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Aloiza [94]
3 years ago
5

To a police investigator, skid marks evidence is extremely important in determining how vehicles moved in a collision. Skid mark

s are the equivalent of fingerprints in a criminal investigation, and just as important. The speed a car was traveling can be calculated using the skid marks made as the car came to a stop. The formula for finding the speed of the vehicle is:
S equals square root of 30 times D times f times n end root

Where:

S = speed in miles per hour
30 = a constant value used in the equation
D = length of the skid marks in feet
f = drag factor for the road surface
n = braking efficiency as a percent

A car skids to a stop, leaving four skid marks with an average length (D) of 60 feet. The road is asphalt. Skid tests reveal a drag factor(f) of 0.75. Since all four wheels were braking, the braking efficiency (n) is 100% or 1.00. To the nearest mile per hour, what was the car’s speed at the time of the accident.


40


34


37


30
Mathematics
1 answer:
gulaghasi [49]3 years ago
8 0

It is given to us that the formula to determine the speed of the car is:

S=\sqrt{30\times D\times f\times n}

where: S = speed in miles per hour

30 = a constant value used in the equation

D = length of the skid marks in feet

f = drag factor for the road surface

n = braking efficiency as a percent

It is also given to us that average length of skid is 60 feet so D=60.

Drag Factor, f=0.75

And Brake efficiency, n=100%=1

Thus, using the given data in the Formula for calculating the speed we get:

S=\sqrt{30\times 60\times 0.75\times 1} =\sqrt{1350}=\sqrt{36.74}  \approx37 miles per hour.

Thus, from the given set of options, the third option which has 37 is the correct option.

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two sides of a parallelogram meet at an angle of 50 degrees. If the length of one side is 3 meters and the length of the other s
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Answer:

The longer diagonal has a length of 7.3 meters.

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Step-by-step explanation:

If one angle of the parallelogram is 50°, another angle is also 50° and the other two angles are the supplement of this angle. so the other three angles are:

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The longer diagonal will be the one opposite to the bigger angle (130°), and this diagonal divides the parallelogram in two triangles.

Using the law of cosines in one of these two triangles, we have:

diagonal^2 = a^2 + b^2 - 2ab*cos(130\°)

diagonal^2 = 3^2 + 5^2 - 2*3*5*(-0.6428)

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So the longer diagonal has a length of 7.3 meters.

To find the angles that this diagonal forms with the sides, we can use the law of sines:

a / sin(A) = b/sin(B)

5 / sin(A) = diagonal / sin(130)

sin(A) = 5 * sin(130) / 7.3

sin(A) = 0.5247

A = 31.65\°

The other angle is B = 50 - 31.65 = 18.35°

Please check the image attached for better comprehension.

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