ABOUT THE SPEAKER
Jon Bergmann - Educator
Jon Bergmann co-wrote the book on the "flipped classroom" -- using video to help students master new ideas outside the traditional class setting.

Why you should listen

Jon Bergmann is considered one of the pioneers in the Flipped Class Movement -- in fact, he co-wrote the book on the Flipped Classroom, available from ISTE Press in June 2012. Bergmann believes educators should ask one guiding question: What is best for my students in my classroom?  To the best of his abilities he has done this in his two-plus decades as a high school science teacher. He received the Presidential Award for Excellence for Math and Science Teaching in 2002 and was named Semi-Finalist for Colorado Teacher of the Year in 2010. He blogs at flipped-learning.com.

He is the Lead Technology Facilitator for the Joseph Sears School in Kenilworth, Illinois.

Read about the making of "How Small Is an Atom?" >>

More profile about the speaker
Jon Bergmann | Speaker | TED.com
TED-Ed

Jon Bergmann: Just how small is an atom?

Filmed:
5,793,993 views

Just how small are atoms? Really, really, really small. This fast-paced animation from TED-Ed uses metaphors (imagine a blueberry the size of a football stadium!) to give a visceral sense of just how small atoms are. Lesson by Jon Bergmann, animation by Cognitive Media.
- Educator
Jon Bergmann co-wrote the book on the "flipped classroom" -- using video to help students master new ideas outside the traditional class setting. Full bio

Double-click the English transcript below to play the video.

