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monitta
3 years ago
13

PLEASE HELP THIS IS DUE IN LIKE, AN HOUR DX Plz explain your answer. Or dont.

Mathematics
1 answer:
mario62 [17]3 years ago
8 0
Simply multiply the number of students by the percentage as a decimal: 10% multiply by .1

Baby-sitting: 308 students (1400 x .22)
Sports: 364 students (1400x .26)
Job: 210 students (1400 x .15)
At home: 140 students (1400 x .1)
Tutoring: 140 students (1400 x .1)
Other: 238 students (1400 x .17)
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The center of the circle is in the middle of the circle

X is the center of the circle

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(I have to check 2) Which of the following statements are true? Check all that apply.
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The true statements are B and C

5 0
3 years ago
If possible, carry some factor outside the root sign: Radical please help
krek1111 [17]

Step-by-step explanation:

For the square roots, write the radicand as a multiple of a perfect square.  For example:

√27 = √(9 × 3) = 3√3

√72 = √(36 × 2) = 6√2

√¾ = √(¼ × 3) = ½√3

For the cube roots, write the radicand as a multiple of a perfect cube.  For example:

∛16 = ∛(8 × 2) = 2∛2

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6 0
4 years ago
Which of the following is a root of the polynomial function below?<br> F(x) = x+3x2 + 4x+12
Valentin [98]

Answer:

\frac{-5-i\sqrt{139}}{6},\ \frac{-5+i\sqrt{139}}{6}}

Step-by-step explanation:

When given the following function,

F(x)=x+3x^2+4x+12

One is asked to find the roots. The roots of the equation are the zeros, where the graph of the equation intersects the (x) axis. To find these points on a quadratic equation (equation to the second degree -> the largest exponent in this equation is (2)), one should simplify the equation. Remember, during simplification, one is trying to get the equation of the parabola closets to the quadratic equation in standard form, this form is the following,

y=ax^2+bx+c

After simplifying the equation, one should use the quadratic formula to find the roots of the equation.

------------------------------------

F(x)=x+3x^2+4x+12

Simplify, combine like terms, terms with the same variable to the same degree;

F(x)=3x^2+5x+12

Now use the quadratic formula, the quadratic formula states the following,

\frac{-b(+-)\sqrt{b^2-4ac}}{2a}

Where the parameters (a), (b, and (c) represent the coefficients of the terms in the quadratic formula in standard form. Substitute in the respective coefficients in the given equation and solve for the roots,

\frac{-(5)(+-)\sqrt{(5)^2-4(3)(12)}}{2(3)}

Simplify,

\frac{-(5)(+-)\sqrt{(5)^2-4(3)(12)}}{2(3)}\\\\=\frac{-5(+-)\sqrt{25-144}}{6}\\\\=\frac{-5(+-)\sqrt{-139}}{6}\\\\=\frac{-5(+-)i\sqrt{139}}{6}

5 0
3 years ago
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