Make 5 5 5 5 = 19 [closed]

Make 5 5 5 5 = 19 [closed]



Can you find a way to make:



$5 5 5 5 = 19$



by adding any operations or symbols? You can use only these symbols:



$+, -, *, !, /, hat, , ()$.



It is limited to this list, and concatenation is also allowed. You cannot add other numbers to the equation.



Please edit the question to limit it to a specific problem with enough detail to identify an adequate answer. Avoid asking multiple distinct questions at once. See the How to Ask page for help clarifying this question. If this question can be reworded to fit the rules in the help center, please edit the question.





Comments are not for extended discussion; this conversation has been moved to chat. If you have legitimate questions about the puzzle statement, including allowed operations and the like, ask them (to the OP) or include your assumptions in your answer as others have done; debating them with other users is a fairly fruitless exercise, and not what comments are for in any case.
– Rubio
Aug 28 at 14:58






The amount of solutions is likely to be too big. I am not sure if answers putting operations between 1 and 9 are valid. BTW, came up with different solution which is, I guess, uninteresting (because there already are too many) and anyway I can't post an answer.
– rus9384
Aug 28 at 19:38





There are lots of possible solutions for this question. A lot of good answers have been given too. It would be nice if one got accepted and the question closed or else it feels like it is too broad with a lot of correct answers.
– R.D
Aug 29 at 12:05




10 Answers
10



Here's one way I found:



$dfrac5!-(5times 5)5=19$



Or, using just the characters explicitly allowed in the question:



(5! - (5 * 5)) / 5 = 19


(5! - (5 * 5)) / 5 = 19





Somebody upvote once more (I already have)! It's a great answer and @Riley's nearly on $10k$ reputation! :D
– user477343
Aug 29 at 15:04





@user477343 Thank you! I will now use my powers responsibly.
– Riley
Aug 29 at 17:04





Well, after those Riley riddles you made, I think you quite deserve it :)
– user477343
Aug 29 at 21:41



If the double factorial is allowed, then I propose



$$5!!+5-5/5$$



WolframAlpha agrees that the result is 19.



I am quite sure it is not the expected answer but it is the immediate answer comes into my mind.



$frac5+55+5=1^9$





I like this one (+1), as my immediate answer (with fewer symbols) would be similar, alternating division and multiplication, while keeping the same right-hand side as yours. (Meta: I'm not writing my solution in the comment in order to avoid spoiling, as rot13 wouldn't work here. Not sure what is the standard policy in this case. Should I post it as a separate answer?)
– Maiaux
Aug 27 at 16:06






@Maiaux if it is really similar, do not post it as a seperate answer. This has happened before here, where a user deleted his/her answer (I won't name who, exactly) for its similarity compared to another answer.
– user477343
Aug 29 at 15:06




For the 5s



$$left(5 - frac55right)! - 5 = 19 $$



For the 1s (previous edit)



$$(1+1+1)!-1=5$$



My way:



$(5+5)timesfrac55=1+9$



and



$(5+5)-frac55=1times9$



New, and added for it's simplicity:



$5+5+5-5=1+9$



In base-11, the trivial addition works:



$$ 5_11 + 5_11 + 5_11 + 5_11 = 19_11 $$





Those subscript 1s could be considered other numbers?
– Viktor Mellgren
Aug 27 at 8:54





just remove the subscripts they are not needed (can we not as usual ignore the number base).
– ctrl-alt-delor
Aug 27 at 9:04



5555 != 19 : Credit : Jonathan Allan





Is this now an equation?
– ctrl-alt-delor
Aug 27 at 9:05



From the comment above



5555 ≠ 19



One way to think of it -



19 HEX = 25 DEC



Therefore -



$frac 5 5 * 5 * 5 = 25$



(5! - 5 * 5) / 5 = 19

(120 - 25) / 5 = 19

95 / 5 = 19



or



5 + 5 + 5 - 5 = 1 + 9




Thank you for your interest in this question.
Because it has attracted low-quality or spam answers that had to be removed, posting an answer now requires 10 reputation on this site (the association bonus does not count).



Would you like to answer one of these unanswered questions instead?

Popular posts from this blog

𛂒𛀶,𛀽𛀑𛂀𛃧𛂓𛀙𛃆𛃑𛃷𛂟𛁡𛀢𛀟𛁤𛂽𛁕𛁪𛂟𛂯,𛁞𛂧𛀴𛁄𛁠𛁼𛂿𛀤 𛂘,𛁺𛂾𛃭𛃭𛃵𛀺,𛂣𛃍𛂖𛃶 𛀸𛃀𛂖𛁶𛁏𛁚 𛂢𛂞 𛁰𛂆𛀔,𛁸𛀽𛁓𛃋𛂇𛃧𛀧𛃣𛂐𛃇,𛂂𛃻𛃲𛁬𛃞𛀧𛃃𛀅 𛂭𛁠𛁡𛃇𛀷𛃓𛁥,𛁙𛁘𛁞𛃸𛁸𛃣𛁜,𛂛,𛃿,𛁯𛂘𛂌𛃛𛁱𛃌𛂈𛂇 𛁊𛃲,𛀕𛃴𛀜 𛀶𛂆𛀶𛃟𛂉𛀣,𛂐𛁞𛁾 𛁷𛂑𛁳𛂯𛀬𛃅,𛃶𛁼

Edmonton

Crossroads (UK TV series)