(音樂)
你大概已經知道萬物皆是由
00:26
You probably大概 already已經 know
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一種非常微小
稱之為原子的東西所組成
00:28
everything is made製作 up
of little tiny things called atoms原子
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你甚至可能知道原子還是由
更小的粒子所組成
00:30
or even that each atom原子
is made製作 up of even smaller particles粒子
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我們稱為質子、中子跟電子
00:33
called protons質子, neutrons中子 and electrons電子.
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且你大概都聽說過原子很小
00:35
And you've probably大概 heard聽說
that atoms原子 are small.
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但我猜你應該從未想過
原子究竟有多小
00:38
But I bet賭注 you haven't沒有 ever thought
about how small atoms原子 really are.
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嗯 答案是 非常 非常 非常小
00:42
Well, the answer回答 is
that they are really, really small.
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因此 你會想知道 究竟原子有多小?
00:46
So you ask, just how small are atoms原子?
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為了了解 先來研究這個問題
00:49
To understand理解 this,
let's ask this question:
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葡萄柚是由多少原子所組成?
00:53
How many許多 atoms原子 are in a grapefruit葡萄柚?
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嗯 假設葡萄柚是只由氮原子所組成
00:55
Well, let's assume承擔 that the grapefruit葡萄柚
is made製作 up of only nitrogen atoms原子,
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當然這不是事實
但確實葡萄柚裡有氮原子
00:59
which哪一個 isn't at all true真正, but there
are nitrogen atoms原子 in a grapefruit葡萄柚.
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當然 為了幫助你們想像
我們將原子放大
01:02
To help you visualize想像 this,
let's blow打擊 up each of the atoms原子
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到像藍莓一般大
01:05
to the size尺寸 of a blueberry藍莓.
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那此時 葡萄柚會變得多大呢?
01:07
And then how big
would the grapefruit葡萄柚 have to be?
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葡萄柚會變得...會跟地球一樣大
01:10
It would have to be the same相同 size尺寸 of
-- well, actually其實, the Earth地球.
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非常不可思議吧...意思是
若把藍莓集合成地球一樣大
01:14
That's crazy!
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01:16
You mean to say that if I filled填充
the Earth地球 with blueberries藍莓,
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就可以得知葡萄柚裡有多少氮原子
01:18
I would have the same相同 number
of nitrogen atoms原子 as a grapefruit葡萄柚?
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沒錯! 所以到底原子有多大?
01:21
That's right!
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01:23
So how big is the atom原子?
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原子是非常 非常 非常 非常小
01:25
Well, it's really, really small!
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而且你知道嘛?
01:28
And you know what?
It gets得到 even more crazy.
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更誇張的是
01:31
Let's now look inside of each atom原子
-- and thus從而 the blueberry藍莓, right? --
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讓我們來看看每個原子之中
也就是藍莓
你會看到些什麼?
01:34
What do you see there?
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在原子的中央
有個稱為原子核的東西
01:35
In the center中央 of the atom原子
is something called the nucleus,
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裡面包含了質子跟中子
01:38
which哪一個 contains包含 protons質子 and neutrons中子,
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而在其外你會看到電子
01:40
and on the outside, you'd see electrons電子.
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原子核多大呢?
01:42
So how big is the nucleus?
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如果原子像藍莓一般大
原子核相對會多大?
01:44
If atoms原子 are like blueberries藍莓
in the Earth地球,
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01:46
how big would the nucleus be?
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你可能還記得在理化課上的
舊原子圖片吧
01:48
You might威力 remember記得 the old pictures圖片
of the atom原子 from science科學 class,
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你看到的頁面上
用箭頭指著的那個小點
01:51
where you saw this tiny dot on the page
with an arrow箭頭 pointing指點 to the nucleus.
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嗯 那些圖片 其實並非照比例而畫
01:55
Well, those pictures圖片,
they're not drawn to scale規模,
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因此是錯誤的
01:57
so they're kind of wrong錯誤.
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所以 原子核究竟多大呢?
01:59
So how big is the nucleus?
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如果你切開那個和原子一樣大的藍莓
02:01
So if you popped膨化 open打開 the blueberry藍莓
and were searching搜索 for the nucleus ...
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然後尋找原子核
你知道 原子會是隱形的
02:06
You know what? It would be invisible無形.
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因為它太小以至於你無法看到
02:08
It's too small to see!
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因此 我們在將原子 也就是藍莓
02:10
OK. Let's blow打擊 up the atom原子 --
the blueberry藍莓 --
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放大到像房子一樣大
02:13
to the size尺寸 of a house.
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02:15
So imagine想像 a ball that is as tall
as a two-story二層 house.
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想像一下這個球跟
兩層樓的房子一樣高
然後再來尋找在原子中央的原子核
02:18
Let's look for the nucleus
in the center中央 of the atom原子.
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你知道嗎? 原子核還是幾乎不可見
02:21
And do you know what?
It would just barely僅僅 be visible可見.
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所以 為了知道到底原子核有多大
02:25
So to get our minds頭腦 wrapped包裹
around how big the nucleus is,
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我們必須把原子從藍莓的大小
放大到美式足球場一樣
02:27
we need to blow打擊 up the blueberry藍莓,
up to the size尺寸 of a football足球 stadium體育場.
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02:32
So imagine想像 a ball the size尺寸
of a football足球 stadium體育場,
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然後想像一顆美式足球場般大的球
02:35
and right smack拍擊 dab民建
in the center中央 of the atom原子,
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原子不偏不倚的中央一小點
02:38
you would find the nucleus,
and you could see it!
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你就會找到原子核
而且你可以看得到它
它就和一個彈珠的大小一樣
02:41
And it would be the size尺寸
of a small marble大理石.
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不僅僅如此 如果我還沒讓你驚訝的話
02:45
And there's more, if I haven't沒有
blown your mind心神 by now.
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我們來更詳盡的了解原子
它包含了質子 中子 跟電子
02:47
Let's consider考慮 the atom原子 some more.
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02:49
It contains包含 protons質子,
neutrons中子 and electrons電子.
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質子跟中子是在原子核之內
02:51
The protons質子 and neutrons中子
live生活 inside of the nucleus,
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且佔了原子大部分的重量
02:54
and contain包含 almost幾乎
all of the mass of the atom原子.
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而其邊緣上則為電子
02:56
Way on the edge邊緣 are the electrons電子.
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02:58
So if an atom原子 is like a ball
the size尺寸 of a football足球 stadium體育場,
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如果原子是一顆
跟美式足球場般大的球
03:01
with the nucleus in the center中央,
and the electrons電子 on the edge邊緣,
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原子在中央 電子在邊緣
那在原子核跟電子之間是什麼呢?
03:03
