Speed is equal to the distance traveled divided by the time taken. SPEED = (DIST/Time)
I'd imagine distance/total time=average speed
Average speed is equal to displacement over time, so the formula would be: vavg = (x2 - x1) / (t2 - t1).
Average speed is equal to displacement over time, so the formula would be: vavg = (x2 - x1) / (t2 - t1).
The average speed of an object is calculated by dividing the total distance traveled by the total time taken. Therefore, there is a direct relationship between distance, time, and average speed. If the distance traveled increases while the time taken remains constant, the average speed will increase. Conversely, if the time taken to travel a certain distance increases, the average speed will decrease.
To solve for speed, time, and distance, you can use the relationship defined by the formula: Distance = Speed × Time. If you need to find speed, rearrange the formula to Speed = Distance / Time. Conversely, if you're solving for time, use Time = Distance / Speed. Always ensure that your units are consistent when performing the calculations.
To calculate average speed, you would need the total time taken to cover the distance. If we have the time taken, we can divide the distance traveled by the time taken to get the average speed. Without the time taken, we cannot calculate the average speed in this case.
speed=250m/30s solve it
it is just the same equation for average speed v=d/t, unless the object is accelerating. Then the formula is v(instant) = v(initial) + at.
The Speed Hoff Solve. The Speed Hoff Solve.
Speed= Distance/Time
The relationship between weight and average cycling speed is that generally, a lighter weight can lead to a faster cycling speed. This is because less weight requires less effort to pedal and move forward. However, other factors such as fitness level, bike type, and terrain can also impact cycling speed.
The average speed of a windmill varies depending on the design and location, but generally ranges from 5 to 25 miles per hour. This speed allows the windmill to efficiently generate electricity by turning its rotor blades.