10 Three functions, f(x) = 8x + 2, g(x) = 2xº, and h(x) = 2 – 2 are graphed below on the same coordinate plane below. %3D %3D Which statement regarding f(x), g(x), and h(x) is true? (1) f(x) > g(x) for all x> 0. (2) g(x) > h(x) for all x> 0. (3) h(x) eventually exceeds g(x) but not f(x). (4) h(x) eventually exceeds both f(x) and g(x).

Algebra and Trigonometry (6th Edition)
6th Edition
ISBN:9780134463216
Author:Robert F. Blitzer
Publisher:Robert F. Blitzer
ChapterP: Prerequisites: Fundamental Concepts Of Algebra
Section: Chapter Questions
Problem 1MCCP: In Exercises 1-25, simplify the given expression or perform the indicated operation (and simplify,...
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For question 10 what answer is correct?
compete.
After each round of the tournament, half of the
teams remain, as shown in the accompanying table.
Number of
teams, t,
remaining
Round, r
64
に4105)
1
32
2.
16
3
8
Which equation models the relationship between the round
and the number of teams remaining?
16=16
(1) t= 64(0.5)
Thre
(3) t= 64(0.5)-
(2) t= 64(2)r
(4) t= 64(2)-
10 Three functions, f(x) = 8x + 2, g(x) = 2xº, and h(x) = 2* – 2 are
graphed below on the same coordinate plane below.
Which statement regarding f(x), g(x), and h(x) is true?
(1) f(x) > g(x) for all x> 0.
(2) g(x) > h(x) for all x> 0.
(3) h(x) eventually exceeds g(x) but not f(x).
(4) h(x) eventually exceeds both f(x) and g(x).
Transcribed Image Text:compete. After each round of the tournament, half of the teams remain, as shown in the accompanying table. Number of teams, t, remaining Round, r 64 に4105) 1 32 2. 16 3 8 Which equation models the relationship between the round and the number of teams remaining? 16=16 (1) t= 64(0.5) Thre (3) t= 64(0.5)- (2) t= 64(2)r (4) t= 64(2)- 10 Three functions, f(x) = 8x + 2, g(x) = 2xº, and h(x) = 2* – 2 are graphed below on the same coordinate plane below. Which statement regarding f(x), g(x), and h(x) is true? (1) f(x) > g(x) for all x> 0. (2) g(x) > h(x) for all x> 0. (3) h(x) eventually exceeds g(x) but not f(x). (4) h(x) eventually exceeds both f(x) and g(x).
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