쉐도잉 연습: The Map of Physics - 영상으로 영어 말하기 배우기

레슨 만드는 중...
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So physics is a huge subject
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that covers many different topics going from galaxies in the depth of space right down to subatomic particles. And
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if you don't already know physics it's difficult sometimes to see how all of these different subjects are related to each other.
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So this is my attempt to show that in a map.
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So this is the map of physics.
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I hope you enjoy it.
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Physics can be broadly broken down into three main parts, classical physics, quantum physics and relativity.
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We'll start with classical physics and a good person to start with is Isaac Newton.
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His laws of motion describe how everything made of matter moves about, and his law of universal gravitation tied together the motion of
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planets in the sky with the falling of objects on earth into one elegant and general description.
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He also invented calculus, a supremely powerful mathematical tool which has been used over the centuries to derive new physics.
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Calculus is really a part of mathematics, but physics and mathematics are inseparable.
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Maths is the language of physics and you can imagine it like the bedrock that the world of physics is built from.
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Newton also made strides in the field of optics, which is the physics of light and how it travels through different materials.
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It explains refraction seen in prisms and lenses which are used to focus light in telescopes, microscopes and cameras.
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Telescopes enabled us to peer into the depths of space
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and observe the wild array of objects there and develop astrophysics and cosmology.
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Optics is closely related to the theory of waves, which is basically how energy can travel through disturbances of a medium,
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like ripples on the surface of a pond or sound through the air.
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Light doesn't It can travel through the vacuum of space, but it still follows the same principles as all waves,
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namely reflection, refraction and diffraction.
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This leads us to electromagnetism, the description of magnets, electricity, or more generally, electric and magnetic fields.
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It was a physicist called James Clerk Maxwell who discovered
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that these are two aspects of the same thing
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and derived the wonderfully elegant rules of electromagnetism and theorised that light was an electromagnetic wave.
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Electromagnetism also explains all of electricity.
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Jumping back a little bit, classical mechanics is related to Newton's laws and covers the properties and motion of solid objects, how they move when forces hit them,
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and what happens when they are joined together like in gears or in buildings or bridges.
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Fluid mechanics is the description of flows of liquids and gases.
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Using fluid mechanics you can work out how much lift is generated from an aeroplane's wing or how aerodynamic a car is.
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Fluid mechanics is notoriously difficult, mostly because the motions of tiny things like molecules get really complicated really fast,
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which leads us to chaos theory.
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Chaos theory is the description of large complex systems
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and how small differences in initial conditions can lead to very different final outcomes.
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Thermodynamics is the description of energy and how it passes from one form to another.
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It also includes entropy, which is a measure of order
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and disorder and basically tells you how useful different kinds of energy are.
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Energy is a fundamental property to physics
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and although I've written energy here I should have written it everywhere on this map because everything has energy.
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So that's all of classical physics, the picture of the universe we had around the year 1900.
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It told us we lived in a universe where everything ran sort of like clockwork.
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If you could measure everything accurately enough the future was kind of predetermined.
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However not everything was solved.
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There were just a few holes in experiments that hinted at something more.
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The orbit of Mercury was slightly too fast, and some strange things happened on the smallest scales with electrons and light which were all unexplained.
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Physicists at the time thought that they'd solve and explain these problems soon enough, but poking at them they unraveled the new domains of relativity
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and quantum physics and turned our understanding of the universe completely on its head.
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Albert Einstein was the genius who developed the theories of special and general relativity.
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Special relativity predicts that the speed of light is constant for all observers, which means that when you travel really fast,
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weird stuff starts happening, like time slowing down.
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It also states that energy and matter are different aspects of the same thing, through the famous formula E equals mc squared.
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General relativity says that space and time are part of the same fabric called spacetime, and that the force of gravity comes from objects bending spacetime,
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making other objects fall in towards them.
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While relativity describes the very big, other physicists were busy at work on the very small in the world of quantum physics.
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Atomic theory probed the nature of the atom, and more and more detailed descriptions of the atom were developed, from a tiny sphere, to electron orbits,
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to energy levels, and then to the electrons being wave-like charge distributions.
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Condensed matter physics describes the quantum physics of many atoms together in solids and liquids, and is where many great technologies have come from,
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like computers, lasers and quantum information science.
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Nuclear physics describes how the nucleus of atoms behave, and explains radiation, nuclear fission ,
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and nuclear fusion which takes place in the sun and will hopefully soon be harnessed here on Earth.
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Particle physics probes even deeper to find the fundamental subatomic particles
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that everything is made and are described in the Standard Model of Particle Physics.
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And quantum field theory captures all of quantum physics and combines it with the special theory of relativity, and it's the best description of the universe we have.
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Unfortunately, quantum field theory doesn't include gravity, and so physicists don't know how to join together quantum physics and the general theory of relativity,
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leading to the giant chasm of ignorance.
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One day in the future we hope to close this chasm and come up with a theory of all of physics, we call it quantum gravity.
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And there are many attempts to do this, some examples of string theory or loop quantum gravity and there's many more.
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But So quantum gravity isn't the only thing we observe but don't understand.
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There are also the major puzzles of dark energy and dark matter which seem to make up 95% of the universe,
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so all of our physics only really describes 5% of what we know about, and everything else at the moment is a mystery.
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There are many other mysteries out there like the Big Bang, and no doubt there's things beyond that that we don't even know that we don't know.
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Which gets to the lofty cloud which floats over all of physics, philosophy.
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Although many physicists make fun of philosophy, it's the big philosophical questions that motivate a lot of physics, like what is the fundamental nature of reality?
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How come the universe even exists?
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Do we have free will if we're just made of physics?
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Or how do we know that the way that we do physics
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and science actually gets to the fundamental truth of the universe?
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And just why is all of physics like the way it is?
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Well those are rather big questions, ones which we may or may never answer, but there's no reason to give up trying, after all physicists are not quitters.
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And that was the map of physics. So that's the end.
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Thanks for watching the video, I hope you enjoyed it.
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I'm still kind of working on the format of this channel, playing around with a few different things
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and I kind of like this animation style
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so let me know in the comments
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if you enjoy this kind of stuff you want me to do more and
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if there's any specific subjects you want me to cover I'm
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totally open to ideas I've got a whole bunch of videos
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that are coming down the pipe so keep your eyes peeled for those so until next time see ya

