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soldier1979 [14.2K]
4 years ago
7

Which of the following sets of ordered pairs is not a direct variation?

Mathematics
2 answers:
Alecsey [184]4 years ago
4 0

Answer:

  (0, 0); (1, 3); (2, 4)

Step-by-step explanation:

The above-listed points are not on a line with constant slope, so do not represent direct variation.

polet [3.4K]4 years ago
3 0

Answer:

The last choice is not direct variation.

Step-by-step explanation:

Direct variation can be written as y = kx where k is a constant.

The ordered pairs are values of (x, y).

Thus  the first set is direct variation and the rule is

y = -2x.

We see  by substitution that this is the rule:

0 =-2*0 = 0

4 = -2*-2 = 4.

-6 = -2*3 = -6.

We see that, in each case, y/x = -2.

The last set is not direct variation as

y/x = 3/1 = 3 but 4/2 = 2.

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kykrilka [37]

The solution of the equation is x = -4/3.

<h3>What does it mean to solve an equation?</h3>

An equation represents equality of two or more mathematical expression.

Solutions to an equation are those values of the variables involved in that equation for which the equation is true.

WE have been given an equation as;

|x - 4| = 5x + 12

In an absolute value equation, we solve the original expression as our first equation. Our second one is that we multiply the right side by -1.

Case 1: original equation

|x - 4| = 5x + 12

x - 4 = 5x + 12

x - 5x = 12 + 4

-4x = 16

x = -4

Case 2: Opposite equation

|x - 4| = 5x + 12

x - 4 = - (5x + 12)

x - 4 = - 5x - 12

x + 5x = -12 + 4

6x = -8

x = -4/3

Now we have two solutions. We need to check for extraneous solutions because of all the manipulations;

Check:

|x - 4| = 5x + 12

use x = -4

|-4 - 4| = 5(-4) + 12

| -8 | = -20 + 12

8 = -8              

Thus, it is Not a solution

Now,  |x - 4| = 5x + 12

use x =  -4/3

| -4/3 - 4| = 5( -4/3) + 12

|-16/3 | = -20/3 + 12

|-16/3 | = 16/3

16/3 = 16/3

Thus, it is the  Solution.

Learn more about solving equations here:

brainly.com/question/18015090

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laila [671]

Answer:

4a) 110 square centimetres

4b) 127 square centimetres

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Step-by-step explanation:

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The number of tiles that are needed is the area of the floor divided by the area of each tile:

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