Showing posts with label technology. Show all posts
Showing posts with label technology. Show all posts

Thursday, April 2

Why 'secular stagnation' matters

Kannu

A fascinating debate has been running over the past 3 days. Read this little article to get a summary. 

I've got another point here. People aren't including the impact of technology and automation. More technology and automation and more the economic activity goes outsides the purview of economic levers. 

Secondly, why isn't there any mention of productivity? After all, if you can improve productivity by doing more investments and education, then secular stagnation can be addressed. 

Anyway. Fascinating minds at work son. Hugely influential and amazing debate. Reminds me of the time I read the proceedings of the Bretton Woods agreement. Keynes was the guru then. 

Love

Baba

I saw this on the BBC News App and thought you should see it:
Why 'secular stagnation' matters

A debate between three major economists highlights a key macroeconomic issue.

Monday, March 23

Does giving a laptop to a child help?

Well, unfortunately to the aficionados of giving laptops and ipads to kids, it doesn't seem to make a whit of difference as all the kids did was to use it to search for information on the internet. No change to the mathematics skills or on the reading levels. Go figure. When will people go back to basics, hire the best teachers possible, remunerate them on performance, support them well, bring in parents into the education process and make it fun to teach. All this poking around with technology detracts from the basics. Read and weep, think about the sheer amount of resources wasted on this boondongle.

We present evidence on the impact on students´ math and reading scores of one of the largest deployments of an OLPC program and the only one implemented at a national scale: Plan Ceibal in Uruguay. We have unique data that allow us to know the exact date of laptop delivery for every student in the sample. This gives us the ability to use days of exposure as a treatment intensity measure. Given that there is some variation in the date of laptop delivery across individuals within the same school, we can identify the effect of the program net of potential heterogeneity in the rate schools gain improvements on students´ achievement over time independently of the OLPC program. Our results suggest that in the first two years of its implementation the program had no effects on math and reading scores. The absence of effect could be explained by the fact that the program did not involve compulsory teacher training and that laptops in class were mainly used to search for information on the internet.

Tuesday, January 20

Facebook, One Year Later: What Really Happened in the Biggest IPO Flop Ever

Kannu

Couple of things to note here. Ipo's are strange times to buy and sell. The presence of big beasts can influence unknown stock movements. And for small investors like us, it can be too high. Never run with the herd son. One of the reasons why I've cashed out now. It's irrational exuberance all over. Think about it. All analysts are predicting a max 1% economic growth. Europe is negative. USA is 1% tops. Just how does that justify 6-10% stock market rises? 

Be that as it may, second lesson is to be wary of investing in places where you aren't comfortable. I rarely invest in tech stocks. Far too nebulous an investment. Never invest in anything that you don't understand or are unable to explain to a 10 year old. 

Love

Baba. 

Facebook, One Year Later: What Really Happened in the Biggest IPO Flop Ever - Khadeeja Safdar - The Atlantic
http://www.theatlantic.com/business/archive/2013/05/facebook-one-year-later-what-really-happened-in-the-biggest-ipo-flop-ever/275987/


Continue to the TheAtlantic.com

Advertisement

After Facebook’s disastrous debut, the preferred clients of big banks walked away with huge profits. How? Public documents and interviews with dozens of investment bankers and research analysts reveal that the Street caught wind of something the public didn’t. The social network and the banks told half the story. Here is the other half.

Khadeeja Safdar May 20 2013, 9:43 AM ET

800 facebook 2.jpg

Reuters

Uma Swaminathan tuned the television set in the living room of her ranch style home in the suburbs of East Brunswick, N.J. to CNBC. It was 9:00 a.m. on May 18, 2012, a day the retired schoolteacher thought might make her rich. She logged onto her Vanguard brokerage account on her computer and placed an order for 5,000 shares of Facebook at $42 a share.

Tuesday, October 14

Elevator accident

Well, i always thought that the best way to survive an elevator accident which is in free fall is to just pray. Well, more importantly, to jump just before it crashes. it was an idle thought, of course you cannot really figure out when exactly to jump as you don't have any external references and you will end up into a little paste. So this article tells you what to do, the answer is “lay down flat with your back to the ground”to spread the impact.

Wednesday, September 24

Science Is Not Your Enemy

Kannu

This is a fascinating article on how science is perceived by many specially the religious sort. 

I do think that the author protests too much as broadly in developed countries and many other countries who aren't, science has won. If you want proof, compare the various human development indices and whether their constitutions have something religious in them. If they do like Nepal did, Poland and Saudi Arabia do, you know immediately that that is a place to be laughed at. Or pitied. Anybody who believes without evidence should be mocked hard and frequently because their beliefs can also be dismissed without evidence. 

Anyhow. Interesting reading also from an English logographic perspective son. Many words are technical. Pretty heavy duty writing. Test your understanding of the words. Also check your power of concentration. When faced with heavy writing, the tendency is to skip. But that's the key to mental discipline son. Force yourself to read and comprehend. It trains your mind to overcome higher and higher barriers. And then think, have I understood this good enough to make Diya understand? 

Love

Baba

Science Is Not Your Enemy
http://www.newrepublic.com/article/114127/science-not-enemy-humanities


 

Science Is Not Your Enemy An impassioned plea to neglected novelists, embattled professors, and tenure-less historians

BY STEVEN PINKER

The great thinkers of the Age of Reason and the Enlightenment were scientists. Not only did many of them contribute to mathematics, physics, and physiology, but all of them were avid theorists in the sciences of human nature. They were cognitive neuroscientists, who tried to explain thought and emotion in terms of physical mechanisms of the nervous system. They were evolutionary psychologists, who speculated on life in a state of nature and on animal instincts that are “infused into our bosoms.” And they were social psychologists, who wrote of the moral sentiments that draw us together, the selfish passions that inflame us, and the foibles of shortsightedness that frustrate our best-laid plans.

These thinkers—Descartes, Spinoza, Hobbes, Locke, Hume, Rousseau, Leibniz, Kant, Smith—are all the more remarkable for having crafted their ideas in the absence of formal theory and empirical data. The mathematical theories of information, computation, and games had yet to be invented. The words “neuron,” “hormone,” and “gene” meant nothing to them. When reading these thinkers, I often long to travel back in time and offer them some bit of twenty-first-century freshman science that would fill a gap in their arguments or guide them around a stumbling block. What would these Fausts have given for such knowledge? What could they have done with it?

