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notka56 [123]
2 years ago
9

Two functions are graphed on the coordinate plane. On a coordinate plane, a curved line with an upward arc, labeled g of x, cros

ses the x-axis at (negative 2, 0), and the y-axis at (0, 4). A straight horizontal line, labeled f of x, crosses the y-axis at (0, 4). Which represents where f(x) = g(x)? f(4) = g(4) and f(0) = g(0) f(–4) = g(–4) and f(0) = g(0) f(–4) = g(–2) and f(4) = g(4) f(0) = g(–4) and f(4) = g(–2)

Mathematics
2 answers:
slega [8]2 years ago
8 0

Answer:

second option on edge 2020

Step-by-step explanation:

n200080 [17]2 years ago
5 0

Answer:

(B) f(-4)=g(-4) and  f(0)=g(0)

Step-by-step explanation:

From the given graph, the lines f(x) and g(x) intersects at two different points.

  • When x=-4, f(-4)=4 and g(-4)=4
  • When x=0, f(0)=4 and g(0)=4

Therefore, the points which represent where f(x)=g(x) are:

  • f(-4)=g(-4); and
  • f(0)=g(0)

The correct option is B.

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Answer:

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Step-by-step explanation:

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* A is the amplitude  

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- The period is the distance from one peak to the next peak

* Lets look to the graph

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∵ The height from the maximum point to the minimum point is

   3 - (-3) = 3 + 3 = 6

∴ The amplitude is 6/2 = 3

∵ A is the amplitude

∴ A = 3

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∵ The period is the distance from one peak to the next peak

∴ The period = π/2

∵ The period = 2π/B

∴ 2π/B = π/2 ⇒ divide both sides by π

∴ 2/B = 1/2 ⇒ by using cross multiplication

∴ B = 4

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* The function of the graph is y = 3 cos (4x)

4 0
2 years ago
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Answer:

Option C

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Step-by-step explanation:

The restrictions that we have are:

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Now, to arrange them in rows of equal numbers, we should find a common factor between 18 and 24. (particularly, we want to find the largest common factor between 18 and 24).

Now, to find common factors we first take the smaller number, and we divide it by different numbers, starting by 2 (we want to divide by small numbers, so the result will be the largest factor)

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Then each row will have 6 candy.

And we will have:

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You will drop the bottle/water mass so that it hits the lever at different speeds. Since an object in free fall is accelerated b
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Step-by-step explanation:

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