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Natali [406]
2 years ago
5

the trinomial x2 bx c factors to (x m)(x n). if b is negative and c is positive, what must be true about m and n?

Mathematics
2 answers:
tiny-mole [99]2 years ago
8 0

Answer:

Both m and n should be negative

Step-by-step explanation:

(x - m)(x - n) = x^{2} -(m + n)x + mn

Comparing this with

x^{2} -bx+c, we get,

b = m + n and c = mn

We have been given that c should be positive. So, we have two cases:

1. Both m and n should be positive and

2. Both m and n should be negative

<u>Case 1: Both m and n are positive</u>

If both m and n are positive, then so is mn = c.

But, note that m + n (= b) will also be positive. But, it is given that b should be negative. So, this case is not possible.

<u>Case 2: Both m and n are negative</u>

If both m and n are negative, then mn (= c) is positive.

Also, m + n (= b) is negative.

Hence, this is the correct case.

galina1969 [7]2 years ago
7 0

For c to be positive, and for b to be negative, m must be negative and n must be negative.


X^2 - bx + c = (x - m)(x - n).

c is the product of m and n. If both m and n are positive, c would be positive. However b is the sum of m and n, therefore to make b negative, both m and n must be negative to ensure that the product of m and n is positive


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Natali5045456 [20]

Answer:

The simple answer is 21

Step-by-step explanation:

In the picture if u calculate where the line is heading when it reaches the 3 look at the footballs and you'll see 21,3. Hope it helps and mark as brain list

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2 years ago
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Bella bought 3.2 meters of ribbon to decorate her pencil case. each meter cost $0.46. how much did the ribbon cost?
zlopas [31]

we know that

Each meter of ribbon cost \$0.46  

so

by proportion

Find the cost of 3.2 meters of ribbon

\frac{0.46}{1} \frac{\$}{meter} =\frac{x}{3.2} \frac{\$}{meter} \\ \\x=3.2*0.46 \\ \\x=\$1.472

therefore

<u>the answer is</u>

The ribbon cost \$1.472


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2 years ago
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Given: △AFD, m∠F=90°<br> DF=7√3 , m∠D=30°<br> Find: Area of △AFD
Aliun [14]

Using the definition of the tangent function, you can find ...

... FA = DF·tan(30°) = (7√3)·(1/√3) = 7

Then the usual formula for triangle area can be used:

... Area = (1/2)bh = (1/2)·(7√3)(7)

... Area = (49/2)√3 square units

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4 0
2 years ago
Ice Cream Scoops - In shops with lots of ice-cream flavors there are many different flavor combinations, even with only a 2-scoo
blondinia [14]

Answer:

The general formula that can be used to find the required combinations for n flavor ice-cream.

N_n = \frac{n(n+1)}{2}

For 10 ice-cream flavors

N_{10} = \frac{10(10+1)}{2}

N_{10} = 55

Step-by-step explanation:

Let V = Vanila, C = Chocolate, S = Strawberry, P = Pineapple, B = Berry

2 ice-cream flavor:

V, C

{V/V, V/C, C/C}

3 possible combinations

3 ice-cream flavor:

V, C, S

{V/V, V/C, V/S, C/S, C/C, S/S}

6 possible combinations

4 ice-cream flavor:

V, C, S, P

{V/V, V/C, V/S, V/P, C/S, C/P, S/P, C/C, S/S, P/P}

10 possible combinations

5 ice-cream flavor:

V, C, S, P, B

{V/V, V/C, V/S, V/P, V/B, C/S, C/P, C/B, S/P, S/B, P/B, C/C, S/S, P/P, B/B }

15 possible combinations

So we have a series of

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1 + 2 + 3 + 4 + 5 = 15

The general formula for this series is

N_n = \frac{n(n+1)}{2}

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N_{10} = \frac{10(10+1)}{2}

N_{10} = 55

Therefore, there are 55 different combinations of 2-scoop  with 10 flavors.

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Inessa05 [86]
The answer is C because it shows you
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