WATCH: Leon Wieseltier’s rejoinder: Science doesn’t have all the answers

We don’t have to fantasize about this scenario, because we are living it. We have the works of the great thinkers and their heirs, and we have scientific knowledge they could not have dreamed of. This is an extraordinary time for the understanding of the human condition. Intellectual problems from antiquity are being illuminated by insights from the sciences of mind, brain, genes, and evolution. Powerful tools have been developed to explore them, from genetically engineered neurons that can be controlled with pinpoints of light to the mining of “big data” as a means of understanding how ideas propagate.

Tuesday, March 4

The problem with high frequency trading

I was working in Solomon brothers son when I first came across algorithmic trading. This is around 2000. You were 5 years of age then. We launched 4 of these models and the limit was 50000$ per day. 3 would propose trades and one would decide and then launch the winning trade. 

Life has moved on hugely since then son. It's become something like skynet from the terminator days lol. The equity markets are really strange. There is no money to be made. Take a look at the major players, hardly anybody on the sell side makes any money because there's no margin. Spreads are so tight. And therefore it's difficult. Good for retail investors like you and I but for the big boys it's getting stupid. The buy side, the asset managers and fund managers, who buy and hold for longer periods are still around and will be so as well but it's going to be a difficult time for equities son. So do think again about your career option of being a stockbroker. Not enough money. 

Be somewhere where technology supports you. Like you come up with new complex instruments and strategies while technology helps. Or go into the advisory business where you need to take nonlinear decisions. Combine your mathematics knowledge with knowledge of technology, philosophy, politics, economics and something that you will pick up later on - psychology. That's what's will help pay huge dividends son. 

Love

Baba

The problem with high frequency trading | Felix Salmon
http://blogs.reuters.com/felix-salmon/2012/10/06/the-problem-with-high-frequency-trading/


Last night, on BBC Radio 3, I was featured reading an essay about high frequency trading. I hope it’s fun to listen to, but if you want to read it, here you go.

One of the many consequences of global warming is that it’s now, for the first time, possible to drill under the sea bed of the Arctic ocean. The oil companies are all there, of course, running geological tests and bickering with each other about the potential environmental consequences of an oil spill. But they’re not the only people drilling. Because there’s something even more valuable than oil just waiting to be found under the Arctic.

What is worth so much money that three different consortiums would spend billions of pounds to retrofit icebreakers and send them into some of the coldest and most dangerous waters in the world? The answer, of course, is information.

A couple of days ago, I called a friend in Tokyo, and we had a lovely chat. If he puts something up on Twitter, I can see it immediately. And on the web there are thousands of webcams showing me what’s going on in Japan this very second. It doesn’t look like there’s any great information bottleneck there: anything important which happens in Japan can be, and is, transmitted to the rest of the world in a fraction of a second.

But if you’re a City trader, a fraction of a second is a veritable eternity. Let’s say you want to know the price of a stock on the Tokyo Stock exchange, or the exact number of yen being traded for one dollar. Just like the light from the sun is eight minutes old by the time it reaches us, all that financial information is about 188 milliseconds old by the time it reaches London. That’s zero point one eight eight seconds. And it takes that much time because it has to travel on fiber-optic cables which take a long and circuitous route: they either have to cross the Atlantic, and then the US, and then the Pacific, or else they have to go across Europe, through the Middle East, across the Indian Ocean, and then up through the South China Sea between China and the Philippines.

But! If you can lay an undersea cable across the Arctic, you can save yourself about 5,000 miles, not to mention the risk of routing your information past a lot of political flash points. And when you’re sitting in your office in London and you get that dollar/yen exchange rate from Tokyo, it’s fresh from the oven, comparatively speaking: only 0.168 seconds old. If everybody else is using the old cables and you’re using the new ones, then you have somewhere between 20 milliseconds and 60 milliseconds when you know something they don’t.

Tuesday, February 4

Afghanistan-when-the-moon-sets-watch-out

Here's a question which you may want to ponder son. Why haven't we won? In Afghanistan? We have everything no? Money, materials, technology, intelligence, and And and. 

How have a bunch of low intensity low tech people managed to defeat at worst and keep at bay at best the best equipped militaries in the world? 

This has happened before most famously in Vietnam where they defeated not one but two armies from France and USA. 

Not easy to define or explain. The Taliban learn. We don't is one good reason. We get too comfortable son. Rely on technology and think that will protect and allow us to win. Wrong. 

Being paranoid helps. Always learning helps. Others aren't stupid. They are learning. And as this example shows, you pay for it with blood. 

The moon and cheap cameras defeated the Americans and Brits in this battle. 

Love

Baba

afghanistan-when-the-moon-sets-watch-out
http://www.michaelyon-online.com/afghanistan-when-the-moon-sets-watch-out.htm


18 September 2012

img001-1000

Last Friday night, the moon phase left Afghanistan in near total darkness.  Even with clear skies, the enemy knew that at the brightest moment, the moon would only appear as an irrelevant orange sliver.  Such times are called “red illumination,” or “red illum.”  Planning calendars in Afghanistan highlight periods of red illum because they hamper aviation.

Even though this is the year 2012, and the Curiosity Rover is beaming images from Mars more than four decades after astronauts first trod on the lunar surface, the moon phase remains important when planning operations.  The moment that the nighttime attack on Camp Bastion was reported, the moon phase could have been safely guessed without looking up.

Monday, July 29

The best graph in the world

Minard[1]

That graph, son, is one of the greatest pieces of graphic design or brevity known to man. In a 2d imagery, Charles Joseph Minard has managed to cram in so much information that its ridiculously brilliant.

One of my problems is how can I get my salespeople to absorb a giant amount of information in a very limited time and actually do something about it which will help my clients and compete against other salespeople. It's a constant battle against suppliers who think that more is good versus sales people who are constitutionally unable to absorb any more than 3 things at one time. Which is good, I want them to sell, not spend time on data.

Fascinating, I am spending quite a lot of time thinking about data visualisation these days..

Love

Baba

Monday, March 4

Where's _why?" by Annie Lowrey

Dear kannu

Quite an interesting story about a learner hacker, the history of a programming language and a programmer. 

It's fascinating. Programming. You did a little bit didn't you? When I your age, I was heavy into programming and stuff. Plus had my computer science friends to help as well. And was teaching this stuff. Heady days. So much ignorance and so much confidence. 

I loved programming. Seriously loved it. Kept on doing it seriously till You were born and then did a bit more in my first job and then didn't really do much in anger till I pottered around a bit in the next phd. 

