Shadowing Practice: Why Earth Is A Prison and How To Escape It - Learn English Speaking with Video

Ders oluşturuluyor...
1
We are prisoners on Earth. The Universe taunts us, by showing all the places we can't ever visit.
2
However, if our species wants to have a long term future, we have to escape our prison.
3
But what is keeping us here in the first place?
4
Turns out, we owe the universe a debt that is 4.5 billion years old.
5
Everything with mass in the universe attracts every other thing with mass.
6
We call this phenomenon 'gravity'.
7
The closer you are to a big chunk of mass, the stronger the attraction or the more you're pulled in.
8
This effect traps us on earth.
9
We can imagine this as being prisoners in a gravity prison, or a gravity well.
10
It's not a literal well, but a handy concept to understand how this works.
11
Being in a gravity prison means that you owe gravity energy.
12
But how can you owe energy?
13
Because in our universe, things don't want to change their speed or direction.
14
To convince them to move, you have to expend energy.
15
Billions of years ago, the gravitational attraction of trillions of trillions of dust particles orbiting our sun caught them together until they formed a planet.
16
This process used energy and created the gravity well we're now a part of.
17
The deeper you are inside the gravity well, the more energy you owe gravity.
18
If you don't find a way to get enough energy, then you aren't able to leave no matter what you do.
19
Because your atoms were once part of the dust that the universe expended energy on to get to this place.
20
Ok. Hmm...Let's summarise all of that again.
21
Objects in the universe don't like to move. You have to convince them to do so with energy.
22
Gravity used energy to convince the parts of our planet to move together.
23
This created a gravity prison in the process, trapping us .
24
To escape, it we need to repay it with energy.
25
Ok. How do we do that?
26
To get into space, we need to go through a complicated process of exchanging energy.
27
For this purpose, we build a negative potential energy repaying machine.
28
Known By their more boring name 'rockets' Rockets work by using some of the most energetic chemical reactions humans know about to basically explode fuel in a controlled way.
29
This converts chemical energy into kinetic energy.
30
The exhaust of the reaction is directed outwards, and pushes the rocket away from Earth.
31
By expanding a lot of energy, we are increasing our gravitational potential energy.
32
Which is a complicated way to say that we are paying back our energy debt to gravity.
33
But it's actually a lot trickier than that.
34
When you burn fuel to get into orbit, you lose lots of energy to heat, exhaust and atmospheric drag ,so you actually need much more.
35
And you can't just pile a huge amount of radioactive, really explosive, dangerous fuel close to your payload and detonate it.
36
You need a controlled burn which is complicated and makes your rocket very heavy ...which means it has more mass.
37
The more mass something has, the more energy you need to convince it to move, so you need more fuel to lift up your rocket.
38
But,if you need more fuel, that means you need more rocket to carry that fuel!
39
But, this makes your rocket heavier thus requiring more fuel which requires more rocket to carry that new fuel and so on.
40
At the end of this madness, you need closer to a 100x the weight of your payload to launch Ariane 6, for example will weigh 800 tons and should be able to transport 10 tons into geostationary transfer orbit or, 20 tons into medium earth orbit.
41
But a rocket can only produce so much thrust, so there is a maximum weight, after which it just won't take off.
42
If you add too much weight, it won't lift off. So, you can't just build bigger and bigger fuel tanks This is the tyranny of the rocket equation and it means space flight will never become easy.
43
But wait, it gets worse.
44
Getting to space is still not good enough- you're still inside the gravity prison at the edge of space and will crash back to Earth.
45
Staying in space is much harder than getting there.
46
To get to a stable position, where it can stay for a while, a rocket has to reach low Earth orbit.
47
To do this, you need a lot of kinetic energy which means going extremely fast at an altitude of about 100 km, this is 8 km/s 28,000 km/h is fast enough to travel around Earth in 90 minutes.
48
Here, we can use a trick.
49
Instead of flying straight up, we can go sideways!
50
Earth is a sphere.
51
So, if you're going sideways, fast enough the ground will curve away beneath you.
52
So, as long as you're above the atmosphere you'll be able to stay up there in orbit.
53
This is what the ISS does to stay fast enough.
54
If we look at orbits in scale, we see that near Earth orbit is laughably close to Earth.
55
To deploy, for eg Satellites, on leave for other planets, requires another round of energy debt repayment.
56
Getting to orbit is the most difficult part of space flight for us right now.
57
For example: If we want to send a rocket to Mars, half the energy is necessary just to get into orbit and the other half for the 55 million km to Mars.
58
Therefore, to be as effective as possible, rockets aren't built in one giant piece.
59
Instead, we use multistage rockets. We don't need to carry an empty fuel tank, so rockets drop it.
60
Rockets today, shed their boosters and main stage as they ascend with each successive stage being it's own fully contained rocket, complete with its own engine and fuel.
61
Ok. So this is why getting to space is hard.
62
If you feel all of this seems really complicated, don't worry. It's literally rocket science!
63
This video was made possible in part by a sponsorship by Airbus Safran Launchers and Arianespace.
64
Who are getting their new Ariane 6 rocket ready to launch into space in 2020.
65
You can learn more about the rocket here.
66
And as always, if you like what we do please consider supporting us on Patreon.com.
67
It really helps us out a lot!
68
If you're craving more space stuff now: here's a playlist for you.

