欢迎来到知行英语网

英语范本背诵精华 24.4 Our Picture of the Universe

来源:www.yunwc.com 2026-02-08

In order to talk about the nature of the universe and to discuss questions such as whether it has a beginning or an end, you have to be clear about what a scientific theory is. I shall take the simpleminded view that a theory is just a model of the universe, or a restricted part of it, and a set of rules that relate quantities in the model to observatioins that we make.

It exists only in our minds and does not have any other reality . A theory is a good theory if it satisfies two requirements. It must accurately describe a large class of observations on the basis of a model that contains only a few arbitrary elements, and it must make definite predictions about the results of future observations. For example, Aristotle believed Empedocless theory that everything was made out of four elements, earth, air, fire, and water. This was simple enough, but did not make any definite predictions. On the other hand, Newtons theory of gravity was based on an even simpler model, in which bodies attracted each other with a force that was proportional to a quantity called their mass and inversely proportional to the square of the distance between them. Yet it predicts the motions of the sun, the moon, and the planets to a high degree of accuracy.

Any physical theory is always provisional, in the sense that it is only a hypothesis: you can never prove it. No matter how many times the results of experiments agree with some theory, you can never be sure that the next time the result will not contradict the theory. On the other hand, you can disprove a theory by finding even a single observation that disagrees with the predictions of the theory. As philosopher of science Karl Popper has emphasized, a good theory is characterized by the fact that it makes a number of predictions that could in principle be disproved or falsified by observation. Each time new experiments are observed to agree with the predictions the theory survives, and our confidence in it is increased; but if ever a new observation is found to disagree, we have to abandon or modify the theory.

At least that is what is supposed to happen, but you can always question the competence of the person who carried out the observation.

In practice, what often happens is that a new theory is devised that is really an extension of the previous theory. For example, very accurate observations of the planet Mercury revealed a small difference between its motion and the predictions of Newtons theory of gravity. Einsteins general theory of relativity predicted a slightly different motion from Newtons theory. The fact that Einsteins predictions matched what was seen, while Newtons did not, was one of the crucial confirmations of the new theory. However, we still use Newtons theory for all practical purposes because the difference between its predictions and those of general relativity is very small in the situations that we normally deal with.

The eventual goal of science is to provide a single theory that describes the whole universe. However, the approach most scientists actually follow is to separate the problem into two parts. First, there are the laws that tell us how the universe changes with time. Second, there is the question of the initial state of the universe. Some people feel that science should be concerned with only the first part; they regard the question of the initial situation as a matter for metaphysics or religion. They would say that God, being omnipotent, could have started the universe off any way he wanted. That may be so, but in that case he also could have made it develop in a completely arbitrary way. Yet it appears that he chose to make it evolve in a very regular way according to certain laws. It therefore seems equally reasonable to suppose that there are also laws governing the initial state.

It turns out to be very difficult to devise a theory to describe the universe all in one go. Instead, we break the problem up into bits and invent a number of partial theories. Each of these partial theories describes and predicts a certain limited class of observations, neglecting the effects of other quantities, or representing them by simple sets of numbers. It may be that this approach is completely wrong. If everything in the universe depends on everything else in a fundamental way, it might be impossible to get close to a full solution by investigating parts of the problem in isolation. Nevertheless, it is certainly the way that we have made progress in the past. The classic example again is the Newtonian theory of gravity, which tells us that the gravitational force between two bodies depends only on one number associated with each body, its mass, but is otherwise independent of what the bodies are made of. Thus one does not need to have a theory of the structure and constitution of the sun and the planets in order to calculate their orbits.

Today scientists describe the universe in terms of two basic partial theories the general theory of relativity and quantum mechanics. They are the great intellectual achievements of the first half of this century. The general theory of relativity describes the force of gravity and the large|scale structure of the universe, that is, the structure on scales from only a few miles to as large as a million million million million miles, the size of the observable universe. Quantum mechanics, on the other hand, deals with phenomena on extremely small scales, such as a millionth of a millionth of an inch. Unfortunately, however, these two theories are known to be inconsistent with each other they cannot both be correct. One of the major endeavors in physics today, and the major theme of this book, is the search for a new theory that will incorporate them both a quantum theory of gravity. We do not yet have such a theory, and we may still be a long way from having one, but we do already know many of the properties that it must have.

相关文章推荐

05

20

暮光之城•暮色 第28期:打开的书(9)

Mr. Banner came to our table then, to see why we weren't working.这个时候,班纳先生过来了,来看大家为何不做实验。He looked over our shoulders to

05

20

英语听力文摘 是什么触动笑神经?

了解了吗?" src="https://tu.tingclass.net/uploads/2013/0613/20130613052440217.jpg" />Did you ever wonder what occurs inside

05

19

暮光之城•暮色 第56期:第五章 血型(9)

I was lucky; Mr. Banner wasn't in the room yet when I arrived.我非常幸运。当我到教室的时候班纳老师还没有到。

05

19

英语小达人天天10分钟 51 Increasing My Value

Unit4 Increasing My Value第4单元 提升自我的价值It took 46 years for me to realize that I was holding myselfback in my career.我花了四十

05

19

英语听力文摘 “神奇”的巨石阵

神奇的巨石阵" src="https://tu.tingclass.net/uploads/2013/0715/20130715022602262.jpg" />Wizards and aliens aside, actual scien

05

19

温馨夜读II PART3 9.The Exact Price of a Mira

9.The Exact Price of a Miracle for Little BrotherTess was a precocious eight|year|old when she heard her Mom and Dad tal

05

19

暮光之城•暮色 第109期:第七章 梦魇(18)

The next thing I was conscious of was the sound of Charlie's cruiser turning onto the bricks of the driveway.下面我听到了查理的巡逻

05

18

一分钟英文:Musical Instruments|乐器

I really wish I could play a musical instrument. I cant. I had a few music lessons when I was a kid, but I didnt keep th

05

18

一分钟英文:Numbers|数字

A Just sTOP and think how important numbers are to our lives. Numbers control us. In fact, we are numbers. We have passp

05

18

一分钟英文:Science Fiction|科幻小说

Science fiction is one of my favourite genres of books and movies. I like the kind of science fiction that shows what th