a. An inequality of the form a x 2 + b x + c > 0 or a x 2 + b x + c < 0 is an example of a _____________ inequality. b. The boundary points of an inequality consist of the real __________ to the related equation and the points where the inequality is _______________. c. In solving an inequality by using the ___________ __________ method, a point is selected from each interval formed by the boundary points and substituted into the original inequality. d. If a test point makes the original inequality ______________, then that interval is part of the solution set. e. The inequality 4 x + 7 > 0 is an example of a __________ inequality. f. The solution set to a rational inequality must exclude all values that make the denominator equal to ______________ for any rational expression in the inequality.
a. An inequality of the form a x 2 + b x + c > 0 or a x 2 + b x + c < 0 is an example of a _____________ inequality. b. The boundary points of an inequality consist of the real __________ to the related equation and the points where the inequality is _______________. c. In solving an inequality by using the ___________ __________ method, a point is selected from each interval formed by the boundary points and substituted into the original inequality. d. If a test point makes the original inequality ______________, then that interval is part of the solution set. e. The inequality 4 x + 7 > 0 is an example of a __________ inequality. f. The solution set to a rational inequality must exclude all values that make the denominator equal to ______________ for any rational expression in the inequality.
Solution Summary: The author explains the boundary points of an inequality consist of the real solutions to the related equation and the points where the inequality is undefined.
a. An inequality of the form
a
x
2
+
b
x
+
c
>
0
or
a
x
2
+
b
x
+
c
<
0
is an example of a _____________ inequality.
b. The boundary points of an inequality consist of the real __________ to the related equation and the points where the inequality is _______________.
c. In solving an inequality by using the ___________ __________ method, a point is selected from each interval formed by the boundary points and substituted into the original inequality.
d. If a test point makes the original inequality ______________, then that interval is part of the solution set.
e. The inequality
4
x
+
7
>
0
is an example of a __________ inequality.
f. The solution set to a rational inequality must exclude all values that make the denominator equal to ______________ for any rational expression in the inequality.
1. For the following subsets of R3, explain whether or not they are a subspace of R³.
(a)
(b)
1.1
0.65
U
= span
-3.4
0.23
0.4
-0.44
0
(})}
a
V
{(2) | ER
(c) Z= the points in the z-axis
Solve the following equation forx.
leave
answer in
Simplified radical form.
5x²-4x-3=6
MATCHING LIST
Question 6
Listen
Use the given equations and their discriminants to match them to the type and
number of solutions.
00
ed
two irrational solutions
a. x²+10x-2=-24
two rational solutions
b. 8x²+11x-3=7
one rational solution
c. 3x²+2x+7=2
two non-real solutions
d. x²+12x+45 = 9
DELL
FLOWER
CHILD
10/20
All Changes S
$681 22991
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