2021届高考英语二轮复习语法填空 阅读理解题源02:中子星有多大? WORD版含答案.docx
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1、备考2021高考语法填空02中子星有多大?第一部分 练习Neutron-star collisions teach us about the nature of the densest matter in 1、_ Universe. The properties of this matter can 2、_ (understand) in part by measuring the radii of neutron stars. Until recently, observers inferred 3、_ typical neutron-star radii ranged from 1014
2、km with large uncertainties. The present work determines the neutron-star radius 4、_ (depend) and more accurately. The improved constraints will have implications for the interpretation of future 5、_ (observe) of neutron stars and will help scientists 6、_ (well) understand the universe.Neutron stars
3、 are the remnants of supernova explosions 7、_ have extreme properties. In particular, the cores of neutron stars are made 8、_ of extremely dense nuclear matter. 9、_ two neutron stars collide, they give off gravitational waves, electromagnetic radiation, cosmic rays, and neutrinos, so-called multi-me
4、ssenger signals. Scientists observed one of these binary neutron-star collisions with several multi-messenger signals 10、_ August 2017.参考答案:1、 the2、 be understood3、 that4、 independently 5、 observations 6、 better 7、 and 8、 up 9、 When 10、 in 备考2021高考科技类时政新闻阅读题源 02How large are neutron stars?中子星有多大?Par
5、t 1 第一部分导读: 一个跨学科的研究小组已经确定了中子星半径的新的、更窄的限制。An interdisciplinary research team has identified new, narrower limits on the radii of neutron stars. 双语阅读(Nanowerk News) An interdisciplinary research team has identified new, narrower limits on the radii of neutron stars. 一个跨学科的研究小组已经确定了中子星半径的新的、更窄的限制。The
6、team included nuclear physicists, data scientists, and astronomers. 该小组包括核物理学家、数据科学家和天文学家。 Their novel approach combined two sources of information. 他们的新方法结合了两个信息来源。These sources were the first gravitational-wave and electromagnetic observations of a binary neutron-star collision and modern nuclear-
7、theory calculations of uncertainty.这些来源是第一次引力波和电磁观测的二元中子星碰撞和现代核理论计算的不确定性。The team determined the radius of a typical neutron star to be close to 11 kilometers. 小组确定一个典型中子星的半径接近11公里。 The results (Nature Astronomy,Stringent constraints on neutron-star radii from multimessenger observations and nuclear
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