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04:54
All four currently negatively voted answers on this page fail to address the OP's question; they are mostly reiterating what the OP already said/premised in their question.
 
3 hours later…
07:44
I suggest to close this Conjecture about improving the Cauchy–Bunyakovsky–Schwarz inequality. It is a seemingly random conjecture without motivation or background. I tried to explain in the comments that it is just an obfuscated version of (but equivalent to) the CBS inequality, but apparently did not succeed.
08:13
-1
Q: Is this proof of riemann hypothesisis correct?

Souvik PurkayasthaFrom riemann functional equation Zeta(s)=zeta(1-s) So if zeta(s)=0 Zeta(1-s)=0 So s=1-s s=1/2 So whenever zeta(s)=0 its real part is always 1/2 Is it correct i feel its not correct?

@MartinR User just deleted this question.
 
3 hours later…
Joe
Joe
10:49
@ryang: Thank you for clearing my question up. Both of the remaining upvoted answers are useful and correct.
 
2 hours later…
12:21
@Joe Sure; great!
12:38
0
Q: $3n+3$ conjecture

DaBlerWhile working on the Collatz problem, I came across this answer. I understand everything except for one thing: that for $n$ odd running Collatz2($n$) is exactly like running Collatz($n+1$). I understand that the first iteration of Collatz2 takes us to $3n+3$ which is a multiple of 3. However, I d...

 
2 hours later…
15:01
@user1729 And now they undeleted the question again and put a bounty on it. Sigh ...
 
9 hours later…
23:34
0
Q: Questions about a (possibly) new way to look at loops in the Collatz conjecture.

Benjamin TrumpyI was watching youtube videos about maths and thinking about the Collatz conjecture and the video happened to be about the golden ratio and how it was discovered. It was first thought of as an infinite equation of $$1+\frac{1}{1+\frac{1}{1+\frac{1}{1+...}}}$$ So on and so forth. instead of trying...

[ SmokeDetector | MS ] Few unique characters in body, no whitespace in body, no whitespace in title, repeating characters in body, repeating characters in title (388): aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa ✏️‭ by JHumpdos‭ on math.SE

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