It's a fun time. You are basically communicating. That's the trick which gk (my old friend from bhopal) who taught me. It's the language which we speak to the computer. I used to think of it as sculpture. A more forgiving type of sculpture. 

It was good. I still remember that late December night in 1995 when my programme ran and the model worked beautifully for the phd in Manchester. I shouted out in triumph. Success. Nailed the sucker in 4 months. Then basically bummed around for another 2.5 years waiting to collect the piece of paper :)

Ok. Enough nattering on. You have fun son, and read about these programming people. You will be using their products. You will be working with them. You will be investing in them directly or indirectly. You may even get attacked by these people! 

Love

Baba

"Where's _why?" by Annie Lowrey [Send Me a Story]


On the mysterious disappearance of a beloved coding legend (and his code) with stops along the way for a short history of programming languages, an ethnography of code-based communities, and an inquiry into what it means to “die young without artifact.”
Where’s _why?
On the mysterious disappearance of a beloved coding legend (and his code) with stops along the way for a short history of programming languages, an ethnography of code-based communities, and an inquiry into what it means to “die young without artifact.”
Annie Lowrey | Slate | Mar 2012

In March 2009, Golan Levin, the director of Carnegie Mellon University’s interdisciplinary STUDIO for Creative Inquiry, invited an enigmatic and famed computer programmer known to the virtual world only as “Why the Lucky Stiff” or “_why”—no, not a typo—to speak at a CMU conference called Art && Code—also not a typo—an event where artsy nerds and nerdy artists gather to talk shop.

_why came to Pittsburgh and presented his latest project to a room full of a student programmers and artists. He was scruffily handsome, seemingly in his early- to mid-30s, with shaggy brown hair falling in his eyes and a constant half-smile. He looked like a member of an indie band—he actually was in an indie band—or the leader of an experimental improv troupe.

At this symposium, he wore a pair of oversize sunglasses and a tidy sports coat with a red pocket square, a silly riff on a stuffy professor’s outfit. He introduced himself as a “freelance professor.” “I don’t know exactly why I was invited here today. I’m not associated with anything of repute,” he admitted to giggles from the packed crowd.

He riffed on his nom d’Internet, Why the Lucky Stiff: “Some people want to call me Mr. Why. My nametag was filed under ‘L.’ The thing is, it’s just a middle name. There’s no first or last. It’s just one middle name. That’s just the nature of it,” he said.

Then he introduced his new product, a free interactive application called Hackety Hack, which he had built from scratch to solve a problem he called the “Little Coders Predicament” in a 2003 manifesto.

The Little Coder’s Predicament arises from the following problem: We live in world of astonishingly advanced technologies, easy to use and all around us. Your grandmother has a smartphone. Your 2-year-old can play with an iPad. But the technology behind such marvels is complex and invisible, abstracted away from the human controlling it. Nor do these technologies offer us many ready chances to do basic programming on them. For nearly all of us, code, the language that controls these objects and in a way controls our world, is mysterious and indecipherable.

Back in the old days, you could hack your Commodore 64 without too much trouble. But just try to get a sense of the millions of lines of code controlling a Windows computer, or the Google search engine, or your Android or iPhone. For starters, the user interface and legally enforced sanctity of the code will prevent you from even seeing it. And even if you managed to take a look, the code would be so complex you would struggle to understand it, let alone manipulate it.

For that reason, _why explained in the “Little Coder’s Predicament”—and over and over again at conferences and panels—too few people were learning to code. The learning curve was too steep. There needed to be a simple, fun, awesome way to draw people in.

“We need some instant results to give absolute beginners confidence. Simple methods for sending an email, reading a Web page, playing music,” he wrote. Moreover, novice programmers—especially kids—needed that ecstatic moment where they understand that they are controlling the computer, that programming ensures that the computer answers to them.

That’s what Hackety Hack did.

Thursday, October 11

My Summer at an Indian Call Center

Son

This is an interesting read of how call centres work in India. I have personally have experience of setting these up in a variety of countries such as USA, Canada, uk, Poland, Egypt, Malaysia, India, Sri Lanka, Philippines etc etc. this behaviour that the author describes is quite common across the world. It's not just in India. 

The kids who get here and work are starting their careers. And they have an hunger, son, which is sort of humbling to see. The job is sort of thankless, to sort out your phone issues, to sell you insurance or time share holidays or or or. But these things keep on happening. 

With the increase in globalisation and connectivity, we don't see the man who is delivering our services and that is a bit of a shame as we lose touch with an important part of the value chain. But as a person interested in economics and management, remember that these people are the face of the companies to our customers. Never forget them and pay extra special attention to them, they are very very important. 

Love

Baba

My Summer at an Indian Call Center
http://m.motherjones.com/politics/2011/05/indian-call-center-americanization


Mother Jones

My Summer at an Indian Call Center

Lessons learned: Americans are hotheads, Australians are drunks—and never say where you’re calling from. Read the story everyone’s talking about.

By Andrew Marantz on Tue. July 5, 2011 2:00 AM PDT

“We were asked to hate everything Indian,” said 26-year-old Arnab (shown in his Delhi flat). Photographs: Sanjit Das/Panos

I stand flush against the window of a Toyota showroom, trying to stay in a shrinking sliver of shade. We’re on the cusp of midday, which, in Delhi in June, lasts most of the day and drives everyone into a languid torpor. I am waiting for a company cab, now an hour and a half late, to drive me across town to a call center, where an Indian “culture trainer” will teach me how to act Australian.

A uniformed guard next to me dozes on a stool, his rifle slumped in his lap. Behind the showroom window, which would be clear if two boys would stop rubbing it down with rags, a dozen red sedans glisten on a waxy white floor. On the dirt shoulder of the road, children hold hands as they walk to school.

Call centers don’t trust Indian infrastructure, as well they shouldn’t, so the company cab—typically a white Toyota Qualis—has become a standard industry perk. This morning a class of 24 new hires, myself included, will be ferried from all corners of the city to the offices of a small firm named Delhi Call Centre. For three weeks, a culture trainer will teach us conversational skills, Australian pop culture, and the terms of the mobile-phone contracts we’ll be peddling. Those of us who pass the training course will graduate to the calling floor. Our first job at DCC will be to interrupt Australians at dinner and ask them to switch phone providers. In the Delhi area alone, maybe 100,000 call-center agents make their living selling vitamins to Britons or helping Americans troubleshoot their printers. I am almost certainly the only one who acquired his conversational skills accidentally—by being born in the United States.

