4. Consider o = (123)(45)(761) in S, (a) Find the cycle of decomposition of o. 3 2 = (1762 3)(4 5) (7 3 1 4 (b) Find o-1. o-1 = (3 2 6 7 1)(4 5) %3D (c) Express o as a product of transpositions. (d) Find the order of o. The cycle type here is the unordered integer partition 7 = 5 + 2. The order of the permutation ơ is lcm 5,2 = 10 (e) For this o, write down the set N and its partition into equivalence classes for the equivalence relation defined in the previous problem.

Linear Algebra: A Modern Introduction
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ISBN:9781285463247
Author:David Poole
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Chapter4: Eigenvalues And Eigenvectors
Section4.6: Applications And The Perron-frobenius Theorem
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Need help with 4c, e. e uses equivilence relation from previous problem 3 which I have included. Thankyou.

4. Consider o =
(123)(45)(761) in S,
(a) Find the cycle of decomposition of o.
7
= (1762 3)(4 5)
6.
1
2
3 4 5 6
(7 3 1 5 4
(b) Find o-1.
o-1 = (3 26 7 1)(4 5)
(c) Express o as a product of transpositions.
(d) Find the order of o.
The cycle type here is the unordered integer partition 7 = 5 + 2.
The order of the permutation o is lcm 5,2
10
(e) For this o, write down the set 2 and its partition into equivalence classes for the
equivalence relation defined in the previous problem.
Transcribed Image Text:4. Consider o = (123)(45)(761) in S, (a) Find the cycle of decomposition of o. 7 = (1762 3)(4 5) 6. 1 2 3 4 5 6 (7 3 1 5 4 (b) Find o-1. o-1 = (3 26 7 1)(4 5) (c) Express o as a product of transpositions. (d) Find the order of o. The cycle type here is the unordered integer partition 7 = 5 + 2. The order of the permutation o is lcm 5,2 10 (e) For this o, write down the set 2 and its partition into equivalence classes for the equivalence relation defined in the previous problem.
3. Let N be a nonempty set and o a permutation of 2. Define a relation ~
a~b if and only if b = ~ is an equivalence relation and write
down the elements of the equivalence class of a E N.
on N as follows:
= o"(a) for some n E Z. Show that
Transcribed Image Text:3. Let N be a nonempty set and o a permutation of 2. Define a relation ~ a~b if and only if b = ~ is an equivalence relation and write down the elements of the equivalence class of a E N. on N as follows: = o"(a) for some n E Z. Show that
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