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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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There are 5,280 feet in a mile. What part of a mile, in decimal form, will you drive until you reach the exit.
nalin [4]

Answer:

= 0.1893939

Step-by-step explanation:

We have given that there are 5,280 feet in a mile.

Number of feet in a mile = 5,280

Now we will convert feet into miles.

To convert 1000 feet into mile we will multiply  it by 1/5280

1000 feet = 1000 * 1/5280

1000/5280

= 0.1893939

Therefore the answer is = 0.1893939....

4 0
1 year ago
A company’s equipment manager buys $7,000 worth of equipment. This equipment depreciates 19% each year. The manager can replace
kolezko [41]

Answer:

13 (c)

Step-by-step explanation:

Graph the equation 7000(1-0.19)^x and then the inequality y<500, the point of intersection should be 12.524, so the answer will be rounded up to 13 i think

7 0
1 year ago
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Round 96.9617186007 to the nearest tenth.
Pavlova-9 [17]

if you're talking about the whole number, 100.96. if you're referring to decimal place values; 96.70.

underline the digit that you round to

circle the digit to the right

five or more goes up

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everything behind becomes a zero.

6 0
2 years ago
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The formula P = 0.68x2 - 0.048x + 1 models the approximate population P, in thousands, for a species of fish in a local pond, x
marshall27 [118]

Answer:

The answer to your question is 2184

Step-by-step explanation:

Data

Equation    P(x) = 0.68x² - 0.048x + 1

x = years

population = 33984

Process

1.- Substitute the population in the equation

                   33984 = 0.84x² - 0.048x + 1

2.- Equal to zero

                   0.84x² - 0.048x + 1 - 33984 = 0

3.- Simplify

                    0.84x² - 0.048x - 33983 = 0

4.- Solve for x

x = \frac{0.048 +- \sqrt{(0.048^{2}) - (4)(0.84)(-33982)}}{2(0.84)}

x = \frac{0.048 +- \sqrt{337.9}}{1.68}

x1 = 201.2

x2 = -201.2

Only x1 is correct because time can not be negative

5.- Calculate the year

Year = 1997 + 201

Year = 2184

8 0
1 year ago
A third-degree polynomial function f has real zeros -2, ½, and 3, and its leading coefficient is negative. Write an equation for
prisoha [69]
<h3>Answer:</h3>
  1. f(x) = -2x^3 +3x^2 +11x -6
  2. see attached
  3. an infinite number. Since the magnitude of the leading coefficient is not specified, it may be any negative number. (We have chosen the smallest magnitude integer that makes all coefficients be integers.)
<h3>Step-by-step explanation:</h3>

1. When "a" is a root of a polynomial, (x -a) is a factor of it. For the three roots given, the factors of the desired polynomial are (x +2)(x -1/2)(x -3).

In order to make the leading coefficient be negative, we need to multiply this product by a negative number. Any negative number will do, but we choose a small (magnitude) value that will eliminate the fraction: -2.

Then ...

... f(x) = -2(x +2)(x -1/2)(x -3) = -(x +2)(2x -1)(x -3)

... = -(2x² +3x -2)(x -3)

... = -(2x³ -3x² -11x +6)

... f(x) = -2x³ +3x² +11x -6

2. A graph created by the Desmos on-line graphing calculator is shown, and the zeros are highlighted.

3. As indicated in part 1, the multiplier of this equation can be anything and the zeros will remain the same. You want a negative leading coefficient, so the "anything" is restricted to any of the infinite number of numbers that will make that be the case.

5 0
1 year ago
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