My phone vibrates. By the time I get it to my ear, a husky male voice is shouting in Hinglish, a rapid-fire blend of Hindi and English. “Meet at Toyota showroom!” I shout back.

“Fine sir, 20 minutes,” he replies.

I know “20 minutes” is a Hinglish phrase meaning “30 minutes,” so I call back after 40. A woman answers this time. “No problem, sir,” she says, “20 minutes only.” A sweat-and-sunblock solution drips down my forehead and stings my eyes. Behind me, the boys continue toweling the glass. The streaks they create blur into the streaks they wipe away.

Friday, October 5

My wife hates the other woman in the car

When I moved up to using the Wayz app on the Iphone to navigate, we had a long discussion on which name to call her. Her meaning the lady in the app who tells me where to do. I wanted to call her Wendy. Wendy Wayz, geddit? there was a big debate. I love the lady, she is good, tells me the route without complaining or moaning. When I make a mistake, it doesnt go tut tut tut and drag my ancestors into the argument, etc. etc.

But I didnt realise that women hate the other woman till I read this story. Quite a lot of similarities. Sangeeta doesnt drive, she is a writer, she likes english literature, and and and.

Friday, September 14

Artificial intelligence: Difference Engine: Luddite legacy

An interesting article son. Something that you need to read carefully about your career prospects. Keep on thinking if you skills and abilities can be replaced by a computer. Do and pick a career which requires things which a computer cannot do. Manage ambiguity. Need imagination. Think differently. Sales. Change management. Inventing new things. 

Love 

Baba

Artificial intelligence: Difference Engine: Luddite legacy | The Economist
http://www.economist.com/blogs/babbage/2011/11/artificial-intelligence?fsrc=scn/tw/te/bl/ludditelegacy


AN APOCRYPHAL tale is told about Henry Ford II showing Walter Reuther, the veteran leader of the United Automobile Workers, around a newly automated car plant. “Walter, how are you going to get those robots to pay your union dues,” gibed the boss of Ford Motor Company. Without skipping a beat, Reuther replied, “Henry, how are you going to get them to buy your cars?”Whether the exchange was true or not is irrelevant. The point was that any increase in productivity required a corresponding increase in the number of consumers capable of buying the product. The original Henry Ford, committed to raising productivity and lowering prices remorselessly, appreciated this profoundly—and insisted on paying his workers twice the going rate, so they could afford to buy his cars.
For the company, there was an added bonus. By offering an unprecedented $5 a day in 1914, he caused the best tool-makers and machinists in America to flock to Ford. The know-how they brought boosted production efficiency still further and made Ford cars ever more affordable. With its ingenious Model T, Ford became the first car company in the world to bring motoring to the masses.

Economists see this as a classic example of how advancing technology, in the form of automation and innovation, increases productivity. This, in turn, causes prices to fall, demand to rise, more workers to be hired, and the economy to grow. Such thinking has been one of the tenets of economics since the early 1800s, when hosiery and lace-makers in Nottingham—inspired by Ned Ludd, a legendary hero of the English proletariat—smashed the mechanical knitting looms being introduced at the time for fear of losing their jobs.

Monday, April 23

The flowing view of USA

This was one of the most spectacular data representations that I have seen. What it shows is now wind flows over the USA.

You can see the interactive map here. Go on, click on it. Doesn't it look like Lady America’s hair waving? Beautiful.

How to represent data is one of my jobs. For example, what I am trying to do over the past 3 years is to improve sales. When you are talking about the firm the size of ours, the sheer quantity of data is mind boggling. Putting things into context, my firm has a balance sheet which is about 4% of the world GDP. Think about the sheer number of transactions that flow through. And I have to ensure that we get sufficient data to my sales chaps so that they can keep track of what has happened, what is coming down the pipe that they know about and what might come down the future pipe. All this in 80 countries, multiple currencies, multiple products, thousands of sales chaps.

So think about it, I need to get the senior chaps around a table to manage. Its very easy to get bogged down by just looking at the history. Its safe, its blunt, nobody questions it. But that’s not what I am paid for. I am paid for how well I navigate the future, what’s coming down. Its like a gunnery officer on a battleship who is trying to hit another battleship. I might have the best possible telescope which tells me where the enemy battleship is right now. What I want to know is where it will be in 2 minutes. It will take me that long to prepare my gun and fire it, the shell to go across the water and then hit it. Where it is right now is just one data point. I need to know how fast is it going, is it turning, how is the air temperature, the humidity, the aspect ratio, a zillion other factors.

Its the same with these big firms. I cannot manage looking historically, I need to use the data to try to predict where the customer will be in “x” days so that I can modify my sales, product, customer services, etc. etc. And when you have big data of this shape, size and volume, data representation is absolutely crucial. Human beings cannot absorb too much data. Throw too much data at them and they shut down or ignore it. So you have to be careful about what you pitch. Its a fascinating area of research. Then again, this poster says it all about me trying to forecast. lol

Also see this link on big data. Another view of the same problem, tick by tick data is another big ocean to swim in. Almost 12 years back, we used to use these chaps. The amount of data that we had to manage while I was on the trading floor and try to make sense of it was ferociously big. Hairy stuff.

Wednesday, March 28

Frighteningly Ambitious Startup Ideas

Dear Son
remember what I told you last week? You have to be ambitious, dream huge huge dreams, son. Open your mind and let your dreams soar. You wanted to run a business, here are some examples of where soaring ambition can help you. I know you dont want to do software and find that boring, but that's not the point, this is an example of what you can think of, son. Pretty big big ideas, eh? Have the imagination, confidence and arrogance to think that you can achieve the impossible and change the world. Also, girls love a big ideas and thinker. Go do it.
Remember this during the interview this week, dont be a bottom dweller who simply fishes in the mud. Be an eagle, soaring up in the skies, son, head and shoulders above rest of the lot. Aim very high.
Love you
Baba


