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听力原文:Narrator Listen to part of a discussion in a physics class. The professor is dis

cussing Forces. Professor Well, today wed talk about Force and its representation. Student A So what is force? Professor Well, actually, a force is a push or pull upon an object resulting from the objects interaction with another object. Whenever there is an interaction between two objects, there is a force upon each of the objects. When the interaction ceases, the two objects no longer experience the force. Forces only exist as a result of an interaction. Student A [interrupting] You mean if a force exists, there should be two objects. Am I right? Professor Thats right. Er, ...For simplicity sake, all forces, interactions, between objects can be placed into two broad categories. One is contact force; the other is force resulting from action-at-a-distance. Student B [ interrupting] Action-at-a-distance? Professor Yeah, first lets talk about contact force. Contact forces are types of forces in which the two interacting objects are physically in contact with each other. Examples of contact forces include frictional forces, tensional forces, normal forces, air resistance forces, and applied forces. These specific forces will be discussed in more detail later in Lesson 2, as well as in other lessons. Student A Uh...so many forces fall into this category. Then, what is "force resulting from action-at-a-distance"? Professor Er, ...Action-at-a-distance forces are types of forces in which the two interacting objects are not in physical contact with each other, yet are able to exert a push or pull despite a physical separation. Examples of action-at-a-distance forces include gravitational forces, such as, the sun and planets exert a gravitational pull on each other despite their large spatial separation; even when your feet leave the earth and you are no longer in contact with the earth, there is a gravitational pull between you and the Earth. Next, electric forces, such as, the protons in the nucleus of an atom and the electrons outside the nucleus experience an electrical pull towards each other despite their small spatial separation; and magnetic forces, for example, two magnets can exert a magnetic pull on each other even when separated by a distance of a few centimeters. These specific forces will be discussed in more detail in other lessons. Student B Thats magic! I am quite familiar with the phenomenon you mentioned just now, but before this class, I had no concept of these categories of forces. Student A Er, I know very little about this, too. Professor Actually, forces exist in our daily life. Force is a quantity which is measured using the standard metric unit known as the Newton. A Newton is abbreviated by an "N". To say "10. 0 N" means 10. 0 Newtons of force. Student A [ interrupting] So Newton is the standard metric unit of force? Professor Thats true. In fact, a force is a vector quantity. As we learned in an earlier unit, a vector quantity is a quantity which has both magnitude and direction. To fully describe the force acting upon an object, you must describe both the magnitude and the direction. Thus, "10 Newtons" is not a full description of the force acting upon an object. In contrast, "10 Newtons downwards" is a complete description of the force acting upon an object; both the magnitude, "10 Newtons", and the direction, "downwards", are given. Student B Uh, thats quite complex and easy to make a mistake. Professor Yeah. ...because a force is a vector which has a direction, it is common to represent forces using diagrams in which a force is represented by an arrow. Such vector diagrams were introduced in an earlier unit and will be used throughout your study of physics. The size of the arrow is reflective of the magnitude of the force and the direction of the arrow reveals the direction which the force is acting. Such diagrams are known as free-body diagrams. Furthermore, because forces are vectors, the influence of an individual force upon an object is often canceled by the influence of another force. For example, the influence of a "20 Newton upward" force acting upon a book is canceled by the influence of a "20 Newton downward" force acting upon the book. In such instances, it is said that the two individual forces "balance each other", meaning there would be no unbalanced force acting upon the book. Student A That sounds interesting. Then, there should be other situations in which two of the individual vector forces cancel each other, the so-called balance, yet a third individual force exists that is not balanced by another force. Professor Thats the point. Next time we will learn how to draw the free-body diagrams, which can help you to understand the situation more easily. Now get ready to answer the questions. You may use your notes to help you answer. 24. What is the discussion mainly about? 25. How does the professor emphasize his point about force classification? 26. What are two key factors of force description? 27. According to the discussion, what forces belong to action-at-a-distance forces? Listen again to part of the conversation. Then answer the question. Professor Well, actually, a force is a push or pull upon an object resulting from the objects interaction with another object. Whenever there is an interaction between two objects, there is a force upon each of the objects. When the interaction ceases, the two objects no longer experience the force. Forces only exist as a result of an interaction. Student A [Interrupting] You mean if a force exists, there should be two objects. Am I right? 28. What can be inferred about student A? Listen again to part of the conversation. Then answer the question. Professor Thats the point, next time we will learn how to draw the free-body diagrams, which can help you to understand the situation more easily. 29. What does the professor mean when she says this? Professor Thats the point.Narrator Listen to part of a discussion in a physics class. The professor is discussing Forces. Now get ready to answer the questions. You may use your notes to help you answer.