Bu dersin kelimeleri ve konuşma notları

Bu videoda gölgeleme çalışması için 68 cümle ve 1068 kelime var. Konuşma bölümü 6:53 sürüyor. Konuşmacı dakikada yaklaşık 155 kelimeyle, günlük konuşmaya yakın doğal bir hızda konuşuyor. Kelimelerin %82’i İngilizcede en sık kullanılan 3.000 kelime arasında; geri kalanına başlamadan önce bakmakta fayda var.

Bu videodaki önemli kelimeler

Videodan öğrenmeye değer 15 kelime, telaffuzu ve anlamıyla:

KelimeTelaffuzAnlam
rocket isim/ˈɹɑk.ɪt/roket, füze
gravity isim/ˈɡɹævɪti/ağırbaşlılık, ciddiyet
orbit isim/ˈɔɹ.bɪt/yörünge
complicated sıfat/ˈkɑm.plɪˌkeɪ.tɪd/karışık, komplike
convince fiil/kənˈvɪns/ikna etmek
ton isim/tʌn/ton
dust isim/dʌst/toz
trap isim/tɹæp/tuzak, kapan
prisoner isim/ˈpɹɪzənə/mahkum, mahpus
attraction isim/əˈtɹækʃn̩/çekim, atraksiyon
exhaust fiil/ɪɡˈzɔst/salmak, eritmek
stable isim/ˈsteɪ.bəl/ahır
trick isim/ˈtɹɪk/hile, numara
atmosphere isim/ˈætməsˌfɪɹ/atmosfer, havaküre
dragon isim/ˈdɹæɡən/ejderha, ejder

Dikkat edilecek telaffuzlar

Konuşmacı don't, you're, can't gibi kısaltılmış biçimleri 19 kez kullanıyor. Bunları duyduğunuz gibi kısa söyleyin.

  • “th” sesleri: beneath /bɪˈniːθ/, thrust /θɹʌst/
  • “sh” ve “zh” sesleri: attraction /əˈtɹækʃn̩/, equation /ɪˈkweɪ.ʒən/, gravitational /ˌɡɹævɪˈteɪʃənəl/
  • Uzun kelimeler — vurguyu doğru yere koyun: complicated /ˈkɑm.plɪˌkeɪ.tɪd/, phenomenon /fəˈnɒm.ɪ.nən/, atmospheric /ˌætməsˈfɛɹɪk/, radioactive /ˌɹeɪdioʊˈæktɪv/, energetic /ˌɛn.əɹˈdʒɛt.ɪk/

Bu videoyla nasıl çalışılır

  1. Videonun tamamını konuşmadan bir kez dinleyin ve bilmediğiniz kelimeleri not edin.
  2. 0,75× hızla başlayın, cümle cümle tekrar edin ve kolaylaşınca normal hıza dönün.
  3. Kendinizi kaydedin ve orijinaliyle karşılaştırın; rocket, gravity, orbit gibi kelimelere özellikle dikkat edin.

Bu videodaki dil bilgisi

Konuşmacının en çok kullandığı yapılar, videodaki sözcüklerin aynısıyla:

YapıVideoda
Edilgen yapı be + fiilin üçüncü hâli — kimin yaptığı değil, ne olduğu önemliis directed · is complicated · aren't built
İlgi cümlecikleri who / which + cümle — bir kişi ya da şey hakkında ek bilgiburn which is · energy which means

Gölgeleme Tekniği Nedir?

Gölgeleme, başlangıçta profesyonel tercüman eğitimi için geliştirilen ve çok dilli Dr. Alexander Arguelles tarafından popüler hale getirilen, bilim destekli bir dil öğrenme tekniğidir. Yöntem basit ama güçlüdür: ana dili İngilizce olan bir sesi dinler ve hemen yüksek sesle tekrar edersiniz — konuşmacıyı 1-2 saniye gecikmeyle takip eden bir gölge gibi. Pasif dinleme veya dilbilgisi alıştırmalarının aksine, gölgeleme beyninizi ve ağız kaslarınızı gerçek konuşma kalıplarını eşzamanlı olarak işlemeye ve yeniden üretmeye zorlar. Araştırmalar, telaffuz doğruluğu, tonlama, ritim, bağlı konuşma, dinleme anlama ve konuşma akıcılığını önemli ölçüde geliştirdiğini göstermektedir — bu da onu IELTS Konuşma hazırlığı ve gerçek dünya İngilizce iletişimi için en etkili yöntemlerden biri yapar.

Shadowing tekniği: adım adım eksiksiz rehberi okuyun →