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301.11D The Fundamental Theorem of Finite Abelian Groups 

Matthew Salomone
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How to use the fundamental theorem of finite abelian groups to determine a complete list of abelian groups of a given order. Then, how to refine your list using additional information.

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5 окт 2024

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Комментарии : 10   
@inscitia
@inscitia 11 месяцев назад
Thank you for your videos! I have been watching them for a few years now and they are really great.
@Drewage222
@Drewage222 4 года назад
Oh my, I wish I found this video sooner. This hammers home the concepts for me.
@AlexLee-vu5bo
@AlexLee-vu5bo 3 года назад
great video, the info is very compact, not wasting time at all all arguments are clear and well explained thanks!!!
@PunmasterSTP
@PunmasterSTP Месяц назад
It's kind of fun that we get to play this kind of "game" where we factor primes and do logic puzzles right at the end of the playlist. It really did cover a ton of different topics!
@thuann2cats
@thuann2cats Год назад
thank you Professor!!
@stapleman007
@stapleman007 2 года назад
7:18 Matthematician consults the Akashic Record to construct enlightened examples.
@g.a.yogatriutama6405
@g.a.yogatriutama6405 4 года назад
Could you give us the modul?
@aeronking3048
@aeronking3048 3 года назад
How about LCM 24= 4x6
@jamiepayton1574
@jamiepayton1574 3 года назад
We only use prime powers for this expression. 6 is not a prime power since its prime factorisation is 2*3.
@alejandrocolompujol7515
@alejandrocolompujol7515 2 года назад
I think LCM of 4 and 6 is 12, it's not 24 :)
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