Editing Talk:1935: 2018

Jump to: navigation, search
Ambox notice.png Please sign your posts with ~~~~

Warning: You are not logged in. Your IP address will be publicly visible if you make any edits. If you log in or create an account, your edits will be attributed to your username, along with other benefits.

The edit can be undone. Please check the comparison below to verify that this is what you want to do, and then save the changes below to finish undoing the edit.
Latest revision Your text
Line 1: Line 1:
 
<!--Please sign your posts with ~~~~ and don't delete this text. New comments should be added at the bottom.-->
 
<!--Please sign your posts with ~~~~ and don't delete this text. New comments should be added at the bottom.-->
This is easy! Don't factor it - just multiply by 25 and if that ends in two zeros, but not four zeros then it's a leap year, at least most of the time.....17:25, 29 December 2017 (UTC) {{unsigned ip|162.158.126.112}}
 
 
This is easy! Don’t factor it - just convert it into a binary and look at the 2 least significant bits. If they are 00 the number is multiple of four. —[[Special:Contributions/172.69.33.35|172.69.33.35]] 17:37, 29 December 2017 (UTC)
 
 
This is easy! Don't factor it - just subtract 4 repeatedly. If you end up at 0, it's divisible. If you end up at 1, 2, or 3, it's not. -- 17:55, 29 December 2017 (UTC){{unsigned ip|172.68.58.167}}
 
 
This ''is'' easy! Sums of numbers that have 4 as a factor are all divisible by four. (I'll leave the proof of that as an exercise for the reader, but it's really trivial, though possibly non-intuitive.) This means that one can take a number apart and check the individual pieces. Now, any number that's a multiple of 100 is divisible by four (10 * 10 = 5² * 2²,) so one can essentially cut away the higher digits of a number, as they do not influence its divisibility with regard to 4. Now look at the first of the remaining digits. If that's odd, add 2 to the last digit. If the last digit is now divisible by four, the original number is divisble by four. [[User:Tibfulv|Tibfulv]] ([[User talk:Tibfulv|talk]]) 00:38, 30 December 2017 (UTC)
 
 
This ''really, absolutely, truly, is 100% easy!'' To tell if a number is divisible by four, look at the last two digits. If the last one is divisible by four, the penultimate one is even. If it isn't divisible by four, the penultimate digit should be odd. [[User:Waterlubber|Waterlubber]] ([[User talk:Waterlubber|talk]]) 03:01, 3 January 2018 (UTC)
 
: Checking these are a whole multiple of 4 has always worked for me. [[User:Elvenivle|Elvenivle]] ([[User talk:Elvenivle|talk]]) 00:36, 13 June 2019 (UTC)
 
 
This is extremely easy - look at the calendar for the year and see if it has a 29th Feb.[[Special:Contributions/141.101.76.16|141.101.76.16]] 10:40, 3 January 2018 (UTC)
 
 
The calculation of Christmas is trivial{{Citation needed}} it's December 25th. Where as the calculation of Easter is complex ([https://en.wikipedia.org/wiki/Computus]). [[Special:Contributions/172.68.133.18|172.68.133.18]] 18:03, 29 December 2017 (UTC)
 
 
Calculating the date of Christmas is actually non-trivial. It depends on your location. For example if you are in the US it's in December. If you are in Russia it's in January. If you are in Ukraine it's sortof both but not really. And if you are in Crimea, well, see one of the 2 previous sentences. --[[Special:Contributions/172.68.238.172|172.68.238.172]] 15:22, 30 December 2017 (UTC)
 
 
:Actually, it's December 25 on the old Julian calendar in Russia. It's just that Russia uses the Julian calendar for liturgical purposes and the Gregorian calendar for secular purposes. It's a bit schizophrenic. [[User:Billjefferys|Billjefferys]] ([[User talk:Billjefferys|talk]]) 19:40, 30 December 2017 (UTC)
 
::I've moved some content to the trivia section and added this Julian calendar issue for the Eastern church.--[[User:Dgbrt|Dgbrt]] ([[User talk:Dgbrt|talk]]) 19:42, 30 December 2017 (UTC)
 
 
FYI, Christmas in 2018 falls on a Tuesday. I just did a quick research on my laptop's calendar, it is an answer to the title text.Boeing-787lover 19:10, 31 December 2017 (UTC) {{unsigned|Xkcdreader52}}
 
