Shadowing Practice: How Small is an Atom? - Learn English Speaking with Video

Les maken...
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What's the smallest thing you can think of?
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Maybe a penny or a button?
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How about a Cheerio?
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Its height is about half of a centimeter.
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For comparison there are 100 centimeters in a meter.
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Let's go smaller, a grain of salt.
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This is about 0.3 millimeters.
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There are 1,000 millimeters in a meter.
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And even smaller.
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Bacteria are only a few micrometers.
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There are 1 million micrometers in a meter.
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A virus is about 20 to 300 nanometers.
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There are 1 billion nanometers in a meter.
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The diameter of DNA is about 2 nanometers.
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The size of an atom is only a few angstroms.
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There are 10 billion angstroms in one meter.
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When you think of an atom, you probably picture something like this.
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On the outside, you've got electrons that have a negative charge.
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In the middle is the nucleus.
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It's made of neutrons which have no charge and protons which have a positive charge.
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This model's a good starting point, but there are a few things here that don't quite agree with modern science.
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For one, the size of the nucleus is a lot smaller than this.
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If I animate it to scale, you wouldn't even be able to see it.
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The same thing with these electrons.
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Another thing that's inaccurate is that electrons orbit the nucleus just like a planet orbits a star.
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Unfortunately, this is still taught in many textbooks, but it's just not correct.
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Let me cover some background first.
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Over 2,000 years ago, ancient Greek philosophers had this idea that everything was made of tiny particles.
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They called these tiny particles atoms.
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It wasn't until the 1800s that we finally started using science to prove that these atoms really exist.
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First we thought atoms look like this.
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A positively charged sphere with negatively charged electrons floating around it.
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Then we learned that this positively charged sphere was actually a lot smaller.
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We called this the nucleus.
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Slowly but surely we learned that the nucleus is made up of protons and neutrons.
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These electrons were tricky.
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At first we thought, they have to be doing something so they probably revolve around the nucleus like this.
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Electrons were then discovered to have different energy levels.
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We call these shells.
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Shells can only fit a certain amount of electrons.
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The more electrons, the more shells.
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It didn't take long before we realize that these shells don't determine how close the electron is to the nucleus.
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As it turns out, electrons are a lot more unpredictable.
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So if electrons don't orbit the nucleus, what do they do?
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Let's start with an idea of an orbit.
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Here we have the Earth going around the Sun.
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If the Earth is here today, we can use the laws of physics and gravity to predict exactly where the Earth will be three months from now.
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We know both both where the Earth is and where it's going.
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Now let's go to the size of an atom.
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With an electron, things are a little different.
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We can't know exactly where it is and where it's going.
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We can only know one or the other at any given time.
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This means it is impossible to really know what the electron is doing.
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The best we can do is predict where the electron will be found.
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This area is most commonly known as the electron cloud.
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However, if we want to be more specific about where to find electrons, you'll need to know about orbitals.
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This is not the same as orbit.
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Orbitals are specific shapes where electrons live in.
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If you were in a college chemistry class, you'd be studying about how these orbitals fill up as you get more electrons.
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But I'd like to keep things simple for this video.
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So in short, electrons are uncertain.
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We can't know the path that they travel.
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Only that they'll be found here in the electron cloud.
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So now you know that even though this is a popular way to represent an atom, it can be misleading.
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Just to recap what we learned, everything is made of atoms.
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Atoms are incredibly small, the nucleus is even smaller, and electrons don't orbit the nucleus.
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Their path is unpredictable.
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Thanks for watchin' everyone, my name is Jared Owen, and I'll see you next time.

Understanding Atoms: A Window into Science and Language

The video "How Small is an Atom?" takes viewers on a journey from everyday objects to the tiny world of atoms, blending scientific facts with clear explanations. It’s a great resource for learn english with videos because it uses simple, conversational language to explain complex ideas, making it ideal for building vocabulary and comprehension.

Top 5 Phrases for Daily Communication

  • "For comparison" – Useful for explaining relationships between ideas (e.g., "A cat is small; for comparison, a mouse is even smaller").
  • "Slowly but surely" – Describes gradual progress (e.g., "I’m learning guitar slowly but surely").
  • "As it turns out" – Introduces a surprising fact (e.g., "I thought the movie was bad, but as it turns out, it’s really good").
  • "The best we can do" – Expresses limitation (e.g., "We don’t have all the answers, but the best we can do is guess").
  • "It didn’t take long before" – Shows quick results (e.g., "It didn’t take long before I understood the lesson").

Step-by-Step Shadowing Guide for This Video

Shadowing is a powerful technique to improve english pronunciation and fluency. Here’s how to use it with this video:

  1. Listen and repeat short segments: Pause the video after 5-10 seconds (e.g., "What's the smallest thing you can think of? Maybe a penny or a button?"). Repeat the words aloud, mimicking the tone and rhythm. This helps with shadowing technique basics.
  2. Focus on stress and intonation: The speaker emphasizes words like "smaller," "nucleus," and "electron cloud." Notice how their voice rises and falls, and copy it to sound more natural.
  3. Practice tricky terms: Words like "Angstroms," "neutrons," and "orbitals" can be challenging. Break them into syllables (e.g., "An-gstroms") and repeat until you can say them smoothly.
  4. Speed up gradually: Once you’re comfortable with short segments, try shadowing the video at normal speed. This trains your brain to process and speak English quickly.
  5. Record yourself: Compare your recording to the video. Note differences in pronunciation or pacing, and adjust. This is a key tip from any good shadowing site.

By combining science learning with language practice, this video helps you build both knowledge and confidence. Start shadowing today to see progress in your English skills!

Wat is de Shadowing-techniek?

Shadowing is een wetenschappelijk onderbouwde taalleermethode die oorspronkelijk is ontwikkeld voor professionele tolkentraining en gepopulariseerd door polyglot Dr. Alexander Arguelles. De methode is eenvoudig maar krachtig: je luistert naar native Engelse audio en herhaalt het onmiddellijk hardop — als een schaduw die de spreker volgt met slechts 1–2 seconden vertraging. In tegenstelling tot passief luisteren of grammaticadrills, dwingt shadowing je hersenen en mondspieren om echte spraakpatronen tegelijkertijd te verwerken en te reproduceren. Onderzoek toont aan dat het de uitspraaknauwkeurigheid, intonatie, ritme, verbonden spraak, luisterbegrip en spreekvaardigheid aanzienlijk verbetert — waardoor het een van de meest effectieve methoden is voor IELTS Speaking-voorbereiding en echte Engelse communicatie.

Shadowing-techniek: lees de volledige stap-voor-stap-gids →