Oh, dude, let's break out the old math skills for this one. So, if a rocket moves 32 km in 4 seconds, we just divide the distance by the time to get the speed. That's like 32 divided by 4, which equals 8 km per second. So, the rocket is zooming along at 8 kilometers per second.
that it would been
320 meters
Power output is calculated by dividing the work done by the time taken to do that work. In this case, work done is equal to force multiplied by distance, which is mass multiplied by acceleration due to gravity multiplied by distance. Given that the person takes 5 seconds to move 10 meters, we can calculate the speed at which they are moving. Once we have the speed, we can determine the power output using the formula for power, which is work done divided by time.
1 hour =3600 seconds=360 x 50/ 1000 =18km/hour
After the nose of the train reaches the platform, it takes some number of seconds for thenose to reach the far end. At that time, the whole train is lined up with the whole platform.Then after that, it takes the same number of seconds again for the caboose to reach the far end,and the train to completely clear the platform.So the total time that there's some overlap between the train and platform is twice the timethe train takes to move the length of the platform, which is also the length of the train.Distance = (speed) x (time)180 meters = (speed) x (9 seconds)speed = (180/9) = 20 meters per second
A rocket moves by expelling high-speed propellant gases through its engine nozzle in one direction, creating an equal and opposite reaction force that propels the rocket in the opposite direction, following Newton's third law of motion. This process is known as thrust generation.
You can't move at the speed of light. Because of the nature of space and time, specifically, time being relative, things get very complicated when you travel near that speed.
The object will move a total distance of 80 meters, which is calculated by multiplying the speed (10 m/s) by the time (8 seconds).
If the force of the engines is constant, then the rocket's acceleration could increase as time goes on because its mass is decreasing ... it's losing the mass of all that fuel that's burning to keep the engines running.
In space, an object will continue to move at a constant speed unless acted upon by an external force. This is known as Newton's first law of motion. Therefore, if you were to travel in space unaided, you would continue moving at a constant speed without slowing down.
Move your arms as if you're running and focus on not moving your hips
If instantaneous speed doesn't change, it means the object is moving at a constant speed at that particular moment. This could happen if the object is moving in a straight line without any acceleration or deceleration.
If an object accelerates in the same direction in which it is moving, its speed will increase. This is because the acceleration is adding to the object's existing velocity in the same direction, causing it to move faster over time.
assume the ant is moving at a constant speed. Then in 60 s, the ant moves (29.4 mm / 72.8 s) * 60 s = 24.23 mm.
A rocket in space can shut off its engines and still keep moving due to the principle of inertia. Once the engines are turned off, the rocket will continue to move forward at a constant velocity unless acted upon by another force, such as gravity or a change in trajectory.
An object can move in a circle at different speeds.
Everything is moving away from everything else at the same speed, so black holes moving is relative to where you are.