http://paulgraham.com/ambitious.html
Frighteningly Ambitious Startup Ideas
March 2012
One of the more surprising things I've noticed while working on Y Combinator is how frightening the most ambitious startup ideas are. In this essay I'm going to demonstrate this phenomenon by describing some. Any one of them could make you a billionaire. That might sound like an attractive prospect, and yet when I describe these ideas you may notice you find yourself shrinking away from them.
Don't worry, it's not a sign of weakness. Arguably it's a sign of sanity. The biggest startup ideas are terrifying. And not just because they'd be a lot of work. The biggest ideas seem to threaten your identity: you wonder if you'd have enough ambition to carry them through.
There's a scene in Being John Malkovich where the nerdy hero encounters a very attractive, sophisticated woman. She says to him:
Here's the thing: If you ever got me, you wouldn't have a clue what to do with me.
That's what these ideas say to us.
This phenomenon is one of the most important things you can understand about startups. [1] You'd expect big startup ideas to be attractive, but actually they tend to repel you. And that has a bunch of consequences. It means these ideas are invisible to most people who try to think of startup ideas, because their subconscious filters them out. Even the most ambitious people are probably best off approaching them obliquely.
1. A New Search Engine
The best ideas are just on the right side of impossible. I don't know if this one is possible, but there are signs it might be. Making a new search engine means competing with Google, and recently I've noticed some cracks in their fortress.
The point when it became clear to me that Microsoft had lost their way was when they decided to get into the search business. That was not a natural move for Microsoft. They did it because they were afraid of Google, and Google was in the search business. But this meant (a) Google was now setting Microsoft's agenda, and (b) Microsoft's agenda consisted of stuff they weren't good at.
Microsoft : Google :: Google : Facebook.
That does not by itself mean there's room for a new search engine, but lately when using Google search I've found myself nostalgic for the old days, when Google was true to its own slightly aspy self. Google used to give me a page of the right answers, fast, with no clutter. Now the results seem inspired by the Scientologist principle that what's true is what's true for you. And the pages don't have the clean, sparse feel they used to. Google search results used to look like the output of a Unix utility. Now if I accidentally put the cursor in the wrong place, anything might happen.
The way to win here is to build the search engine all the hackers use. A search engine whose users consisted of the top 10,000 hackers and no one else would be in a very powerful position despite its small size, just as Google was when it was that search engine. And for the first time in over a decade the idea of switching seems thinkable to me.
Since anyone capable of starting this company is one of those 10,000 hackers, the route is at least straightforward: make the search engine you yourself want. Feel free to make it excessively hackerish. Make it really good for code search, for example. Would you like search queries to be Turing complete? Anything that gets you those 10,000 users is ipso facto good.
Don't worry if something you want to do will constrain you in the long term, because if you don't get that initial core of users, there won't be a long term. If you can just build something that you and your friends genuinely prefer to Google, you're already about 10% of the way to an IPO, just as Facebook was (though they probably didn't realize it) when they got all the Harvard undergrads.
2. Replace Email
Email was not designed to be used the way we use it now. Email is not a messaging protocol. It's a todo list. Or rather, my inbox is a todo list, and email is the way things get onto it. But it is a disastrously bad todo list.
I'm open to different types of solutions to this problem, but I suspect that tweaking the inbox is not enough, and that email has to be replaced with a new protocol. This new protocol should be a todo list protocol, not a messaging protocol, although there is a degenerate case where what someone wants you to do is: read the following text.
As a todo list protocol, the new protocol should give more power to the recipient than email does. I want there to be more restrictions on what someone can put on my todo list. And when someone can put something on my todo list, I want them to tell me more about what they want from me. Do they want me to do something beyond just reading some text? How important is it? (There obviously has to be some mechanism to prevent people from saying everything is important.) When does it have to be done?
This is one of those ideas that's like an irresistible force meeting an immovable object. On one hand, entrenched protocols are impossible to replace. On the other, it seems unlikely that people in 100 years will still be living in the same email hell we do now. And if email is going to get replaced eventually, why not now?
If you do it right, you may be able to avoid the usual chicken and egg problem new protocols face, because some of the most powerful people in the world will be among the first to switch to it. They're all at the mercy of email too.
Whatever you build, make it fast. GMail has become painfully slow. [2] If you made something no better than GMail, but fast, that alone would let you start to pull users away from GMail.
GMail is slow because Google can't afford to spend a lot on it. But people will pay for this. I'd have no problem paying $50 a month. Considering how much time I spend in email, it's kind of scary to think how much I'd be justified in paying. At least $1000 a month. If I spend several hours a day reading and writing email, that would be a cheap way to make my life better.
3. Replace Universities
People are all over this idea lately, and I think they're onto something. I'm reluctant to suggest that an institution that's been around for a millennium is finished just because of some mistakes they made in the last few decades, but certainly in the last few decades US universities seem to have been headed down the wrong path. One could do a lot better for a lot less money.
I don't think universities will disappear. They won't be replaced wholesale. They'll just lose the de facto monopoly on certain types of learning that they once had. There will be many different ways to learn different things, and some may look quite different from universities. Y Combinator itself is arguably one of them.
Learning is such a big problem that changing the way people do it will have a wave of secondary effects. For example, the name of the university one went to is treated by a lot of people (correctly or not) as a credential in its own right. If learning breaks up into many little pieces, credentialling may separate from it. There may even need to be replacements for campus social life (and oddly enough, YC even has aspects of that).
You could replace high schools too, but there you face bureaucratic obstacles that would slow down a startup. Universities seem the place to start.
4. Internet Drama
Hollywood has been slow to embrace the Internet. That was a mistake, because I think we can now call a winner in the race between delivery mechanisms, and it is the Internet, not cable.
A lot of the reason is the horribleness of cable clients, also known as TVs. Our family didn't wait for Apple TV. We hated our last TV so much that a few months ago we replaced it with an iMac bolted to the wall. It's a little inconvenient to control it with a wireless mouse, but the overall experience is much better than the nightmare UI we had to deal with before.
Some of the attention people currently devote to watching movies and TV can be stolen by things that seem completely unrelated, like social networking apps. More can be stolen by things that are a little more closely related, like games. But there will probably always remain some residual demand for conventional drama, where you sit passively and watch as a plot happens. So how do you deliver drama via the Internet? Whatever you make will have to be on a larger scale than Youtube clips. When people sit down to watch a show, they want to know what they're going to get: either part of a series with familiar characters, or a single longer "movie" whose basic premise they know in advance.
There are two ways delivery and payment could play out. Either some company like Netflix or Apple will be the app store for entertainment, and you'll reach audiences through them. Or the would-be app stores will be too overreaching, or too technically inflexible, and companies will arise to supply payment and streaming a la carte to the producers of drama. If that's the way things play out, there will also be a need for such infrastructure companies.
5. The Next Steve Jobs
I was talking recently to someone who knew Apple well, and I asked him if the people now running the company would be able to keep creating new things the way Apple had under Steve Jobs. His answer was simply "no." I already feared that would be the answer. I asked more to see how he'd qualify it. But he didn't qualify it at all. No, there will be no more great new stuff beyond whatever's currently in the pipeline. Apple's revenues may continue to rise for a long time, but as Microsoft shows, revenue is a lagging indicator in the technology business.
So if Apple's not going to make the next iPad, who is? None of the existing players. None of them are run by product visionaries, and empirically you can't seem to get those by hiring them. Empirically the way you get a product visionary as CEO is for him to found the company and not get fired. So the company that creates the next wave of hardware is probably going to have to be a startup.
I realize it sounds preposterously ambitious for a startup to try to become as big as Apple. But no more ambitious than it was for Apple to become as big as Apple, and they did it. Plus a startup taking on this problem now has an advantage the original Apple didn't: the example of Apple. Steve Jobs has shown us what's possible. That helps would-be successors both directly, as Roger Bannister did, by showing how much better you can do than people did before, and indirectly, as Augustus did, by lodging the idea in users' minds that a single person could unroll the future for them. [3]