What is the discussion mainly about?

A.The metric unit of forces.

B.The magnitude and direction of various forces.

C.The two kinds of forces and their features.

D.The diagrams of forces.

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更多“听力原文:Narrator Listen to part of a discussion in a physics class. The professor is dis”相关的问题

第1题

听力原文:W: How beautiful your radio is!M: Thank you. I like to listen to it.Q: What does

听力原文:W: How beautiful your radio is!

M: Thank you. I like to listen to it.

Q: What does the boy like to do?

(20)

A.He likes to watch TV.

B.He likes to listen to the radio.

C.He likes to listen to music.

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第2题

听力原文:M: Are you going to listen to the guest speaker this evening?W: I certainly am. H

听力原文:M: Are you going to listen to the guest speaker this evening?

W: I certainly am. He's speaking on a topic close to my heart.

Q: Why is the woman going to listen to the guest speaker?

(16)

A.Because she has nothing else to do that evening.

B.Because she likes the man.

C.Because she has once read a book written by the man.

D.Because she is interested in the topic of the lecture.

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第3题

听力原文:M: I often listen to light music at home. What kind of music do you like ?W: I re

听力原文:M: I often listen to light music at home. What kind of music do you like ?

W: I really enjoy Chinese music.

What are they talking about?

A.Family.

B.Language.

C.Music.

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第4题

听力原文:W: What is the assignment for next Friday?M: Nothing to read or write.But we're s

听力原文:W: What is the assignment for next Friday?

M: Nothing to read or write. But we're supposed to listen to a radio program and get ready to discuss it in class.

What will the students do in class next Friday?

A.Write a paper.

B.Read an article.

C.Listen to radio.

D.Discuss a radio program.

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第5题

听力原文:M: Could you keep the noise down, Mary? I'm trying to listen to the recording.W:

听力原文:M: Could you keep the noise down, Mary? I'm trying to listen to the recording.

W: Sorry, it's not me. There is a party downstairs.

What does the woman imply?

A.She will mm off her recorder.

B.She is not responsible for the noise.

C.She will do something about the noise.

D.She wants the man to use the earphones.

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第6题

听力原文:W: Turn on the radio, please. Perhaps it's time for the weather forecast now.M: I

听力原文:W: Turn on the radio, please. Perhaps it's time for the weather forecast now.

M: It's ten o'clock, just the time for the world news.

What does the woman want to listen to?

A.Weather forecast.

B.The world news.

C.Music.

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第7题

听力原文:Mr. Wang likes to listen to radio programs every afternoon. A.B.C.

听力原文:Mr. Wang likes to listen to radio programs every afternoon.

听力原文:Mr. Wang likes to listen to radio programs ev

A.

B.

C.

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第8题

听力原文:W: Did you listen to the president's speech on the radio last night?M: I was writ

听力原文:W: Did you listen to the president's speech on the radio last night?

M: I was writing a report on economics, a report you know.

Q: What can we learn from the man's reply?

(17)

A.The president spoke on the radio on economics.

B.The president should have reported on economies.

C.The man missed the speech.

D.The man thought it was a wonderful report.

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第9题

听力原文:W:I just love this new CD.Have you heard it?M:I really don't listen to classical

听力原文:W:I just love this new CD.Have you heard it?

M:I really don't listen to classical music.I prefer pop music.

Q: What does the man mean?

(15)

A.He is not interested in the CD.

B.He does not enjoy pop music.

C.He rarely listens to music.

D.He has heard the new CD.

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第10题

听力原文:M: Alan, do we have to listen to that?W: Why? Don't you like it?M: Er, no, not pa

听力原文:M: Alan, do we have to listen to that?

W: Why? Don't you like it?

M: Er, no, not particularly. Can we have something more peaceful?

What does the woman mean?

A.She wants to keep quiet.

B.She wants to have a peaceful life.

C.She wants to have a nice evening.

D.She wants to listen to some light music.

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