including such fields as
E、沒有錯誤
4、In the past three decades great changes, especially the way younger adults view marriage, have taken place in society.
A、In the past three decades
B、 especially the
C、younger adults
D、 in society
E、沒有錯誤
For millions of years, Britain was part of the European continent. A high ridge of limestone—now famously exposed as the chalky cliffs of Dover-extended all the way to what is now France, allowing mammoths, hippopotami and eventually humans to pass freely back and forth. But about 450,000 years ago, this rocky road was cut off by a flood of unimaginable proportions. Now, a team of researchers has detailed evidence of how this torrent of destruction was unleashed. “They’ve managed to identify...how the ridge was breached,” says geologist Philip Gibbard of the University of Cambridge in the United Kingdom, who was not involved in the current study. “I'm quite enthusiastic.”
The idea that enormous floods quickly carved parts of the English Channel was first proposed in 1985. At the time, geologist Alec Smith of Bedford College in London noticed large, interweaving scour marks on maps of the English Channel sea floor. He recognized that the patterns of erosion resembled those of the Channeled Scablands, a highly eroded landscape -stark, barren and with little soil—in eastern Washington state in the northwestern US. The landscape was formed by floods from glacial lakes that burst their icy dams between 15,000 and 18,000 years ago.
Similar glaciers have existed in Europe. Some 450,000 years ago, a massive ice sheet spanned Scandinavia, reaching down into northern Europe and much of what are today the British Isles. Hemmed in by the ice was a large glacial lake. No one knows exactly how big it was, but it may have been several hundred kilometers wide, and it likely filled the southern part of the North Sea. Because so much water was stored on land as ice sheets, sea levels are thought to have been about 120 meters lower than today, exposing the bottom of what is now the English Channel.
With the chalk ridge forming a dam to the south, and the Rhine and other rivers flowing into the glacial lake, the water would have kept rising. Smith proposed that the lake would eventually have cascaded over the chalk cliffs. As evidence, he pointed to large, deep pits at the base of the former ridge — “plunge pools” that were formed by the force of the waterfalls and later filled in with sediment. The scour marks on the channel bottom would have been carved by a vast flood rich in debris. Still unknown was what unleashed the deluge.
The dramatic idea was then forgotten for many years. “I don't think many people believed it,” says Sanjeev Gupta, a geologist at Imperial College London.(Smith, who retired a few years after floating his idea, died in 2015.) “If smith's hypothesis now wins general acceptance, then the decades of delay will be oddly similar to the decades it took for the origin of the Channeled Scablands to be accepted. When the geologists JT Pardee and Harlen Bretz first argued that the
Scablands were the product of a short catastrophic flood of huge proportions, it took almost forty years to win over their fellow earth scientists.”
Now Gupta and his colleagues have brought the idea of a cataclysmic breakup back into serious consideration. With data from British, Belgian and French research vessels, the team put together a clear picture of seven plunge pools on the channel floor (see map below), each nearly a kilometer wide and up to 140 meters deep — even larger than Smith had estimated. “It's clear that the scale is really far greater than originally imagined,” Gibbard says, “The plunge pools were enormous.”
The waterfalls pouring from the lake might have been 50 meters high or taller, Gupta says, although it is difficult to know. The relentless pounding of the cascades may have spun large blocks of stone inside the pools at the bottom, drilling into the bedrock. All this digging might have fatally weakened the ridge, eventually causing it to fail, Gupta and colleagues propose today in Nature Communications. “I think they’ve worked out an intelligent account of how this may have happened,” says Kim Cohen, a geologist at Utrecht University in the Netherlands, who was not involved in the work.
It is not yet possible to know how long it took the waterfalls to erode the chalk ridge, Gupta says. The only way to tell would be to collect samples by drilling into the sediments that later filled in the pools. But that is a tricky proposition, given the busy traffic of the shipping channel and its strong currents, "it’s a dangerous area to do geological research in, "says Gibbard, noting that just getting the new submarine images was an accomplishment.
The images also clarify the extent of erosion from another round of catastrophic flooding during a subsequent ice age. Again, the evidence is submerged, because sea level is much higher today. But perhaps 160, 000 years ago — the timing is uncertain — huge floods dug out what is known as the Lobourg Channel, which the images revealed to be about 10 kilometers wide and 20 meters deep. This was probably the final breach of the remnants of chalk ridge, Gupta says.
These twin disasters meant trouble for ancient commuters. This is because they put travel between Britain and Europe at the mercy of sea level. Previously, when the seas rose and covered the floor of the channel, the chalk ridge would still have been passable. But when the first catastrophic flood tore through, Britain was cut off for the first time. (Of course, when sea level fell enough, the English Channel would have been dry again Despite a major river flowing to the southwest, animals and people could pass back and forth easily.
Britain most recently became an island about 9000 years ago. And — now that the United Kingdom has officially announced its intention to sever ties with the European Union -- it will become even more of one.
1.According to the author of this article, Britain has been more or less the geographic island that we know it as today since ( ).
A、 450,000 years ago.
B、 160,000 years ago.
C、 approximately 13, 000 BC.
D、 roughly 7,000 BC.
2.The author tells us that Philip Gibbard was not involved in the study being reported on here.He most probably does this in order to ( ).
A、 show that Gibbard’s opinions should be viewed with caution
B、 lend greater weight to Gibbard's opinions and input
C、 distinguish Gibbard’s role from that of Sanjeev Gupta
D、 make it clear that most geologists agree with Gupta and his team
3.Earlier research on the origin of the Channel Scablands of eastern Washington was presumably useful to Alec Smith in that it( ) .
A、 helped him to recognize the scour marks on the floor of the English Channel
B、 indicated the landscape that he should watch for around the glacial lake that covered ancient Britain
C、 showed how old the scour marks might be
D、 suggested what kind of event might have produced the scour marks
4.Something seems to be missing from the text of this article as it is printed here. The missing item is ( ).
A、 a chart
B、 a map
C、 a graph.
D、 a table of prehistoric sea level data
5.Is Philip Gribbard optimistic about the likelihood that we will soon know how long it took waterfalls to erode the chalk ridge mentioned in paragraphs 7-10?
A、 No, because the many ships and powerful currents in the Channel make it hazardous to drill there.
B、 No, because the plunge pools carved out by the ancient waterfalls are now buried under very thick layers of sediment.
C、 Yes, because submarine images clarify which events caused how much erosion and where.
D、 Yes, because submarines can now provide extremely valuable assistance in the drilling operations that will be necessary
6.The article indicates that, thanks to the new data and images, Gupta and his fellow researchers have( ) .
A、 proved that geologists were right to dismiss smith's hypothesis when it was proposed 32 years ago
B、 conclusively demonstrated the correctness of smith's hypothesis
C、 shed a favorable new light on smith's hypothesis, but with so many novel features (especially the much greater scale) that it is now as much Gupta’s idea as smith’s
D、 revived interest in Smiths hypothesis and moved it closer to general acceptance.
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