Now Steve is gone there's a vacuum we can all feel. If a new company led boldly into the future of hardware, users would follow. The CEO of that company, the "next Steve Jobs," might not measure up to Steve Jobs. But he wouldn't have to. He'd just have to do a better job than Samsung and HP and Nokia, and that seems pretty doable.
6. Bring Back Moore's Law
The last 10 years have reminded us what Moore's Law actually says. Till about 2002 you could safely misinterpret it as promising that clock speeds would double every 18 months. Actually what it says is that circuit densities will double every 18 months. It used to seem pedantic to point that out. Not any more. Intel can no longer give us faster CPUs, just more of them.
This Moore's Law is not as good as the old one. Moore's Law used to mean that if your software was slow, all you had to do was wait, and the inexorable progress of hardware would solve your problems. Now if your software is slow you have to rewrite it to do more things in parallel, which is a lot more work than waiting.
It would be great if a startup could give us something of the old Moore's Law back, by writing software that could make a large number of CPUs look to the developer like one very fast CPU. There are several ways to approach this problem. The most ambitious is to try to do it automatically: to write a compiler that will parallelize our code for us. There's a name for this compiler, the sufficiently smart compiler, and it is a byword for impossibility. But is it really impossible? Is there no configuration of the bits in memory of a present day computer that is this compiler? If you really think so, you should try to prove it, because that would be an interesting result. And if it's not impossible but simply very hard, it might be worth trying to write it. The expected value would be high even if the chance of succeeding was low.
The reason the expected value is so high is web services. If you could write software that gave programmers the convenience of the way things were in the old days, you could offer it to them as a web service. And that would in turn mean that you got practically all the users.
Imagine there was another processor manufacturer that could still translate increased circuit densities into increased clock speeds. They'd take most of Intel's business. And since web services mean that no one sees their processors anymore, by writing the sufficiently smart compiler you could create a situation indistinguishable from you being that manufacturer, at least for the server market.
The least ambitious way of approaching the problem is to start from the other end, and offer programmers more parallelizable Lego blocks to build programs out of, like Hadoop and MapReduce. Then the programmer still does much of the work of optimization.
There's an intriguing middle ground where you build a semi-automatic weapon—where there's a human in the loop. You make something that looks to the user like the sufficiently smart compiler, but inside has people, using highly developed optimization tools to find and eliminate bottlenecks in users' programs. These people might be your employees, or you might create a marketplace for optimization.
An optimization marketplace would be a way to generate the sufficiently smart compiler piecemeal, because participants would immediately start writing bots. It would be a curious state of affairs if you could get to the point where everything could be done by bots, because then you'd have made the sufficiently smart compiler, but no one person would have a complete copy of it.
I realize how crazy all this sounds. In fact, what I like about this idea is all the different ways in which it's wrong. The whole idea of focusing on optimization is counter to the general trend in software development for the last several decades. Trying to write the sufficiently smart compiler is by definition a mistake. And even if it weren't, compilers are the sort of software that's supposed to be created by open source projects, not companies. Plus if this works it will deprive all the programmers who take pleasure in making multithreaded apps of so much amusing complexity. The forum troll I have by now internalized doesn't even know where to begin in raising objections to this project. Now that's what I call a startup idea.
7. Ongoing Diagnosis
But wait, here's another that could face even greater resistance: ongoing, automatic medical diagnosis.
One of my tricks for generating startup ideas is to imagine the ways in which we'll seem backward to future generations. And I'm pretty sure that to people 50 or 100 years in the future, it will seem barbaric that people in our era waited till they had symptoms to be diagnosed with conditions like heart disease and cancer.
For example, in 2004 Bill Clinton found he was feeling short of breath. Doctors discovered that several of his arteries were over 90% blocked and 3 days later he had a quadruple bypass. It seems reasonable to assume Bill Clinton has the best medical care available. And yet even he had to wait till his arteries were over 90% blocked to learn that the number was over 90%. Surely at some point in the future we'll know these numbers the way we now know something like our weight. Ditto for cancer. It will seem preposterous to future generations that we wait till patients have physical symptoms to be diagnosed with cancer. Cancer will show up on some sort of radar screen immediately.
(Of course, what shows up on the radar screen may be different from what we think of now as cancer. I wouldn't be surprised if at any given time we have ten or even hundreds of microcancers going at once, none of which normally amount to anything.)
A lot of the obstacles to ongoing diagnosis will come from the fact that it's going against the grain of the medical profession. The way medicine has always worked is that patients come to doctors with problems, and the doctors figure out what's wrong. A lot of doctors don't like the idea of going on the medical equivalent of what lawyers call a "fishing expedition," where you go looking for problems without knowing what you're looking for. They call the things that get discovered this way "incidentalomas," and they are something of a nuisance.
For example, a friend of mine once had her brain scanned as part of a study. She was horrified when the doctors running the study discovered what appeared to be a large tumor. After further testing, it turned out to be a harmless cyst. But it cost her a few days of terror. A lot of doctors worry that if you start scanning people with no symptoms, you'll get this on a giant scale: a huge number of false alarms that make patients panic and require expensive and perhaps even dangerous tests to resolve. But I think that's just an artifact of current limitations. If people were scanned all the time and we got better at deciding what was a real problem, my friend would have known about this cyst her whole life and known it was harmless, just as we do a birthmark.
There is room for a lot of startups here. In addition to the technical obstacles all startups face, and the bureaucratic obstacles all medical startups face, they'll be going against thousands of years of medical tradition. But it will happen, and it will be a great thing—so great that people in the future will feel as sorry for us as we do for the generations that lived before anaesthesia and antibiotics.
Tactics
Let me conclude with some tactical advice. If you want to take on a problem as big as the ones I've discussed, don't make a direct frontal attack on it. Don't say, for example, that you're going to replace email. If you do that you raise too many expectations. Your employees and investors will constantly be asking "are we there yet?" and you'll have an army of haters waiting to see you fail. Just say you're building todo-list software. That sounds harmless. People can notice you've replaced email when it's a fait accompli. [4]
Empirically, the way to do really big things seems to be to start with deceptively small things. Want to dominate microcomputer software? Start by writing a Basic interpreter for a machine with a few thousand users. Want to make the universal web site? Start by building a site for Harvard undergrads to stalk one another.
Empirically, it's not just for other people that you need to start small. You need to for your own sake. Neither Bill Gates nor Mark Zuckerberg knew at first how big their companies were going to get. All they knew was that they were onto something. Maybe it's a bad idea to have really big ambitions initially, because the bigger your ambition, the longer it's going to take, and the further you project into the future, the more likely you'll get it wrong.
I think the way to use these big ideas is not to try to identify a precise point in the future and then ask yourself how to get from here to there, like the popular image of a visionary. You'll be better off if you operate like Columbus and just head in a general westerly direction. Don't try to construct the future like a building, because your current blueprint is almost certainly mistaken. Start with something you know works, and when you expand, expand westward.
The popular image of the visionary is someone with a clear view of the future, but empirically it may be better to have a blurry one.
Notes
[1] It's also one of the most important things VCs fail to understand about startups. Most expect founders to walk in with a clear plan for the future, and judge them based on that. Few consciously realize that in the biggest successes there is the least correlation between the initial plan and what the startup eventually becomes.
[2] This sentence originally read "GMail is painfully slow." Thanks to Paul Buchheit for the correction.
[3] Roger Bannister is famous as the first person to run a mile in under 4 minutes. But his world record only lasted 46 days. Once he showed it could be done, lots of others followed. Ten years later Jim Ryun ran a 3:59 mile as a high school junior.
[4] If you want to be the next Apple, maybe you don't even want to start with consumer electronics. Maybe at first you make something hackers use. Or you make something popular but apparently unimportant, like a headset or router. All you need is a bridgehead.
Thanks to Sam Altman, Trevor Blackwell, Paul Buchheit, Patrick Collison, Aaron Iba, Jessica Livingston, Robert Morris, Harj Taggar and Garry Tan for reading drafts of this.

