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Sveta_85 [38]
3 years ago
9

2(n + 3) - 4 < 6 then graph the solution

Mathematics
1 answer:
musickatia [10]3 years ago
6 0

Answer:

n < 2 (solution is graphed below steps)

Step-by-step explanation:

Step 1: Simplify both sides of the equation.

  • (2)(n) + (2)(3) - 4 < 6
  • 2n + 6 - 4 < 6
  • 2n + 2 < 6

Step 2: Subtract 2 from both sides.

  • 2n + 2 -2
  • 2n < 4

Step 3: Divide both sides by 2.

  • 2n/2 < 4/2
  • n < 2

Therefore, n < 2.

Have a lovely rest of your day/night, and good luck with your assignments! ♡

 ~ ren

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50.8 centimeters is equal to 20 inches. 
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73050

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The correct answer is a right?
svetoff [14.1K]

We can see that a and b are parallel, and c and e are parallel, so the correct option is E.

<h3>Which line must be parallel?</h3>

On the diagram, we can see that the angles in the third quadrant of the intersections between a and c, and the intersections between b and c,  are the same angle.

Then, lines a and b must be parallel.

For the intersections with line d, we can see that this time the angle is on the fourth quadrant, so c and d are not parallel.

Finally, for line e, we can see that the known angle is on the first quadrant.

Notice that the angle on the first quadrant will be equal to the angle on the third quadrant.

So for the intersections of a and e, and b and e, on the third quadrant we have the known angle (the same one as in the intersections of a and c, and a and b).

Then c and e are parallel.

Then A and C are true.

Thus, the correct option is E.

If you want to learn more about parallel lines:

brainly.com/question/24607467

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2 years ago
Answer please! I’ll give Brainlist answer!
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D is equivalent negative times negative is positive and it is just double
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A golfer takes a swing from a hill twenty feet above the cup with an initial upwards velocity of 76 feet per second. How long do
jeka94

Answer:

t = 5 seconds

Step-by-step explanation:

A golfer takes a swing from a hill twenty feet above the cup with an initial upwards velocity of 76 feet per second.

We need to find how long does it take the ball to land on the ground near the cup.

The equation for the path of the ball is given using second equation of kinematics as follows :

-16t^2+76 t+20=0\\\\\text{or}\\\\-4t^2+19t+5=0\\\\-4t^2+20t-t+5=\\\\-4t(t-5)-1(t-5)=0\\\\(t-5)(-4t-1)=0\\\\t=5, t=\dfrac{-1}{4}\ s

Neglecting negative value,

It will take 5 seconds for the ball to land on the ground near the cup.

8 0
3 years ago
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