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[月度]巴约贰拾起月度寂静汇总(共71只,9/23-19:44更新)

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191#
发表于 2011-8-25 22:54:46 | 只看该作者
真是了不起啊!
192#
发表于 2011-8-25 23:15:02 | 只看该作者
多谢多谢楼主!!!
193#
 楼主| 发表于 2011-8-25 23:53:42 | 只看该作者
楼主,是不是哪些考古文,写了“没确认”就说明狗主们还没确认;而那些没标注什么的,就是已经被确认过了呀。
-- by 会员 siweiliu (2011/8/25 22:29:31)



恩,对
194#
 楼主| 发表于 2011-8-25 23:57:40 | 只看该作者
楼主好!
第一次看阅读鸡精
我弱弱的问一句~
我28号考
看鸡精的时候应该重点掌握神马
是不是主要理解文章意思
考试的时候如果是同一片文章
题会一样吗?
考古是神马意思?以前多次出现过的吗?
辛苦楼主
谢谢
-- by 会员 alec724 (2011/8/25 19:29:26)




重点应该在了解文章大意吧,考试时遇到心里有数就好了,题目不见得会一样也许有变体什么的,而且答案也都是同学们自己做的,也不见得就是对的,要慎重!
考古就是将以前同样篇目的文章找出来,这样内容就更丰富了呀
195#
发表于 2011-8-26 02:32:02 | 只看该作者
给力,辛苦了!楼主真棒!
196#
发表于 2011-8-26 12:39:09 | 只看该作者
感谢楼主辛苦整理!
197#
发表于 2011-8-26 14:09:16 | 只看该作者
198#
发表于 2011-8-26 17:12:27 | 只看该作者
楼主辛苦,有频率统计吗?
199#
发表于 2011-8-26 18:09:57 | 只看该作者
阅读第16篇(dark matter)是不是这篇:

Virtually everything astronomers known about objects outside the solar system is based on the detection of photons-quanta of electromagnetic radiation. Yet there is another form of radiation that permeates the universe: neutrinos. With (as its name implies) no electric charge, and negligible mass, the neutrino interacts with other particles so rarely that a neutrino can cross the entire universe, even traversing substantial aggregations of matter, without being absorbed or even deflected. Neutrinos can thus escape from regions of space where light and other kinds of electromagnetic radiation are blocked by matter. Furthermore, neutrinos carry with them information about the site and circumstances of their production: therefore, the detection of cosmic neutrinos could provide new information about a wide variety of cosmic phenomena and about the history of the universe.
But how can scientists detect a particle that interacts so infrequently with other matter? Twenty-five years passed between Pauli's hypothesis that the neutrino existed and its actual detection: since then virtually all research with neutrinos has been with neutrinos created artificially in large particle accelerators and studied under neutrino microscopes. But a neutrino telescope, capable of detecting cosmic neutrinos, is difficult to construct. No apparatus can detect neutrinos unless it is extremely massive, because great mass is synonymous with huge numbers of nucleons (neutrons and protons), and the more massive the detector, the greater the probability of one of its nucleon's reacting with a neutrino. In addition, the apparatus must be sufficiently shielded from the interfering effects of other particles.
Fortunately, a group of astrophysicists has proposed a means of detecting cosmic neutrinos by harnessing the mass of the ocean. Named DUMAND, for Deep Underwater Muon and Neutrino Detector, the project calls for placing an array of light sensors at a depth of five kilometers under the ocean surface. The detecting medium is the seawater itself: when a neutrino interacts with a particle in an atom of seawater, the result is a cascade of electrically charged particles and a flash of light that can be detected by the sensors. The five kilometers of seawater above the sensors will shield them from the interfering effects of other high-energy particles raining down through the atmosphere.
The strongest motivation for the DUMAND project is that it will exploit an important source of information about the universe. The extension of astronomy from visible light to radio waves to x-rays and gamma rays never failed to lead to the discovery of unusual objects such as radio galaxies, quasars, and pulsars. Each of these discoveries came as a surprise. Neutrino astronomy will doubtless bring its own share of surprises.
200#
发表于 2011-8-26 22:11:38 | 只看该作者
虽然我920不知道能不能凑上这批,但是楼主的认真真的让人很感动啊,楼主一定能上750
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