Earlier quoted context omitted.
I want to meet the 5 year olds who you think will easily understand all of that
I take ELI5 in hackernews comments to mean: "Explain like i'm someone with a vaguely technical background but no knowledge in this particular field", not "I'm a literal five year old". I think it's probably close to impossible to explain this adequately to an actual five year old while staying true to the essence of the paper.
The k-server conjecture is true
21–30 of 39 posts
Re: The k-server conjecture is true
#22Re: The k-server conjecture is true
#23One way to think about competitive analysis is bulk discounts. In life we’re constantly having to choose between quantity and discount. We could buy 1 item for a higher price, or say quantity 5 or 10 to get better discounts. The problem comes when we don’t know in advance exactly how many we’re going to need.
What should be our strategy for choosing how many to buy, and whatever the strategy is how well does it compare with having perfect knowledge upfront?
Re: The k-server conjecture is true
#24Earlier quoted context omitted.
I take ELI5 in hackernews comments to mean: "Explain like i'm someone with a vaguely technical background but no knowledge in this particular field", not "I'm a literal five year old". I think it's probably close to impossible to explain this adequately to an actual five year old while staying true to the essence of the paper.
I would expect someone commenting ELI5 on Hacker News to mean that they didn't understand the article directly, so pasting several paragraphs verbatim is not particularly helpful to them. If you think that the article is clear, and they're still asking for clarification, it's a sign that you've probably overestimated the clarity to someone with less experience in the subject (as always, relevant xkcd for this: https:…
Re: The k-server conjecture is true
#25Re: The k-server conjecture is true
#26Earlier quoted context omitted.
I would expect someone commenting ELI5 on Hacker News to mean that they didn't understand the article directly, so pasting several paragraphs verbatim is not particularly helpful to them. If you think that the article is clear, and they're still asking for clarification, it's a sign that you've probably overestimated the clarity to someone with less experience in the subject (as always, relevant xkcd for this: https:…
That's fair, I had assumed they hadn't read the article at all ;) If they have, it would have been nice to know which parts of the problem definition the paper describes as "simple" they struggled with, otherwise I default to "I haven't read the article and would like a summary for a technically inclined layman"
Re: The k-server conjecture is true
#27Earlier quoted context omitted.
I feel like the paper itself does a fairly good job: > The [k-server] problem’s definition is simple: There are k servers located at points of a metric space. At each time step, a request arrives at a point of the metric space. An online algorithm must serve the request immediately by moving a server to the requested location, without knowledge of future requests. The goal is to minimize the total distance traveled b…
There’s a difference between “pretty good” and understandable. The phrase “metric space” (more or less) disqualifies anyone without an undergraduate degree in mathematics. Fortunately a sibling to the parent explains that.
Re: The k-server conjecture is true
#28This is an important result, sometimes called the holy grail of competitive analysis. One way to think about competitive analysis is bulk discounts. In life we’re constantly having to choose between quantity and discount. We could buy 1 item for a higher price, or say quantity 5 or 10 to get better discounts. The problem comes when we don’t know in advance exactly how many we’re going to need. What should be our stra…
Re: The k-server conjecture is true
#29Re: The k-server conjecture is true
#30Explain to me like im 5.
It's not really like you're 5, but the third sentence of the introduction makes it really understandable: > The problem’s definition is simple: There are k servers located at points of a metric space. At each time step, a request arrives at a point of the metric space. An online algorithm must serve the request immediately by moving a server to the requested location, without knowledge of future requests. The goal is…
> The k-server conjecture states that a deterministic online algorithm can achieve competitive ratio k on every metric space.
I was like "algorithm for what?" when I knew what every one of those terms meant. Lots of things use k servers. Lots of problems involve metric spaces.