796
I dunno
(piefed.cdn.blahaj.zone)
A place for majestic STEMLORD peacocking, as well as memes about the realities of working in a lab.

Rules
Yes it does! 😂
No, it doesn't. A Product is the result of Multiplication. If a=2 and b=3, axb=ab, 2x3=6, axb=2x3, ab=6. 3(x-y) is 1 term, 3x-3y is 2 terms...
No it isn't. 2(3+5)² is 1 term, 2x(3+5)² is 2 terms
They don't - you still have an undistributed coefficient, 2(8)
Not until you've Distributed and Simplified they aren't
if you want to remove the brackets, YES, that's what the Brackets step is for, duh! 😂 The textbook above says to Distribute first, then Simplify.
As in 2(8)=(2x8) and 2(3+5)=(6+10) is multiple Terms inside 😂
Nope! The Brackets step, duh 😂 You cannot progress until all Brackets have been removed
It doesn't have a higher priority than Brackets! 🤣
says person who can't cite any textbooks that agree with them, so their whole argument hangs on all Maths textbooks are wrong but can't say why, 😂 wrongly calls Products "Multiplication", and claimed that I invented a rule that is in an 1898 textbook! 🤣 And has also failed to come up with any alterative "interpretations" of "must" and "Brackets" that don't mean, you know, must and brackets 😂
says the Bible fanatic, who in this case can't even show me what it says in The Bible (Maths textbooks) that agrees with them 😂
provide me a Maths textbook that says 8/2(1+3)=16 and you’ve won, it’s so easy no? 🤣
And in the meantime, here's one saying it's 1, because x(x-1) is a single Term...
https://youtu.be/xoZzHMoB5qA
This is a college textbook, and that explains how to solve it.
Another example: https://stemjock.com/STEM%20Books/OpenStax%20CA%202e/Chapter%201/Section%201/OSCACh1s1e32.pdf
Alternatively, here is another example: https://www.kingphilip.org/wp-content/uploads/2021/07/Supplemental_Topics_from_Algebra_1.pdf
In case you can't find the correct part:
It's a college refresher course on high school Maths. They also forgot to cover The Distributive Law, which is not unusual given college Professors don't actually teach high school Maths.
From the same refresher course 🙄
Which also doesn't cover The Distributive Law, which isn't surprising given that chapter isn't even about order of operations! 😂
Still not about a(b+c). You lot are investing so much effort into such an obvious False Equivalence argument it's hilarious! 😂
Don't move the goalposts. I've posted textbooks showing that "solving brackets" only applies to the inside, and distribution is part of multiplication and optional.
You've said yourself your magic rule is taught in highschool, so a refresher course in college would never ignore it.
Now instead of giving weak excuses, provide your part of the proof. And I'm not talking about multiplication, I want to see anywhere where a distribution is given precedence over an exponent.