跟读练习: 20 Test Practice Track 03 - 通过视频学习英语口语

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Test practice track 3.
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You will hear a university lecturer giving a talk about teaching physics to children.
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First, you will have some time to look at questions 1 to 10.
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Now listen carefully and answer questions 1 to 10.
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Good afternoon, everyone.
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We've been looking at different ways that, as teachers, you can make science fun in the classroom.
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And today I'm going to be talking about physics.
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Now the concepts of physics can be very difficult for children to understand, but they can also be really fun.
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So I'm going to describe a few experiments that will show children not only how exciting, but also how useful physics can be.
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The first experiment is based on what's known as the Brazil nut effect.
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It came about because physicists wondered why, when you open a container of mixed nuts, the largest Brazil nuts always seem to end up at the top.
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The great thing is that to demonstrate what's happening, you don't need a lot of equipment.
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Just a glass jar with a lid, a marble, so just a normal glass marble that children typically play with, and some sand.
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Just enough to fill the jar about three quarters full, and so there's still room for it to move about easily.
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Then you put the marble into the jar, put on the lid and shake it vigorously.
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Now before you show the results, ask your students to try and predict what will happen to the marble as you shake the jar.
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They're likely to make the same initial assumption as the physicists, which is that because the marble is heavier,
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it will sink down and end up at the bottom of the jar
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but in fact no matter how hard you shake it the marble will remain at
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or near the top that's
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because with a granular mixture like this the largest particles always end up on top when you shake it
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now it always helps to increase interest in science
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if you can show it has a real -world application
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and in this case it's proven to be very important in the field of healthcare,
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because scientists realise that if a patient is given medication in a powdered form, and it's made up of components of different densities,
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then those individual components may not mix together very evenly in the bottle.
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So they're now very careful to take this into account.
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Okay, our second experiment is the unpoppable balloon.
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This one is always fun.
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It requires an inflated balloon, a pin, and, the secret ingredient, a piece of sticky tape,
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which you're going to secretly apply to the side of the balloon.
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So don't show the students you've done this.
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Again, it's best to invite your class to predict the results.
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So hold up the balloon and the pin and ask them what will happen when you stick it in the balloon.
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They'll no doubt tell you that there'll be a very loud bang.
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However, if you stick the pin into your specially prepared section, to their surprise, rather than bursting,
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the air will leak out very quietly and slowly, and you can tell your students that when a balloon does burst,
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it does so faster than the speed of sound, creating a sonic boom.
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In the real world, this principle is used to test out the limits of different materials
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and to see just how elastic they are and how much stress can be put on them.
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The final experiment I want to recommend is great for demonstrating momentum and I call this one the arm engine.
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To do this experiment, you're going to need a chair that can swivel or rotate as well as some small hand weights.
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Get one of your students to sit on the chair holding the weights in their hands.
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Then ask another student to spin the chair as fast as they can.
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I'm sure your students will love the results of this one because they'll find that, depending on how they hold the weights,
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the students sitting in the chair will be able to alter their own speed.
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So when they hold the weights out and make themselves as wide as possible, they'll slow right down.
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But if they make themselves smaller, with the weights tucked right in next to their body,
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they'll be amazed to see that they can accelerate and start to spin faster again all by themselves.
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The whole class is sure to want to try it out.
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When it comes to the real -world application, tell your students that they can observe this principle at work from watching the ice skating at the Winter Olympics.
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They'll see how the competitors manage to spin incredibly fast just by tucking their hands in really close to their body.
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So these are just a few ideas for teaching physics.

通过这个视频你能学到什么?

这个视频不仅能帮你提升雅思口语练习中的话题描述能力,还能锻炼你在解释科学实验时的逻辑表达。同时,通过模仿讲师的讲解节奏,你能掌握如何用生动的语言吸引听众,让复杂的物理概念变得通俗易懂。

注意这些发音现象

视频中存在不少连读和弱读现象,比如"mixed nuts"会连读成/mɪkst nʌts/,"sticky tape"中的"sticky"弱读为/ˈstɪki/。此外,"vigorously"和"elastic"等长单词的重音位置也需要注意,前者重音在第二个音节,后者在第一个音节。这些细节能让你的口语更接近母语者。

像母语者一样表达

尝试用"shadow speech"(影子跟读法)模仿讲师的节奏和重音。比如在描述实验步骤时,讲师会在关键信息处加重语气,如"secret ingredient"和"slowly"。同时,注意句子的停顿,比如在"the largest Brazil nuts always seem to end up at the top"中,在"nuts"后稍作停顿,能让表达更清晰。通过反复练习,你会发现自己的口语流畅度和感染力都能得到提升。

这个视频非常适合"看视频学英语",里面的实验讲解生动有趣,能让你在轻松的氛围中练习口语。赶紧试试"shadow speak"吧,跟着讲师的节奏开口说,你会惊喜地发现自己的进步!

什么是跟读法?

跟读法 (Shadowing) 是一种有科学依据的语言学习技巧,最初开发用于专业口译员的培训,并由多语言者Alexander Arguelles博士普及。这个方法简单而强大:您在听英语母语原声的同时立即大声重复——就像是一个延迟1-2秒紧跟说话者的影子。与被动听力或语法练习不同,跟读法强迫您的大脑和口腔肌肉同时处理并模仿真实的讲话模式。研究表明它能显着提高发音准确性,语调,节奏,连读,听力理解和口语流利度——使其成为雅思口语备考和真实英语交流最有效的方法之一。

影子跟读法: 阅读完整分步指南 →