You divide a change in velocity by the time it takes for that change.
Acceleration can be found by dividing the change in velocity by the time it took to change. The formula for acceleration is acceleration = (final velocity - initial velocity) / time. Alternatively, acceleration can be found by using the equation acceleration = force / mass, according to Newton's second law of motion.
Acceleration can be found by dividing the change in velocity by the time taken for that change to occur. It is a measure of how quickly the velocity of an object is changing over time. Mathematically, acceleration can be calculated as the derivative of velocity with respect to time.
Acceleration can be found by computing the slope of a velocity vs. time graph. Acceleration is the rate of change of velocity over time, so the slope of a velocity vs. time graph represents this change in velocity.
The speed at the end of the time is (speed at the beginning of the time) plus (acceleration x length of time)
To calculate acceleration, you need to know the initial velocity of the car and its final velocity after 6.8 seconds. The acceleration can be found using the formula: acceleration = (final velocity - initial velocity) / time.
average acceleration is the average of the acceleration of a body in its entire motion where as instantaneous acceleration is the rate of change of velocity at an instant. it may be a function of time or velocity or displacement.
If the mass and acceleration of the volleyball are known, the force acting on it can be found using the above equation.
You divide a change in velocity by the time it takes for that change.
The average acceleration can be obtained by finding the slope of the graph. The instantaneous acceleration is found by drawing a tangent to a particular point on the graph (instant) and finding the slope of than tangent.
Because that's how it was found to calculate it.
The Moon's acceleration can be calculated using Newton's second law of motion, which states that force equals mass times acceleration (F = ma). By knowing the mass of the Moon and the force acting on it (such as the gravitational force from Earth), you can calculate its acceleration. It is found to be approximately 0.0027 m/s^2.
The acceleration of the object can be calculated using Newton's second law, which states that force is equal to mass times acceleration (F = ma). In this case, acceleration (a) can be found by dividing the force (12 N) by the mass (2 kg). Therefore, the acceleration of the object would be 6 m/s^2.