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maw [93]
4 years ago
12

Nevin made tables of values to approximate the solution to a system of equations. First he found that the x-value of the solutio

n was between one and two, and then he found that it was between one and 1.5 next, he made his table.

Mathematics
2 answers:
prisoha [69]4 years ago
7 0

Answer:

The correct option is B.

Step-by-step explanation:

The given equation are

y=4x-3

y=-5x+9

On solving both the equation, we get

4x-3=-5x+9

4x+5x=9+3

9x=12

9x=\frac{12}{9}=\frac{4}{3}

Put this value in the given equation.

y=4(\frac{4}{3})-3

y=\frac{16}{3}-3

y=\frac{16-9}{3}

y=\frac{7}{3}

The solution of the given system of equation is

(\frac{4}{3},\frac{7}{3})=(1.333,2.333)\approx (1.3,2.3)

The best approximation of the exact solution is (1.3,2.3). Therefore the correct option is B.

Leokris [45]4 years ago
6 0

Answer:

B. (1.3, 2.3)

Step-by-step explanation:

To find approximate solution of the system of equations, we need to equivate the two given equations and solve for x and y.

y = 4x - 3 and y = -5x + 9

4x - 3 = -5x + 9

Isolating the variables and constants, we get

4x + 5x = 9 + 3

9x = 12

Dividing both sides by 9, we get

x = 12 ÷ 9

x = \frac{4}{3}

x = 1.3

Now plug in x =  \frac{4}{3} in the equation y = 4x - 3 to find the value of y.

y = 4( \frac{4}{3})  - 3

y = \frac{16}{3} - 3

y =  \frac{16 - 9}{3}

y =  \frac{7}{3}

y = 2.3

So, x = 1.3 and y = 2.3 is the approximate solution.

Therefore, answer is B. (1.3, 2.3)

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