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The Mystery of Dark Matter
If you
look at the night sky, you'll often see stars moving very quickly. In fact,
they move much more quickly than they should according to their size and the
laws of physics. Scientists do not completely understand why the speed of these
stars is so high. But many believe the reason is that much of the universe is
made up of something called "dark matter". Groups of stars called
galaxies, such as the Milky Way, might even consist of ninety per cent dark
matter.
How much something weighs depends on
where it is. The same object weighs only half as much on Mars as it does on
Earth and almost three times as much on Jupiter. So scientists prefer to talk
about the mass of something rather than how much it weighs, because mass does
not change. They can work out the mass of galaxies by measuring the distance
between them and the speed they move. Recently, Dr. Jorge Penarrubia and a team
from Edinburgh University discovered something interesting. The mass of the
Milky Way is only half as much as the mass of another nearby galaxy, Andromeda.
This seems strange, but dark matter may explain why.
Finding
out more about dark matter could help us understand how the universe began, but
this is not easy. Lots of scientists with different types of expert knowledge
are working on the problem. The Edinburgh team is working with many other
universities like the University of British Columbia.
We
can't see dark matter, it's very difficult to measure and we can't find out its
mass. Unlike stars, dark matter doesn't produce or reflect light. But we can
make a good guess that it is there because of the way things move and the way
light bends. Experts now think dark mater may be very different from the mater
which we find on Earth. There may also be five times as much dark matter in the
universe as ordinary matter.
The
Swiss scientist Fritz Zwicky first gave dark matter its name in the
nineteen-thirties. Researchers have been looking for it ever since. Today, technology such as the Large Hadron
Collider is collecting more and more information but this technology cannot
tell us everything. New ways of finding dark matter will be needed.
Investigating dark matter may even mean we will need to start asking questions
about the way we look at the universe, including the ideas of Albert Einstein.
(1)
In what way do scientists find out the mass of galaxies?
A . Depending on where they are.
B . Depending on how much they weigh.
C . According to the way they move and the laws of physics.
D . By calculating how far between them and how fast they move.
(2)
Which of the following statements about dark matter is NOT TRUE?
A . It can't be seen.
B . It doesn't reflect light.
C . It is not unlike ordinary matter.
D . It affects the movement of things.
(3)
What may get researchers looking for dark matter?
A . To change the way light bends.
B . To prove the ideas of Albert Einstein.
C . To collect more and more information.
D . To help understand the origin of the universe.
(4)
Which heading best matches Paragraph 5?
A . It's there but we can't see it.
B . Sharing ideas leads to success.
C . We may need to change the way we think.
D . What your eyes can see can't be fully explained.
答案: D
C
D
C