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高中三年级英语

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  • 阅读理解
    阅读理解。

         Batteries can power anything from small sensors to large systems. While scientists are finding ways to
    make them smaller but even more powerful, problems can arise when these batteries are much larger and
    heavier than the devices themselves. University of Missouri(MU) researchers are developing a nuclear
    energy source that is smaller, lighter and more efficient.
         "To provide enough power, we need certain methods with high energy density",said Jae Kwon,
    assistant professor of electrical and computer engineering at MU. "The radioisotope (放射性同位素)
    battery can provide power density that is much higher than chemical batteries."
         Kwon and his research team have been working on building a small nuclear battery, presently the size
    and thickness of a penny, intended to power various micro / nanoelectromechanical systems (M/NEMS). Although nuclear batteries can cause concerns, Kwon said they are safe.
         "People hear the word 'nuclear' and think of something very dangerous," he said, "However, nuclear
    power sources have already been safely powering a variety of devices, such as pace-makers, space
    satellites and underwater systems."
         His new idea is not only in the battery's size, but also in its semiconductor(半导体). Kwon's battery
    uses a liquid semiconductor rather than a solid semiconductor.
         "The key part of using a radioactive battery is that when you harvest the energy, part of the radiation
    energy can damage the lattice structure of the solid semiconductor," Kwon said, "By using a liquid
    semiconductor, we believe we can minimize that problem."
         Together with J. David Robertson, chemistry professor and associate director of the MU Research
    Reactor, Kwon is working to build and test the battery. In the future, they hope to increase the battery's
    power, shrink its size and try with various other materials. Kwon said that battery could be thinner than
    the thickness of human hair.


    1. Which of the following is true of Jae Kwon?
    A. He teaches chemistry at MU.
    B. He developed a chemical battery.
    C. He is working on a nuclear energy source.
    D. He made a breakthrough in computer engineering.
    2. Jae Kwon gave examples in Paragraph 4_________.
    A. to show chemical batteries are widely applied.
    B. to introduce nuclear batteries can be safely used.
    C. to describe a nuclear-powered system.
    D. to introduce various energy sources.
    3. Liquid semiconductor is used to _________.
    A. get rid of the radioactive waste
    B. test the power of nuclear batteries.
    C. decrease the size of nuclear batteries
    D. reduce the damage to lattice structure.
    4. According to Jae Kwon, his nuclear battery _______.
    A. uses a solid semiconductor
    B. will soon replace the present ones.
    C. could be extremely thin
    D. has passed the final test.
    5. The text is most probably a ________.
    A. science news report
    B. book review
    C. newspaper ad
    D. science fiction story
    本题信息:2012年广东省期中题英语阅读理解难度极难 来源:姜雪
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故事类阅读

等考点的理解。关于这些考点您可以点击下面的选项卡查看详细档案。
  • 故事类阅读

故事类阅读概念:

这类文章一般描述的是某一件具体事情的发生发展或结局,有人物、时间、地点和事件。命题往往从故事的情节、人物或事件的之间的关系、作者的态度及意图、故事前因和后果的推测等方面着手,考查学生对细节的辨认能力以及推理判断能力。


故事类阅读应试技巧:

1、抓住文章的6个要素:
阅读时要学会从事情本身的发展去理解故事情节而不要只看事件在文中出现的先后顺序。因此,无论是顺叙还是倒叙,阅读此类文章时,必须要找到它结构中的5个W(when, where, who, why, what)和1个H(how),不过不是每篇都会完整地交待六个要素。毫无疑问,寻出这些元素是能够正确快速解题的一个先决条件。
2、注意作者的议论和抒情:
高考英语阅读理解故事类文章常伴随着作者思想情感的流露和表达,因此议论和抒情往往夹杂其中。行文时或按事情发生发展的先后时间进行或按事情发生发展的地点来转换,也可能按事情发展的阶段来布局。在引出话题,讲完一件事情后,作者往往会表达个人感悟或提出建议等。这些体现作者观点或思想的语句在阅读时可以划线,它们往往体现文章中心或者写作意图,属于必考点,所以要仔细体会。
3、结合前两点归纳文章中心,把握作者态度:
故事类文章是通过记叙一件事来表达中心思想的,它是文章的灵魂。归纳文章中心思想时,尤其要分析文章的结尾,因为很多文章卒章显志,用简短的议论、抒情揭示文章中心;文章中议论抒情的句子往往与中心密切相关;也有的文章需要在结合概括各段大意的基础上归纳中心。另外,叙述一件事必有其目的,或阐明某一观点,或赞美某种品德,或抨击某种陋习,这就要求我们在阅读时,通过对细节(第1点中的六要素)的理解,把握作者的态度。
4、有章有据进行解题判断:
分析文章,归纳主题,属于分析、概括、综合的表述能力的考查。切忌脱离文章,架空分析,一定让分析在文章中有依据。