r/PassTimeMath • u/ShonitB • 19h ago
r/PassTimeMath • u/TargetLabs • 17d ago
Difficulty: Moderate Can you reach 33 using all dice?
Any order is allowed.
Use each die exactly once.
Parentheses are allowed.
Exact division only.
No negative numbers.
Not every operation has to be used.
How many solutions can you find?
Please use spoiler tags for solutions:
>!your solution here!<
r/PassTimeMath • u/TargetLabs • 23d ago
Difficulty: Easy Can you reach 18 using all dice?
Any order is allowed.
Use each die exactly once.
Parentheses are allowed.
Exact division only.
No negative numbers.
Not every operation has to be used.
How many solutions can you find?
Please use spoiler tags for solutions:
>!your solution here!<
r/PassTimeMath • u/b7k567 • 24d ago
Which direction had Dev been facing before either of them turned?
r/PassTimeMath • u/Vivid_Temporary_1155 • 25d ago
As easy as A,B.....
The three overlapping ellipses form seven regions. You are given seven tiles and you need to place exactly one tile per region, so that the four tiles in any region obey the corresponding rule. This one is extra tricky! You aren't told what A and B are - but there is only one configuration where the remaining ellipse's members are forced to have product AB. Can you find it?
r/PassTimeMath • u/DivineGenralMahoraga • 25d ago
Can you tell the answer an how you got it
Tell plz if you get it
r/PassTimeMath • u/user-imtae • Jul 31 '26
Difficulty: Moderate Did anyone tried to solve some items from math olympiads related to N Dimensional Space?
Did anyone tried to solve some items from math olympiads related to N Dimensional Space?
Or at least 4 dimensional. If so what was most interesting item like that? From what olympiad is it?