Final answer:
The work done on the crate by friction is 650.56 J. The temperature change of the fruit is 0.005 K.
Step-by-step explanation:
First, let's find the work done by friction:
The work done by friction is given by the equation:
Work = force of friction * distance
To find the force of friction, we need to use the formula:
Force of friction = coefficient of friction * normal force
The normal force can be found using the equation:
Normal force = mass * gravitational acceleration * cos(angle)
Plugging in the given values:
Normal force = 35.0 kg * 9.8 m/s^2 * cos(36.8 degrees) = 271.06 N
The force of friction can be found using the formula:
Force of friction = coefficient of friction * normal force
Since the crate is sliding down the incline, the frictional force will oppose its motion and act in the opposite direction. Therefore, the frictional force will be:
Force of friction = coefficient of friction * normal force = 0.300 * 271.06 N = 81.32 N
Now, we can calculate the work done by friction:
Work = force of friction * distance = 81.32 N * 8.00 m = 650.56 J
Therefore, the work done on the crate by friction is 650.56 J.
To find the temperature change of the fruit, we need to use the equation:
Heat = mass * specific heat capacity * temperature change
Since the amount of heat is equal to the work done by friction, we can equate the two equations:
Work = Heat = mass * specific heat capacity * temperature change
Plugging in the given values:
650.56 J = 35.0 kg * 3650 J/kgK * temperature change
Solving for temperature change:
temperature change = 650.56 J / (35.0 kg * 3650 J/kgK) = 0.005 K
Therefore, the temperature change of the fruit is 0.005 K.