Trace of a matrix In Exercises 63-66, find the trace of the matrix. The trace of an n × n matrix A is the sum of the main diagonal entries. That is, T r A = a 11 + a 22 + … + a n n . 1 2 3 0 - 2 4 3 1 3
Trace of a matrix In Exercises 63-66, find the trace of the matrix. The trace of an n × n matrix A is the sum of the main diagonal entries. That is, T r A = a 11 + a 22 + … + a n n . 1 2 3 0 - 2 4 3 1 3
Solution Summary: The author explains that the trace of the matrix left[cc1& 2& 3 0& -2& 4 3& 1
Trace of a matrix In Exercises 63-66, find the trace of the matrix. The trace of an
n
×
n
matrix
A
is the sum of the main diagonal entries. That is,
T
r
A
=
a
11
+
a
22
+
…
+
a
n
n
.
Please draw a graph that represents the system of equations f(x) = x2 + 2x + 2 and g(x) = –x2 + 2x + 4?
Given the following system of equations and its graph below, what can be determined about the slopes and y-intercepts of the system of equations?
7
y
6
5
4
3
2
-6-5-4-3-2-1
1+
-2
1 2 3 4 5 6
x + 2y = 8
2x + 4y = 12
The slopes are different, and the y-intercepts are different.
The slopes are different, and the y-intercepts are the same.
The slopes are the same, and the y-intercepts are different.
O The slopes are the same, and the y-intercepts are the same.
Choose the function to match the graph.
-2-
0
-7
-8
-9
--10-
|--11-
-12-
f(x) = log x + 5
f(x) = log x - 5
f(x) = log (x+5)
f(x) = log (x-5)
9
10
11
12
13 14
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