what is in between之間 the nucleus
and the electrons電子?
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相當令人驚訝地 答案是什麼都沒有
03:07
Surprisingly出奇, the answer回答 is empty space空間.
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(風聲)
03:10
(Wind noise噪聲)
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沒錯 什麼都沒有 空的
03:13
That's right. Empty!
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03:15
Between之間 the nucleus and the electrons電子,
there are vast廣大 regions地區 of empty space空間.
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在原子核跟電子之間
有著相當廣大的空間
嚴格來說 那裡存在著電磁場
03:19
Now, technically技術上 there are
some electromagnetic電磁 fields領域,
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但就本質而言 那裡是空的
03:21
but in terms條款 of stuff東東,
matter, it is empty.
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記得這個一大片的空間
03:24
Remember記得 this vast廣大 region地區 of empty space空間
is inside the blueberry藍莓,
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是位於跟和組成地球的
藍莓一樣大的原子之中
03:28
which哪一個 is inside the Earth地球,
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組成地球的藍莓
就好比是葡萄柚裡的原子
03:30
which哪一個 really are the atoms原子
in the grapefruit葡萄柚.
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另外還有一件事 是更難以想像的
03:32
OK, one more thing,
if I can even get more bizarre奇異的.
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既然事實是原子的全部重量
是集中於原子核中
03:36
Since以來 virtually實質上 all the mass
of an atom原子 is in the nucleus --
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嗯 當然電子當然還是
佔有一部分的重量
03:40
now, there is some amount
of mass in the electrons電子,
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但是大部分是集中於原子核上
03:43
but most of it is in the nucleus --
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那麼原子核的密度有多大呢?
03:45
how dense稠密 is the nucleus?
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答案是相當驚人的
03:46
Well, the answer回答 is crazy.
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一般而言原子核的密度是
03:48
The density密度 of a typical典型 nucleus
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每立方公尺重達4乘10的17次方公斤
03:50
is four times 10 to the 17th
kilograms公斤 per meter儀表 cubed立方.
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但數字是難以想像的
讓我來用英制表示
03:54
But that's hard to visualize想像.
OK, I'll put it in English英語 units單位.
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每立方英吋重達
03:57
2.5 times 10 to the 16th pounds英鎊
per cubic立方體 feet.
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2.5乘10的16次方磅
當然 這仍然是難以理解的
04:02
OK, that's still kind of hard to figure數字.
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不如我告訴你怎麼做
04:04
OK, here's這裡的 what I want you to do.
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做一個各邊都是1英呎的盒子
04:06
Make a box that is one foot腳丫子
by one foot腳丫子 by one foot腳丫子.
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然後集合相當於
一台普通車子的所有原子
04:10
Now let's go and grab
all of the nuclei原子核 from a typical典型 car汽車.
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車子一般而言重約兩噸
04:14
Now, cars汽車 on average平均 weigh稱重 two tons.
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要在盒子裡放入多少輛車子的原子
04:16
How many許多 cars'汽車' nuclei原子核 would you
have to put into the box
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才能讓這每邊為1英呎盒子的
密度等同於原子核呢?
04:20
to have your one-foot-box單腳盒 have
the same相同 density密度 of the nucleus?
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一輛 兩輛 還是100輛
04:23
Is it one car汽車? Two?
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04:24
How about 100?
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以上皆非
04:26
Nope, nope and nope.
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答案是不只如此
04:28
The answer回答 is much bigger.
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是62億
04:30
It is 6.2 billion十億.
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那是相當於地球上的所有人口
04:34
That is almost幾乎 equal等於 to the number
of people in the Earth地球.
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假設地球上每個人都擁有一部車
04:37
So if everyone大家 in the Earth地球
owned擁有的 their own擁有 car汽車 --
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當然並非如此
04:39
and they don't --
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04:40
(Cars汽車 honking鳴喇叭)
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我們將所有的車子放到你的箱子裡
04:42
and we put all of those
cars汽車 into your box ...
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那就是原子核的密度
04:46
That would be about
the density密度 of a nucleus.
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我的意思是 如果你將地球上
所有的車子放進每邊一英呎的盒子裡
04:49
So I'm saying that if you took
every一切 car汽車 in the world世界
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04:52
and put it into your one-foot單腳 box,
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那就是一個原子核的密度
04:54
you would have the density密度 of one nucleus.
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好了 讓我們來複習一下
04:57
OK, let's review評論.
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原子是非常 非常 非常小
04:58
The atom原子 is really,
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04:59
really, really small.
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葡萄柚裡的一粒原子
就好比地球上的一顆藍莓
05:02
Think atoms原子 in a grapefruit葡萄柚
like blueberries藍莓 in the Earth地球.
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原子核是超級小
05:06
The nucleus is crazy small.
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把藍莓放大到足球場一般大
05:09
Now look inside the blueberry藍莓,
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05:10
and blow打擊 it up to the size尺寸
of a football足球 stadium體育場,
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原子核就是在藍莓中央的一顆彈珠
05:13
and now the nucleus
is a marble大理石 in the middle中間.
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原子的組成是一大片的空間
05:16
The atom原子 is made製作 up
of vast廣大 regions地區 of empty space空間.
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這是非常詭異的
05:20
That's weird奇怪的.
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原子核的密度是極度大
05:21
The nucleus has a crazy-high瘋狂-高 density密度.
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就好比將地球上所有的車放進
每邊為1英呎的盒子中
05:23
Think of putting all those cars汽車
in your one-foot單腳 box.
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我想我累了
05:27
I think I'm tired.
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(打呵欠)
Translated by Cheng An Yang
Reviewed by Yuen Lam Tsang

▲Back to top

ABOUT THE SPEAKER
Jon Bergmann - Educator
Jon Bergmann co-wrote the book on the "flipped classroom" -- using video to help students master new ideas outside the traditional class setting.

Why you should listen

Jon Bergmann is considered one of the pioneers in the Flipped Class Movement -- in fact, he co-wrote the book on the Flipped Classroom, available from ISTE Press in June 2012. Bergmann believes educators should ask one guiding question: What is best for my students in my classroom?  To the best of his abilities he has done this in his two-plus decades as a high school science teacher. He received the Presidential Award for Excellence for Math and Science Teaching in 2002 and was named Semi-Finalist for Colorado Teacher of the Year in 2010. He blogs at flipped-learning.com.

He is the Lead Technology Facilitator for the Joseph Sears School in Kenilworth, Illinois.

Read about the making of "How Small Is an Atom?" >>

More profile about the speaker
Jon Bergmann | Speaker | TED.com