 
;Title text explanation mis-read
 
Explanation of title text is incorrect: "The title text refers to calculating the date of Christmas; again, this is a trivial exercise, because Christmas is always December 25." Title text states 'day of Christmas', not 'date...'. The day changes each year and so does require calculation. {{unsigned ip|162.158.111.73}}
 
 
Oops, my bad. Fixed. [[User:FlyingPiMonster|FlyingPiMonster]] ([[User talk:FlyingPiMonster|talk]]) 18:08, 29 December 2017 (UTC)
 
* I think you have it backwards. The title text is a reference to calculating the day (as in "date", not "day of week") of Easter. This is a non-trivial calculation (though one that modern computers can perform easily). On the other hand, the Christmas day is fixed. (There's no reason to believe that the joke was anything else.) - [[User:Mike Rosoft|Mike Rosoft]] ([[User talk:Mike Rosoft|talk]]) 19:13, 29 December 2017 (UTC)
 
 
 
I don't know who wrote the explanation, but...  Are they having a bad day? [[Special:Contributions/162.158.111.205|162.158.111.205]] 18:44, 29 December 2017 (UTC)
 
:That was vandalism. I did a revert. --[[User:Dgbrt|Dgbrt]] ([[User talk:Dgbrt|talk]]) 19:06, 29 December 2017 (UTC)
 
::Ah, no, I was asking because the explanation sounds so angry. [[Special:Contributions/141.101.104.17|141.101.104.17]] 22:48, 29 December 2017 (UTC)
 
 
:Also, Megan understands that checking if a number divisible by 2 is easy [[Special:Contributions/141.101.77.50|141.101.77.50]] 19:32, 29 December 2017 (UTC)
 
 
;Theory for possible explanation
 
Didn't want to edit this in because I'm not sure- but the motivation for this uncharacteristic lack of mathematical rigor could have to do with the current trend of people being dismissive of science being able to predict things. Something that seems pretty obvious is made to look like a chance event that nobody can really predict ahead of time. {{unsigned|Sirpent}}
 
 
::This is easy! Don't factor it - just subtract 2000. Is 18 divisible by 4? If so, you're an idiot. {{unsigned ip| 172.68.143.156}}
 
 
::The nonsense does look to me like a political discussion where one person uses "alternative facts".  But in real life people get leap years "amusingly" wrong.  Computer system designers for instance... one software tool I used passed into the year 2000 working correctly, but then it broke 2 months later because it thought 2000 wasn't a Gregorian calendar leap year, I guess because every 4th year is but every 100th year isn't.  Every 400th year is, but, if the programmer just stopped at "every 4th is a leap year" then they'd have been fine until 2100.  Robert Carnegie [email protected] [[Special:Contributions/141.101.105.102|141.101.105.102]] 22:06, 29 December 2017 (UTC)
 
: I can assure you with a rather high degree of certainty that this comic is a nod to the exceedingly large number of people who are uncomfortable with math, some to the point where they seem to consider people who are comfortable with math with a sense of awe nearly akin to a magician of old, like a small part in the back of their brain harkens back to the times of the Salem Witch Trials and wants to point and yell "Witch! Witch! Burn them!". :) [[User:NiceGuy1|NiceGuy1]] ([[User talk:NiceGuy1|talk]]) 05:16, 5 January 2018 (UTC)
 
 
The joke in this might be that it might take some time to brute-force the prime factorisation of 2018 with a calculator as it’s 2*1009. Same holds true for 2017 which is prime. Therefore on might come to the conclusion that factorisation is hard already at this scale. (flx) [[Special:Contributions/172.68.253.71|172.68.253.71]] 22:24, 29 December 2017 (UTC)
 
 
;Odd/even is another joke
 
Cueball: No, it's definitely not. Leap years are divisible by 4.
 
Megan: Right, and for odd numbers, that's easy.
 
Megan: But 2018 is even.
 
