The graph shows the enrollment in U.S. colleges and universities by gender and by near form 1970 to 2010. (Source: www.census.gov) The function defined by F ( x ) = 0.17 x + 3.8 represents the number of women in college (in millions), x years after 1970. M ( x ) = 0.086 x + 4.48 represents the number of men in college (in millions), x years after 1970. Solve the equation and inequalities and interpret the meaning of the solution sets in the context of this problem. a. F ( x ) = M ( x ) b. F ( x ) < M ( x ) c. F ( x ) > M ( x )
The graph shows the enrollment in U.S. colleges and universities by gender and by near form 1970 to 2010. (Source: www.census.gov) The function defined by F ( x ) = 0.17 x + 3.8 represents the number of women in college (in millions), x years after 1970. M ( x ) = 0.086 x + 4.48 represents the number of men in college (in millions), x years after 1970. Solve the equation and inequalities and interpret the meaning of the solution sets in the context of this problem. a. F ( x ) = M ( x ) b. F ( x ) < M ( x ) c. F ( x ) > M ( x )
Solution Summary: The author analyzes the graph showing the enrollment in U.S. colleges and universities by gender and by year from 1970 to 2010.
The graph shows the enrollment in U.S. colleges and universities by gender and by near form 1970 to 2010. (Source: www.census.gov) The function defined by
F
(
x
)
=
0.17
x
+
3.8
represents the number of women in college (in millions), x years after 1970.
M
(
x
)
=
0.086
x
+
4.48
represents the number of men in college (in millions), x years after 1970. Solve the equation and inequalities and interpret the meaning of the solution sets in the context of this problem.
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Determine if the values of the variables listed are solutions of the system of equations.
2x - y = 4
3x+5y= - 6
x=1, y = 2; (1,-2)
Is (1, 2) a solution of the system of equations?
L
No
Yes
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10. A sound wave's amplitude can be modeled by the function y = −7 sin ((x-1) + 4). Within the interval 0 < x < 12, when does the function have an amplitude
of 4? (Select all that apply.)
9.522 seconds
4.199 seconds
0.522 seconds
1.199 seconds
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