Determine whether the set, together with the indicated operations, is a vector space. If it is not, then identify one of the vector space axioms that fails. The set of all 4 x 4 matrices of the form 0аса bo ac b b o b сас 1 with the standard operations O The set is a vector space. O The set is not a vector space because it is not closed under addition. O The set is not a vector space because it does not satisfy the associative property of addition. O The set is not a vector space because a scalar identity does not exist. O The set is not a vector space because it does not satisfy the distributive property.

Linear Algebra: A Modern Introduction
4th Edition
ISBN:9781285463247
Author:David Poole
Publisher:David Poole
Chapter6: Vector Spaces
Section6.1: Vector Spaces And Subspaces
Problem 2EQ
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Determine whether the set, together with the indicated operations, is a vector space. If it is not, then identify one of the vector space axioms that fails.
The set of all| 4 × 4 matrices of the form
0аса
b 0 a c
b b o b
сас 1
with the standard operations
O The set is a vector space.
O The set is not a vector space because it is not closed under addition.
The set is not a vector space because it does not satisfy the associative property of addition.
O The set is not a vector space because a scalar identity does not exist.
O The set is not a vector space because it does not satisfy the distributive property.
O O C
Transcribed Image Text:Determine whether the set, together with the indicated operations, is a vector space. If it is not, then identify one of the vector space axioms that fails. The set of all| 4 × 4 matrices of the form 0аса b 0 a c b b o b сас 1 with the standard operations O The set is a vector space. O The set is not a vector space because it is not closed under addition. The set is not a vector space because it does not satisfy the associative property of addition. O The set is not a vector space because a scalar identity does not exist. O The set is not a vector space because it does not satisfy the distributive property. O O C
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