The time required for one cycle to return to its starting point is called the period of the cycle.
Assuming no air resistance, the time it takes for the projectile to return to its starting point is twice the time it takes to reach the highest point of its trajectory. The time to reach the highest point can be calculated using the equation: time = initial velocity / acceleration due to gravity. Therefore, the total time for the projectile to return would be around 6 seconds.
If you travel at the light speed, I think you will return to the starting point three weeks before the starting time, so becoming three weeks younger.
no one really knows at this point in time.
yes
Anaheim IS in LA so the time is determined by your starting point and the time of day you leave. So, your question can not be answered. If you gave a starting point and the time you were leaving there could be a more accurate answer.
It is Greenwich mean time.
To find the starting point of a distance vs time graph from a velocity vs time graph and a function, you would integrate the velocity function to find the displacement function. The starting point of the distance vs time graph corresponds to the initial displacement obtained from the displaced function.
Greenwich is an observatory in London England, assigned as the "starting point" for the time zones.
A float plan is filed to inform someone responsible of your expected route, destination, and return time when embarking on a boating trip. This helps in search and rescue efforts if you do not return as planned.
From Where? What is your starting point? We are do not know what is your starting point, so we can Not tell you how far it is to drive to Calgary. I am sorry, but, without a starting point, we are unable to tell how far the driving distance is to Calgary. You could be anywhere on the planet Earth. Ask the question again, and Next time give your starting point and your ending driving destination (Calgary).
monday,april 21st,2008 in hoptikin