r = d/t, where r is the rate of speed, d is distance, and t is time.
r = 20 km/30 min = 2/3 km/min
The average speed of a particle is the total distance traveled divided by the total time taken. This gives you a measure of the overall speed of the particle throughout its journey.
You need to convert the minutes to seconds. Then, simply divide the distance (meters) by the time in seconds.
The average speed is 1.023 miles per hour.
If the car has an average speed of 65 mph, when it returns to its starting point, it will have a displacement of zero and an average velocity of zero, because velocity has both speed and direction.
The average speed is calculated by dividing the total distance by the total time. In this case, the average speed would be 16 km/hour since 24 km divided by 1.5 hours (90 minutes converted to hours) equals 16 km/hour.
The average speed of a particle is the total distance traveled divided by the total time taken. This gives you a measure of the overall speed of the particle throughout its journey.
The distance, expressed in inches, is(1.2) x (the particle's average speed, in feet per minute) .
Your average speed is 18.67 miles per hour.
On a speed time graph, the distance can be calculated by working out the area underneath the line. To work out the distance travelled between t=0 and t=10 you would need to find these two values and then work out the area on the graph of the shape bound by the line of the particle, the x axis, t=0 and t=10. The average speed of the particle is the distance (calculated above) divided by 10.
If the distance of travel remains constant in every case, then the time required to cover the distance is inversely proportional to the speed of the particle. T = (constant) divided by (speed) or: (Time) x (Speed) = A constant, if the distance under consideration doesn't change. Note: This expression is a good approximation at everyday speeds. It becomes less accurate at speeds where relativistic effects become significant.
Particle speed is not directly related to the distance between particles. The speed of individual particles in a substance is determined by factors like temperature and pressure. However, the average speed of particles in a substance can affect the distance between particles indirectly by influencing the pressure exerted by the substance.
Distance = time * average speed (velocity) Average speed = Distance/time
The distance the particle travels before decaying can be calculated using the equation that relates distance, speed, and time: distance = speed * time. The Lorentz factor should also be taken into account when the particle is moving close to the speed of light. The distance traveled by the particle before decaying would be approximately 29.7 meters.
Average speed = Total distance / Total time
Average speed is calculated by dividing the total distance traveled by the total time taken to travel that distance. The formula for average speed is: average speed = total distance / total time.
"temperature"
Average speed = (distance covered) divided by (time to cover the distance)