Is Every Group with Only Cyclic Subgroups Itself Cyclic?

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Homework Help Overview

The discussion revolves around group theory, specifically examining properties of groups based on their subgroups. The original poster seeks to understand whether a group is cyclic if all its subgroups are cyclic, and whether every group of order 6 is commutative.

Discussion Character

  • Exploratory, Conceptual clarification, Problem interpretation

Approaches and Questions Raised

  • Participants explore the implications of groups having only cyclic subgroups and question whether the whole group must also be cyclic. They also discuss the characteristics of groups of order 6 and consider potential counterexamples.

Discussion Status

Participants are actively engaging with the questions, offering insights and counterexamples. Some have provided reasoning related to group orders and subgroup properties, while others express uncertainty about how to approach the proofs.

Contextual Notes

There is a mention of assumptions regarding whether the group itself is included as a subgroup, and the discussion touches on specific examples like the dihedral group and groups of prime order.

margaret23
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I m having trouble with a couple group theory proofs. I just have no clue how to start. If u could put me on the right path that would be great.

first

prove of disprove that if every subgroup of a group G is cyclic, then G is cyclic.

and second

prove or disprove that every group X of order 6 is communtative.
 
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For the first, I'm assuming G doesn't count as a subgroup of itself. What are your thoughts on whether these are true or not?
 
the question doesn't state that its not including the whole group as a subgroup, however i think that its safe to assume that they want it proved without.

I' m thinking from what i know about groups that the first one is true.. and that the second one is false.

I think that the second one probably has a counter example somewhat like the quaternions, Q8.

but i don't really know what else to look at.
 
For the first, remember that every group of prime order is cyclic. So if you had a group of order pq, where p and q are prime, all its proper subgroups must have order p, q, or 1, and so must be cyclic. Are all such groups cyclic?

For the second, can you list all the groups of order 6? There are actually very few of them.
 
There are actually 2 of them, and since it is trivial to write down two non-isomorphic groups of order 6... (and any proper subgroup of them is cyclic, by the way, by Lagrange's theorem)
 
Last edited:
Thanks for the help on the second one .. it makes sense now.. for the first question about proving that if all subgroups are cyclic then the group is cyclic. I would think that its true however i do not know how to start the proof. Could you put me on the right track again?? thanks
 
margaret23 said:
first

prove of disprove that if every subgroup of a group G is cyclic, then G is cyclic.

and second

prove or disprove that every group X of order 6 is communtative.

i think you can actually use the second part to prove the first :wink:
 
If you have the answer to the second question, then you have a counterexample to the first question.
 
ha i beat you to it :-p
 
  • #10
my counter example to the second one is the diherdral group containing the permentation of 3 elements. i m having trouble rapping my mind around how this is cyclic.. i ve delt a lot with simpler groups like the intergers mod n , i don't quite understand what makes my counter example cyclic if infact it is.. ?
 
  • #11
ps.. thanks
 
  • #12
You are trying to prove or disprove that if every subgroup of a group G is cyclic, then G is cyclic.

Take the group that you found. What do you know about its subgroups?

BTW - This group is not cyclic, as you have said.
 
  • #13
Thanks soo much
 
  • #14
By definition a group of order n is cyclic if and only if it has an element of order n. The group you have (S_3, or D_3, it's called) has only 6 elements. You can write them all down and work out their orders.
 

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