Let ℝ + be the set of positive real numbers. On ℝ + we define the “exotic” operations x ⊕ y = x y (usual multiplication) and k ⊙ x = x k . a. Show that ℝ + with these operations is a linear space; find a basis of this space. b. Show that T ( x ) = ln ( x ) is a linear transformation from ℝ + to ℝ , where ℝ is endowed with the ordinary operations. Is T an isomorphism?
Let ℝ + be the set of positive real numbers. On ℝ + we define the “exotic” operations x ⊕ y = x y (usual multiplication) and k ⊙ x = x k . a. Show that ℝ + with these operations is a linear space; find a basis of this space. b. Show that T ( x ) = ln ( x ) is a linear transformation from ℝ + to ℝ , where ℝ is endowed with the ordinary operations. Is T an isomorphism?
Solution Summary: The author explains that the set R+ with the exotic operations is a linear space and also find the basis of this space.
Let
ℝ
+
be the set of positive real numbers. On
ℝ
+
we define the “exotic” operations
x
⊕
y
=
x
y
(usual multiplication) and
k
⊙
x
=
x
k
. a. Show that
ℝ
+
with these operations is a linear space; find a basis of this space. b. Show that
T
(
x
)
=
ln
(
x
)
is a linear transformation from
ℝ
+
to
ℝ
, where
ℝ
is endowed with the ordinary operations. Is T an isomorphism?
A research study in the year 2009 found that there were 2760 coyotes
in a given region. The coyote population declined at a rate of 5.8%
each year.
How many fewer coyotes were there in 2024 than in 2015?
Explain in at least one sentence how you solved the problem. Show
your work. Round your answer to the nearest whole number.
Answer the following questions related to the following matrix
A =
3
³).
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Linear Equation | Solving Linear Equations | What is Linear Equation in one variable ?; Author: Najam Academy;https://www.youtube.com/watch?v=tHm3X_Ta_iE;License: Standard YouTube License, CC-BY