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agasfer [191]
3 years ago
12

Urgent please

Mathematics
1 answer:
NikAS [45]3 years ago
8 0

Let's assume number of vibrations in a piano strings be v and length is l.

Given that, A wire 1.25m long vibrates at 510 vibrations/second.

So, l = 1.25 and v = 510.

The number of vibrations in a piano string are inversely proportional to its length. So, we can set up an equation as following:

l*v = k

1.25 * 510 = k

637.5 = k

Therefore, the equation will be l*v =637.5.

Now we need to find the length of wire: l for the vibration: v = 450.

So, plug in v=450 in the above equation to get the value of l. Therefore,

l * 450 = 637.5

\frac{l*450}{450} =\frac{637.5}{450}

l = 1.4167

l = 1.42 ( Rounded to hundredth).

So, length of wire is 1.42 m long.

Hope it's help you !

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puteri [66]

Answer:

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Step-by-step explanation:

Let l = the original length of the original rectangle

Let w = the original width of the original rectangle

From the description of the problem, we can construct the following two equations

l=2*w (Equation #1)

(l+4)*(w+4)=l*w+88 (Equation #2)

Substitute equation #1 into equation #2

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collect like terms on the same side of the equation

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4w^2+12w-72=0

Since 4 is afactor of each term, divide both sides of the equation by 4

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The quadratic equation can be factored into (w+6)*(w-3)=0

Therefore w=-6 or w=3

w=-6 can be rejected because the length of a rectangle can't be negative so

w=3 and from equation #1 l=2*w=2*3=6

I hope that this helps. The difficult part of the problem probably was to construct equation #1 and to factor the equation after performing all of the arithmetic operations.

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