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anonymous
 one year ago
can anyone proofread PRE ALGEBRA WORK?
anonymous
 one year ago
can anyone proofread PRE ALGEBRA WORK?

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anonymous
 one year ago
Best ResponseYou've already chosen the best response.0Remember the property I showed you for your previous question \[\huge (x^m)^n \implies x^{mn}\]

Nnesha
 one year ago
Best ResponseYou've already chosen the best response.1when you multiply same bases you should `add` their exponents \[\huge\rm x^m \times x^n=x^{m + n}\] when you divide same bases yo should subtract their exponents \[\huge\rm \frac{ x^m }{ x^n }=x^{mn}\] \[\huge\rm (x^m)^n=x^{m \times n}\]

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0omg i should give a medal to all of yu

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0thanks to all of you

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0guys..... it was not the correct answer :OO

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0Which one did you pick?

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0Look at what we wrote above, your answer should be A. \[\huge (5^3)^{4} \implies 5^{3 \times 4} = 5^{12}\]

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0oh well. i got an 80%

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0i fergot to change my answer

Nnesha
 one year ago
Best ResponseYou've already chosen the best response.1it's okay. h.w question right ? so ithats fine

anonymous
 one year ago
Best ResponseYou've already chosen the best response.0Ok no worries! Long as you learnt hehe!

Nnesha
 one year ago
Best ResponseYou've already chosen the best response.1haha smart! nice job! :=)
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