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Black Holes 1 Black holes can be best described as a sort of vacuum, sucking up everyt

Black Holes

1 Black holes can be best described as a sort of vacuum, sucking up everything in space. Scientists have discovered that black holes come from an explosion of huge stars. Stars that are near death can no longer burn due to loss of fuel, and because its temperature can no longer control the gravitational(重力的) force, hydrogen ends up putting pressure onto the star’s surface until it suddenly explodes then collapses.

2 Black holes come from stars that are made of hydrogen, other gases and a few metals. When these explode it can turn into a stellar-mass(恒星质量) black hole, which can only occur if the star is large enough (should be bigger than the sun) for the explosion to break it into pieces, and the gravity starts to compact every piece into the tiniest particle. Try to see and compare: if a star that’s ten times the size of the sun end up being a black hole that’s no longer than 70 kilometers, then the Earth would become black hole that’s only a fraction of an inch!

3 Objects that get sucked in a black hole will always remain there, never to break free. But remember that black holes can only gobble up(吞噬) objects within a specific distance to it. It’s possible for a large star near the sun to become a black hole, but the sun will continue to stay in place. Orbits(轨道) do not change because the newly formed black hole contains exactly the same amount of mass as when it was a star, only this its mass is totally contracted that it can end up as no bigger than a state.

4 So far, astronomers have figured out that black holes exist because of Albert Einstein’s theory of relativity. In the end, through numerous studies, they have discovered that black holes truly exist. Since black holes trap light and do not give off light, it is not possible to detect black holes via a telescope. But astronomers continue to explore galaxies(银河系), space and the solar system to understand how black holes. It is possible that black holes can exist for millions of years, and later contribute further process in galaxies, which can eventually lead to creation of new entities. Scientists also credit black holes as helpful in learning how galaxies began to form.

A Is there proof that black holes really exist?

B What are different types of black holes?

C How are black holes formed?

D How were black holes named?

E What happened to the objects around a black hole?

F What are black holes made of?

23 Paragraph 1________

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第1题

蒸汽锅炉的额定蒸汽压力为锅炉设计的____。

A、出口压力

B、入口压力

C、锅筒压力

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第2题

锅炉SHL35-1.6/350-P表示(),额定蒸汽压力为()。A.单锅筒横置链条炉排锅炉,1.6MPaB.单锅筒

锅炉SHL35-1.6/350-P表示(),额定蒸汽压力为()。

A.单锅筒横置链条炉排锅炉,1.6MPa

B.单锅筒纵置链条炉排锅炉,35MPa

C.双锅筒横置链条炉排锅炉,1.6MPa

D.双锅简纵置链条炉排锅炉,35MPa

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第3题

锅炉SHL35-1.6/350-P表示(),额定蒸汽压力为()。A.单锅筒横置链条炉排锅炉,1.6MPaB.单锅筒纵置链条

锅炉SHL35-1.6/350-P表示(),额定蒸汽压力为()。

A.单锅筒横置链条炉排锅炉,1.6MPa

B.单锅筒纵置链条炉排锅炉,35MPa

C.双锅筒横置链条炉排锅炉,1.6MPa

D.双锅筒纵置链条炉排锅炉,35MPa

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第4题

锅炉SHL35-1.6/350-P表示(),额定蒸汽压力为()。A.单锅筒横置链条炉排锅炉,1.6MPaB.单锅筒纵置链条

锅炉SHL35-1.6/350-P表示(),额定蒸汽压力为()。

A.单锅筒横置链条炉排锅炉,1.6MPa

B.单锅筒纵置链条炉排锅炉,35MPa

C.双锅筒横置链条炉排锅炉,1.6MPa

D.双锅筒纵置链条炉排锅炉,35MPa

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第5题

电站锅炉(工作压力一般不低于3.8MPa)的锅筒和集箱上应装设膨胀指示器。
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