맥락 및 배경

이 비디오는 물리학의 방대한 주제를 다루고 있으며, 우주의 별과 미시 세계에 있는 아원자 입자까지의 다양한 개념을 탐구합니다. 물리학을 잘 모르는 사람들에게는 이러한 주제들이 어떻게 연결되는지 이해하기 어려울 수 있습니다. 이 영상에서는 물리학의 지도를 그리며, 고전 물리학, 양자 물리학, 그리고 상대성 이론과 같은 중요한 구성 요소를 다룹니다. 이를 통해 물리학의 기본 개념을 이해하고자 하는 영어 학습자들에게 훌륭한 자원이 될 것입니다.

일상 생활에서의 상위 5개 표현

  • 물리학은 많은 주제를 다룹니다. - "Physics covers many different topics."
  • 에너지의 기본 성질입니다. - "Energy is a fundamental property."
  • 스페이스타임이라는 개념입니다. - "The concept of spacetime."
  • 이론을 통해 우주를 이해해야 합니다. - "We need to understand the universe through theories."
  • 실험에서 나타나는 문제들. - "Problems that arise in experiments."

단계별 쉐도잉 가이드

비디오 내용은 물리학의 여러 분야를 다루고 있기 때문에, 처음 학습하는 이들에게는 다소 어려울 수 있습니다. 다음은 이 비디오의 내용을 효과적으로 학습하기 위한 단계별 쉐도잉 가이드입니다:

  1. 첫 번째 단계: 비디오를 처음부터 끝까지 여러 번 시청하며 내용에 익숙해지세요. 이 단계에서 영어 발음 교정과 억양을 이해하는 것이 중요합니다.
  2. 두 번째 단계: 비디오의 특정 구문을 선택하고, 각 문장을 천천히 따라 읽어보세요. 예를 들어 "Energy is a fundamental property." 같은 문장을 반복적으로 말해보세요. 이는 영어 쉐도잉 연습의 핵심입니다.
  3. 세 번째 단계: 비디오의 특정 클립을 선택하고 따라하는 연습을 하세요. 이를 통해 자연스럽게 발음과 억양을 개선할 수 있습니다. 이 과정은 IELTS 스피킹 준비에도 유용합니다.
  4. 네 번째 단계: 다른 학습자와 함께 이 비디오의 내용을 요약하고 토론해보세요. 이는 shadow speech 능력을 향상시키고, 실질적인 대화를 연습하는 좋은 방법입니다.
  5. 다섯 번째 단계: 이 모든 과정을 반복하며 자신의 발음을 녹음해보세요. 나중에 다시 들으면서 얼마나 개선되었는지 평가할 수 있습니다.

이러한 방법들을 사용하여 비디오를 반복적으로 학습하면서 영어 실력을 향상시키고, 물리학에 대한 이해를 높일 수 있을 것입니다.

쉐도잉이란? 영어 실력을 빠르게 키우는 과학적 방법

쉐도잉(Shadowing)은 원래 전문 통역사 훈련을 위해 개발된 언어 학습 기법으로, 다언어 학자인 Dr. Alexander Arguelles에 의해 대중화된 방법입니다. 핵심 원리는 간단하지만 매우 강력합니다: 원어민의 영어를 들으면서 1~2초의 짧은 지연으로 즉시 소리 내어 따라 말하는 것——마치 '그림자(shadow)'처럼 화자를 따라가는 것입니다. 문법 공부나 수동적인 청취와 달리, 쉐도잉은 뇌와 입 근육이 동시에 실시간으로 영어를 처리하고 재현하도록 훈련합니다. 연구에 따르면 이 방법은 발음 정확도, 억양, 리듬, 연음, 청취력, 말하기 유창성을 크게 향상시킵니다. IELTS 스피킹 준비와 자연스러운 영어 소통을 원하는 분들에게 특히 효과적입니다.