Monday, March 12

High Performance Trading

I used to muck around with high frequency equities trading almost 10 years back at Salomon Brothers when I was in the front line trenches. The reason to share this graphic from CISCO is because of two reasons, first is to show a bit of the complexity of the system and second is that its a neat graphical representation, perfect for a poster on the wall…

image

Zooming in

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Neato or what? Smile

Saturday, March 3

Lovely Data Graphics

we did something similar while I used to be on the trading floor on algorithmic trading in European cash equities. Its an interesting way to check the tree and depth of the exchange trading books, specially it gave some great insights on the hourly movement of the spread and liquidity and the shape of the tree...

Taxi! from Juan Francisco Saldarriaga on Vimeo.

Saturday, February 25

Google Maps caught a plane

Amusing, i was trying to look for a restaurant near the British Museum on Google Maps when I saw this…

google

Can you see what’s on the top of Russell Square? The satellite caught a plane on the way, lol.

Sunday, October 16

Information Processing: The rise of data science

Data scientist. Sounds like an interesting job title eh? Given your interest in physics, you might be interested in this. 

Incidentally, that's what we do within the bank as well. It's just that our data is economics and financial in nature. And economics data is basically social anyway. This data helps us in coming up with new products, sell them, manage them, transact them and help our customers with their business. 

But I likes the formulation of a data scientist being an entrepreneur. Look at data and frequently it tells you new stuff, new insights, new customers, new ways of making money, etc. 

The flip side is also true, every entrepreneur has to worry about data as well. 

What do you think? 

Information Processing: The rise of data science
http://infoproc.blogspot.com/2011/08/rise-of-data-science.html


See also this follow up article from O’Reilly Radar, and the earlier post Exuberant geeks.


What is data science: … Data science requires skills ranging from traditional computer science to mathematics to art. Describing the data science group he put together at Facebook (possibly the first data science group at a consumer-oriented web property), Jeff Hammerbacher said:

“… on any given day, a team member could author a multistage processing pipeline in Python, design a hypothesis test, perform a regression analysis over data samples with R, design and implement an algorithm for some data-intensive product or service in Hadoop, or communicate the results of our analyses to other members of the organization.”

Where do you find the people this versatile? According to DJ Patil, chief scientist at LinkedIn (@dpatil), the best data scientists tend to be “hard scientists,” particularly physicists, rather than computer science majors. Physicists have a strong mathematical background, computing skills, and come from a discipline in which survival depends on getting the most from the data. They have to think about the big picture, the big problem. When you’ve just spent a lot of grant money generating data, you can’t just throw the data out if it isn’t as clean as you’d like. You have to make it tell its story. You need some creativity for when the story the data is telling isn’t what you think it’s telling.

… Entrepreneurship is another piece of the puzzle. Patil’s first flippant answer to “what kind of person are you looking for when you hire a data scientist?” was “someone you would start a company with.” That’s an important insight: we’re entering the era of products that are built on data. We don’t yet know what those products are, but we do know that the winners will be the people, and the companies, that find those products. Hilary Mason came to the same conclusion. Her job as scientist at bit.ly is really to investigate the data that bit.ly is generating, and find out how to build interesting products from it. No one in the nascent data industry is trying to build the 2012 Nissan Stanza or Office 2015; they’re all trying to find new products. In addition to being physicists, mathematicians, programmers, and artists, they’re entrepreneurs.

Data scientists combine entrepreneurship with patience, the willingness to build data products incrementally, the ability to explore, and the ability to iterate over a solution. They are inherently interdiscplinary. They can tackle all aspects of a problem, from initial data collection and data conditioning to drawing conclusions. They can think outside the box to come up with new ways to view the problem, or to work with very broadly defined problems: “here’s a lot of data, what can you make from it?”

The future belongs to the companies who figure out how to collect and use data successfully. Google, Amazon, Facebook, and LinkedIn have all tapped into their datastreams and made that the core of their success. They were the vanguard, but newer companies like bit.ly are following their path. Whether it’s mining your personal biology, building maps from the shared experience of millions of travellers, or studying the URLs that people pass to others, the next generation of successful businesses will be built around data.


