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Q: Does every finite order greater than zero have at least one abelian group?
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Is every finite abelian group is cyclic?

No, for instance the Klein group is finite and abelian but not cyclic. Even more groups can be found having this chariacteristic for instance Z9 x Z9 is abelian but not cyclic


Is every abelian group is cyclic or not and why?

every abelian group is not cyclic. e.g, set of (Q,+) it is an abelian group but not cyclic.


Is every abelian group is cyclic or not?

No.


Is every solvable group abelian?

No.


Is the symmetry group of the square an abelian group?

Abelian meaning commutative. If the symmetry group of a square is commutative then it's an abelian group or else it's not.


Prove that a group of order three is abelian?

By LaGrange's Thm., the order of an element of a group must divide the order of the group. Since 3 is prime, up to isomorphism, the only group of order three is {1,x,x^2} where x^3=1. Note that this is a finite cyclic group. Since all cyclic groups are abelian, because they can be modeled by addition mod an integer, the group of order 3 is abelian.


What is the definition of an abelian group?

An abelian group is a group in which ab = ba for all members a and b of the group.


Every finite group is isomorphic to a permutation group?

yes form cayleys theorem . every group is isomorphic to groups of permutation and finite groups are not an exception.


Is every cyclic group abelian?

Yes. Lets call the generator of the group z, then every element of the group can be written as zk for some k. Then the product of two elements is: zkzm=zk+m Notice though that then zmzk=zm+k=zk+m=zkzm, so the group is indeed abelian.


What is an Abelian?

An abelianization is a homomorphism which transforms a group into an abelian group.


Is a group of order 24 abelian group or not?

The abelian groups of order 24 are C3xC8, C2xC12, C2xC2xC6. There are other 12 non-abelian groups of order 24


What does the term abelian mean?

The term abelian is most commonly encountered in group theory, where it refers to a specific type of group known as an abelian group. An abelian group, simply put, is a commutative group, meaning that when the group operation is applied to two elements of the group, the order of the elements doesn't matter.For example:Let G be a group with multiplication * or addition +. If, for any two elements a, b Є G, a*b = b*a or a + b = b + a, then we call the group abelian.There are other uses of the term abelian in other fields of math, and most of the time, the idea of commutativity is involved.The term is named after the mathematician, Niels Abel.