Answer:
Kinetic energy, K = 14.97 J
Explanation:
We have,
Mass of the object, m = 5.2 kg
Velocity of the object, v = 2.4 m/s
It is required to find the kinetic energy of the object. As it is moving with some velocity, it will have kinetic energy. It is given by :

So, the kinetic energy of the object is 14.97 J.
Answer:
The Earth's surfaces changes in slow processes, erosion and weathering, and some changes are due to rapid processes, such as: landslides, volcanic eruptions, tsunamis and earthquakes.
Explanation:
Answer:
C. Overcome Friction
Explanation:
When using any machine usually those with moving parts, you may notice heat forming near the areas where most movement occurs. As friction continues, more energy is used up and released as heat. For that reason, the efficiency of a machine will forever be less than 100%
Answer:
C. Mass is independent of the force acting on the mass.
Weight depends on the gravitational force acting on the mass.
Example: A mass of 1 kg on the earth still has a mass of 1 kg on the moon;
whereas the weight of that mass on earth is 9.8 N and only 1/6 of that amount on the moon.
Answer:
Second Newton's law
Explanation:
Second Newton's law states that the acceleration of an object is related to the mass of an object and the force applied to it by:

where
F is the net force applied to an object
m is the mass of the object
a is the acceleration
The equation can be rewritten also as
(1)
we see that the acceleration is directly proportional to the force applied, F, and inversely proportional to the mass of the object, m.
In this problem, the force applied to the two objects (refrigerator and dumbbell) is the same, so we must look at their mass. Their mass can be found starting from their weight, which we know:
- refrigerator: 
- dumbbell: 
The dumbbell has a smaller mass, therefore by looking at formula (1), we can see that it will have more acceleration, and this is why it will move faster.