 
She can see that finding out if a number is divisible by 2 is easy, but for dividing by 4 it's a "50/50 chance", and really hard to calculate. IMHO the best joke in the comic but missing from the explanation. [[Special:Contributions/141.101.77.50|141.101.77.50]] 23:59, 29 December 2017 (UTC)
 
: Actually, as someone who has helped a LOT of math-challenged people, I understand what she means. Even for them, it's easy to tell if a number is even. But without doing ANY math, it really is 50/50 if it's divisible by 4, only every second even number is. Those of us more comfortable with math can remember that since the 2000 part is, we only have to look at the 18, and since for us it's very easy to remember 16 is - it's freaking 4 squared - that makes the rest easy. But that requires a little math, and math-challenged people shy away from any amount of math. :) [[User:NiceGuy1|NiceGuy1]] ([[User talk:NiceGuy1|talk]]) 04:53, 5 January 2018 (UTC)
 
 
I think it's interesting that 2018 only has two factors, 2 and 1009. Maybe a trivia?
 
[[Special:Contributions/162.158.238.107|162.158.238.107]] 17:40, 30 December 2017 (UTC)
 
 
I think there should be a mention of leap year rules in general, since they are nontrivial (divisble by 4, except not multiples of 100, except yes to multiples of 400)? [[Special:Contributions/172.68.142.233|172.68.142.233]] 18:43, 30 December 2017 (UTC)
 
 
I think the joke in the title text is a play on the old joke that even though we know every year when Christmas falls, and every year we always say that we are going to begin saving or shopping in the months preceding Christmas we always get to December and are "surprised" that Christmas happens to be in December. Effectively Randall is suggesting that the reason we are surprised Christmas is in December is not due to forgetting but rather that we are "calculating" when the day is. Also related are Jokes about American Tax day (April 15th) or pretty much anything to do with procrastination. [[Special:Contributions/172.69.70.107|172.69.70.107]] 01:06, 31 December 2017 (UTC) Sam
 
: Nope. No matter how it's worded (I haven't checked) the Christmas and Easter bits are about figuring out what day of the week Christmas lands on and what date Easter lands on. Christmas is always December 25th in North America, on the calendar most widely used IN North America (since that's where Randall is). This means the day of the week changes every year. Conversely, Easter is always Sunday (again, N.A....), so it always falls on a different DATE. These are the things being figured out. In both cases it can affect things (though with Easter I expect mostly for what week it is). For example, my mother, who is getting on in years, receives help washing herself every Tuesday and Friday. If Christmas lands on a Tuesday, it's safe to say her wash is cancelled or requires rescheduling. However, if Christmas is on a Wednesday, it MIGHT not affect either wash day that week. Furthermore, if Christmas is on a Tuesday, most people would expect to get the Monday off from work, Wednesday it starts to come into question. These are the things being figured out. [[User:NiceGuy1|NiceGuy1]] ([[User talk:NiceGuy1|talk]]) 05:37, 5 January 2018 (UTC)
 
 
Here is some trivia! This comic is number 1935. In 83 more comics XKCD will reach number 2018. So sometime in the year 2018 we will have comic number 2018. Now go calculate what date that will happen ... and don't pull out your pocket slide rule [https://en.wikipedia.org/wiki/Slide_rule] to do the calculation. [[User:Rtanenbaum|Rtanenbaum]] ([[User talk:Rtanenbaum|talk]]) 14:47, 1 January 2018 (UTC)
 
 
Trivia "So we will have a comic named 2018 and a comic numbered 2018 both in the year 2018" is wrong: actually, comic named "2018" was published in the year 2017. [[Special:Contributions/195.62.179.66|195.62.179.66]] 07:23, 2 January 2018 (UTC)
 
: Aargh. Thank you. Corrected. [[User:Rtanenbaum|Rtanenbaum]] ([[User talk:Rtanenbaum|talk]]) 14:13, 2 January 2018 (UTC)
 
 
I don’t see at all why the joke is anything other than the date of Christmas. It’s not funny if it’s the day of week of Christmas, and it’s so obviously a reference to Easter. The explanation should be changed. [[Special:Contributions/172.68.58.131|172.68.58.131]] 15:03, 10 May 2018 (UTC)
 

Please note that all contributions to explain xkcd may be edited, altered, or removed by other contributors. If you do not want your writing to be edited mercilessly, then do not submit it here.
You are also promising us that you wrote this yourself, or copied it from a public domain or similar free resource (see explain xkcd:Copyrights for details). Do not submit copyrighted work without permission!

To protect the wiki against automated edit spam, we kindly ask you to solve the following CAPTCHA:

Cancel | Editing help (opens in new window)

Templates used on this page: