In both cases, just divide the distance by the time.
When thermal energy is transferred to an object, the average kinetic energy of the object's particles increases, leading to higher movement and vibration of the particles. This results in an overall increase in the average kinetic energy of the object.
To calculate the average angular velocity of an object, you divide the change in angle by the change in time. This gives you the average rate at which the object is rotating over a specific period.
The average of all kinetic energies of an object is its kinetic energy. This is the energy an object possesses due to its motion. It is directly proportional to the mass and the square of the velocity of the object.
Yes, that is correct. The average speed of an object is calculated by dividing the total distance traveled by the object by the time it takes to cover that distance. This gives you a measure of how fast the object is moving on average.
Temperature is a measure of the average translational kinetic energy per molecule in an object. It represents the average energy of motion of individual molecules within the object.
Speed = distance/time interval = 50m/25min = 2m/min
The temperature of an object is the most common measure of the average kinetic energy of the object.
It is: 1 hour and 51 minutes or 1.85 hours
The average size of an object depends on what the object is. The average size of an American male is 5 foot 9 and 170 pounds.
The average kinetic energy of particles in an object is directly related to the temperature of the object. As temperature increases, the average kinetic energy of the particles also increases. This is because temperature is a measure of the average kinetic energy of the particles in an object.
The average density of an object determines its buoyancy. If the average density of an object is less than the density of the fluid it is in, it will float. If the average density is greater, it will sink. Buoyancy relies on the difference in densities between the object and the fluid.
The average kinetic energy of an object's particles is a measure of the object's temperature. It tells you how fast the particles are moving on average, which is directly related to the object's thermal energy and temperature. The higher the average kinetic energy, the hotter the object is.
The average kinetic energy of all the molecules in an object is the temperature.
When thermal energy is transferred to an object, the average kinetic energy of the object's particles increases, leading to higher movement and vibration of the particles. This results in an overall increase in the average kinetic energy of the object.
To calculate the average angular velocity of an object, you divide the change in angle by the change in time. This gives you the average rate at which the object is rotating over a specific period.
No, it can't. Average VELOCITY can be zero, though.
The average vibration of molecules in an object is typically measured using temperature. Temperature is a measure of the average kinetic energy of the molecules in the object, which is directly related to their vibrational motion. By measuring the temperature of an object, we can infer the average vibrational energy of its molecules.