Proof Let V and W be two subspaces of vector space U . ( a ) Prove that the set V + W = { u : u = v + w , v ∈ V and w ∈ W } is a subspace of U . ( b ) Describe V + W when V and W are subspaces of U = R 2 : V = { ( x , 0 ) : x is a real number } and W = { ( 0 , y ) : y is a real number } .
Proof Let V and W be two subspaces of vector space U . ( a ) Prove that the set V + W = { u : u = v + w , v ∈ V and w ∈ W } is a subspace of U . ( b ) Describe V + W when V and W are subspaces of U = R 2 : V = { ( x , 0 ) : x is a real number } and W = { ( 0 , y ) : y is a real number } .
Solution Summary: The author proves that the set V+W is a subspace of vector space U.
Proof Let
V
and
W
be two subspaces of vector space
U
.
(
a
)
Prove that the set
V
+
W
=
{
u
:
u
=
v
+
w
,
v
∈
V
and
w
∈
W
}
is a subspace of
U
.
(
b
)
Describe
V
+
W
when
V
and
W
are subspaces of
U
=
R
2
:
V
=
{
(
x
,
0
)
:
x
is
a
real
number
}
and
W
=
{
(
0
,
y
)
:
y
is
a
real
number
}
.
Quantities that have magnitude and direction but not position. Some examples of vectors are velocity, displacement, acceleration, and force. They are sometimes called Euclidean or spatial vectors.
A local company has a 6 person management team and 20 employees. The company needs to select 3 people from the management team and 7 employees to attend a regional meeting. How many different possibilities are there for the group that can be sent to the regional meeting?
I have 15 outfits to select from to pack for my business trip. I would like to select three of them to pack in my suitcase. How many packing possibilities are there?
There are 15 candidates running for any of 5 distinct positions on the local school board. In how many different ways could the 5 positions be filled?
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, algebra and related others by exploring similar questions and additional content below.