Here is a nice talk on machine learning and data science by Hilary Mason of bit.ly. One of my students will be working with her starting in the fall.

Saturday, September 17

From Scroll to Screen

Interesting evolution, Son. And now we have audio books...I wonder what you will tell your son in 25 years time? :)

http://www.nytimes.com/2011/09/04/books/review/the-mechanic-muse-from-scroll-to-screen.html

The Mechanic Muse

From Scroll to Screen

Illustration by Joon Mo Kang

By LEV GROSSMAN

Something very important and very weird is happening to the book right now: It’s shedding its papery corpus and transmigrating into a bodiless digital form, right before our eyes. We’re witnessing the bibliographical equivalent of the rapture. If anything we may be lowballing the weirdness of it all.

Related

The last time a change of this magnitude occurred was circa 1450, when Johannes Gutenberg invented movable type. But if you go back further there’s a more helpful precedent for what’s going on. Starting in the first century A.D., Western readers discarded the scroll in favor of the codex — the bound book as we know it today.

In the classical world, the scroll was the book format of choice and the state of the art in information technology. Essentially it was a long, rolled-up piece of paper or parchment. To read a scroll you gradually unrolled it, exposing a bit of the text at a time; when you were done you had to roll it back up the right way, not unlike that other obsolete medium, the VHS tape. English is still littered with words left over from the scroll age. The first page of a scroll, which listed information about where it was made, was called the “protocol.” The reason books are sometimes called volumes is that the root of “volume” is volvere, to roll: to read a scroll, you revolved it.

Scrolls were the prestige format, used for important works only: sacred texts, legal documents, history, literature. To compile a shopping list or do their algebra, citizens of the ancient world wrote on wax-covered wooden tablets using the pointy end of a stick called a stylus. Tablets were for disposable text — the stylus also had a flat end, which you used to squash and scrape the wax flat when you were done. At some point someone had the very clever idea of stringing a few tablets together in a bundle. Eventually the bundled tablets were replaced with leaves of parchment and thus, probably, was born the codex. But nobody realized what a good idea it was until a very interesting group of people with some very radical ideas adopted it for their own purposes. Nowadays those people are known as Christians, and they used the codex as a way of distributing the Bible.

One reason the early Christians liked the codex was that it helped differentiate them from the Jews, who kept (and still keep) their sacred text in the form of a scroll. But some very alert early Christian must also have recognized that the codex was a powerful form of information technology — compact, highly portable and easily concealable. It was also cheap — you could write on both sides of the pages, which saved paper — and it could hold more words than a scroll. The Bible was a long book.

The codex also came with a fringe benefit: It created a very different reading experience. With a codex, for the first time, you could jump to any point in a text instantly, nonlinearly. You could flip back and forth between two pages and even study them both at once. You could cross-check passages and compare them and bookmark them. You could skim if you were bored, and jump back to reread your favorite parts. It was the paper equivalent of random-access memory, and it must have been almost supernaturally empowering. With a scroll you could only trudge through texts the long way, linearly. (Some ancients found temporary fixes for this bug — Suetonius apparently suggested that Julius Caesar created a proto-notebook by stacking sheets of papyrus one on top of another.)

Over the next few centuries the codex rendered the scroll all but obsolete. In his “Confessions,” which dates from the end of the fourth century, St. Augustine famously hears a voice telling him to “pick up and read.” He interprets this as a command from God to pick up the Bible, open it at random and read the first passage he sees. He does so, the scales fall from his eyes and he becomes a Christian. Then he bookmarks the page. You could never do that with a scroll.

Right now we’re avidly road-testing a new format for the book, just as the early Christians did. Over the first quarter of this year e-book sales were up 160 percent. Print sales — codex sales — were down 9 percent. Those are big numbers. But unlike last time it’s not a clear-cut case of a superior technology displacing an inferior one. It’s more complex than that. It’s more about trade-offs.

On the one hand, the e-book is far more compact and portable than the codex, almost absurdly so. E-books are also searchable, and they’re green, or greenish anyway (if you want to give yourself nightmares, look up the ecological cost of building a single Kindle). On the other hand the codex requires no batteries, and no electronic display has yet matched the elegance, clarity and cool matte comfort of a printed page.

But so far the great e-book debate has barely touched on the most important feature that the codex introduced: the nonlinear reading that so impressed St. Augustine. If the fable of the scroll and codex has a moral, this is it. We usually associate digital technology with nonlinearity, the forking paths that Web surfers beat through the Internet’s underbrush as they click from link to link. But e-books and nonlinearity don’t turn out to be very compatible. Trying to jump from place to place in a long document like a novel is painfully awkward on an e-reader, like trying to play the piano with numb fingers. You either creep through the book incrementally, page by page, or leap wildly from point to point and search term to search term. It’s no wonder that the rise of e-reading has revived two words for classical-era reading technologies: scroll and tablet. That’s the kind of reading you do in an e-book.

The codex is built for nonlinear reading — not the way a Web surfer does it, aimlessly questing from document to document, but the way a deep reader does it, navigating the network of internal connections that exists within a single rich document like a novel. Indeed, the codex isn’t just another format, it’s the one for which the novel is optimized. The contemporary novel’s dense, layered language took root and grew in the codex, and it demands the kind of navigation that only the codex provides. Imagine trying to negotiate the nested, echoing labyrinth of David Mitchell’s “Cloud Atlas” if it were transcribed onto a scroll. It couldn’t be done.

God knows, there was great literature before there was the codex, and should it pass away, there will be great literature after it. But if we stop reading on paper, we should keep in mind what we’re sacrificing: that nonlinear experience, which is unique to the codex. You don’t get it from any other medium — not movies, or TV, or music or video games. The codex won out over the scroll because it did what good technologies are supposed to do: It gave readers a power they never had before, power over the flow of their own reading experience. And until I hear God personally say to me, “Boot up and read,” I won’t be giving it up.

Lev Grossman is the author of the novels “The Magicians” and “The Magician King.” He is also the book critic at Time magazine.


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Saturday, September 10

Check out the broadband speed- 655360kkbps!

I am having issues with my broadband, the speed sucks. So have been on the tech support guys for a long time, got a new router, etc. etc.

Ran the speed test again and check out the speed.

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lol, not that its working, very soon it went down to 200kbps. But had to screen print and store it.