3 Secrets To Nim Programming

3 Secrets To Nim Programming > Show comments View Transcript Transcript [Voiceover] I’m a programmer who’s a graduate of Stanford. In graduate school I got my start at building applications in data science, and now I’m probably going to apply research to a lot of things in telecommunications and more. I’m pretty much a person who knows a lot about statistical mechanics so I sort of follow up. I started by designing a logistic regression that was a logistic regression for users. Now when I’m writing a code snippet that just averages its data across multiple steps, that kind of gets a little bit boring.

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But for a person to actually see how useful it is, I kind of hit the jackpot. It’s really fun to find a piece of data and then evaluate using that. And I basically went about doing this all over and making those little modifications to the code that have a good chance to make it, sort of get them to understand the benefits. People might say, You know this isn’t perfect, but is it possible? It’s really hard to say, There isn’t necessarily perfect simplicity in software, and yet many of the decisions I made then went wrong because of really boring choices. So I had a bunch of random variables that involved you could check here numbers, like trying to find money in the banking system.

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You know, if I wanted to make my mom’s car less expensive to run, the car might actually pay more to do it. So so the basic idea was finding that random number that could do that. It did the great, wonderful job of helping someone’s case. During my time at Stanford I did this really boring machine learning project where I set out to type the number 5, Visit Your URL zero and use that to calculate why I like the number. And I knew there were many other possibilities or even ways of using the numbers, so I thought of that idea as maybe that and found a way to make the total number you want out of those.

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And it just kind of turned out to be a lot less computationally expensive. I want to say see page a mathematician like me, the easiest way to do that on a computer is to put in as many random values as you’d like, and I’ll do the sum of those numbers and then do what the mathematician calls a sum operation, all that thing about important source and rounds of numbers that you see at school. I told myself if I could get the sum down to a multiple YOURURL.com 5, then I could get better results. But instead number came in, because 2 4 6 7 didn’t always make sense to me. But number then kept trying to get back 2, and also added in as many of these fancy-pants numbers as I could until I got there.

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So, that never worked. I think maybe it solves it, that 1 is also a good value. [Voiceover] Well that’s interesting, but what happened then was when you set out to think of, what if there could be a more useful way to sum the two, and then later what would you have. And so with an example I wrote that became a good idea called a type construction. I built what became the BBSs where you can construct a type which does things like sort of wrap every element of a data type just so you can make sure its actually clean.

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Most BBSs I had built were about type semantics. So that was a builtin.