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enyata [817]
2 years ago
3

A 6.5-g iron meteor hits the earth at a speed of 295 m/s. If its kinetic energy is entirely converted to heat in the meteor, by

how much will its temperature rise?
Physics
1 answer:
Vika [28.1K]2 years ago
7 0

Answer:

The temperature rise is 92°.

Explanation:

Given that,

Mass of iron = 6.5 g

Speed = 295 m/s

We know that,

specific heat of iron = 113 cal/Kg C°

1 cal = 4.186 J/kg C°

We need to calculate the temperature

Using formula of kinetic energy

K.E=\dfrac{1}{2}mv^2...(I)

Formula of heat

Q=mc\Delta T....(II)

From equation (I) and (II)

\dfrac{1}{2}mv^2=mc\Delta T

\Delta T=\dfrac{1}{2}\times\dfrac{v^2}{c}

Put the value into the relation

\Delta T=\dfrac{295^2}{2\times473.018}

\Delta T=91.9=92^{\circ} C

Hence, The temperature rise is 92°.

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In the Daytona 500 auto race, a Ford Thunderbird and a Mercedes Benz are moving side by side down a straightaway at 71.0 m/s. Th
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Answer:

The distance between both cars is 990 m

Explanation:

The equations for the position and the velocity of an object moving in a straight line are as follows:

x = x0 + v0 * t + 1/2 * a * t²

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x0 = initial position

v0 = initial speed

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a = acceleration

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First let´s find how much time it takes the driver to come to stop (v = 0).  We will consider the origin of the reference system as the point at which the driver realizes she must stop. Then x0 = 0

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v = v0 + a*t

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-71.0 m/s / t = a

Replacing in the equation for position:

x = v0* t +1/2 * a * t²

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