Prática de Shadowing: The Map of Physics - Aprenda a falar inglês com vídeo

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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

Contexto & Histórico

O vídeo "The Map of Physics" aborda a vasta e complexa disciplina da física, que se ramifica desde galáxias distantes até partículas subatômicas. O orador, ao tentar mapear as interconexões entre os diversos tópicos físicos, oferece uma visão geral que pode ajudar tanto estudantes quanto entusiastas da ciência. Para aqueles que desejam aprender inglês com YouTube, esse conteúdo é ideal, pois combina conhecimento científico e prática da língua.

Top 5 Frases para Comunicação Diária

  • "A física é um assunto enorme que cobre muitos tópicos diferentes."
  • "Matemática é a linguagem da física."
  • "Teoria do caos descreve sistemas complexos."
  • "A relatividade especial prevê que a velocidade da luz é constante."
  • "Energia é uma propriedade fundamental da física."

Guia Prático de Shadowing

Para aqueles interessados em melhorar a pronúncia em inglês e aprofundar sua compreensão da língua, o método de shadowing em inglês é extremamente eficaz. Aqui está um guia passo a passo sobre como aplicar essa técnica especificamente para o vídeo em questão:

  1. Assista o vídeo uma vez: Preste atenção ao conteúdo geral e à terminologia usada.
  2. Ouça e leia o transcript: Utilize o transcript do vídeo para acompanhar enquanto escuta. Isso ajudará a aumentar sua familiaridade com as palavras e expressões.
  3. Repita em voz alta: Escolha uma frase a cada vez e repita-a imitando a entonação e o ritmo do falante. Insira pausas, se necessário.
  4. Grave sua voz: Utilize um aplicativo de gravação de áudio para registrar sua prática. Isso permitirá que você compare sua pronúncia com a do orador.
  5. Revise e ajuste: Ouça sua gravação e tenha em mente as principais áreas onde pode melhorar. Faça ajustes conforme necessário e repita o processo.

Seguindo esses passos, você poderá aproveitar ao máximo o método de shadowing e aprimorar suas habilidades de prática de conversação em inglês. Com paciência e prática, você não apenas entenderá a física, mas também se tornará mais proficiente na língua! Para recursos adicionais, informe-se sobre shadowing site que podem proporcionar ferramentas e material de apoio.

O que é a Técnica de Shadowing?

Shadowing é uma técnica de aprendizado de idiomas com base científica, originalmente desenvolvida para o treinamento de intérpretes profissionais. O método é simples, mas poderoso: você ouve áudio em inglês nativo e repete imediatamente em voz alta — como uma sombra seguindo o falante com 1-2 segundos de atraso. Pesquisas mostram melhora significativa na precisão da pronúncia, entonação, ritmo, sons conectados, compreensão auditiva e fluência na fala.