Just off the top of my head . . . it should be fairly easy nowadays to video
the wave as it moves across a tank, or even onto the beach. Take the video
inside, and run it as many times as necessary, even in slo-mo, to measure the
time a wave takes to travel between two widely-separated points. With your
tape measure, measure the real distance between those points, and bada-bing,
you've got the speed of the wave !
(Speed = Distance/Time)
Speed affects a marble by determining how fast it moves across a surface and how quickly it accelerates or decelerates. Motion affects a marble by influencing its direction and trajectory as it rolls or bounces. Both speed and motion are key factors in determining how a marble will interact with its environment.
Assumptions in this experiment may include that the sound source is omnidirectional, that there are no obstructions or reflectors altering the path of the sound waves, and that the environment is acoustically uniform to ensure consistent results in measuring the time intervals between the emitted sound and the corresponding echo.
Then you are determining the object's average acceleration (provided the initial and final speed are in the same direction).
radar
Michelson's experiment is called a null method because it is based on comparing the time it takes for light to travel two different paths that are equal in length. By adjusting one of the paths until no interference pattern is visible, he could determine when the two paths were precisely equal, thereby finding the speed of light indirectly without directly measuring it.
To find out whether the weight of the object changed the speed at which it fell.
Speed affects a marble by determining how fast it moves across a surface and how quickly it accelerates or decelerates. Motion affects a marble by influencing its direction and trajectory as it rolls or bounces. Both speed and motion are key factors in determining how a marble will interact with its environment.
It affects the surface you're running on because depending if its smooth, soft, ruff, you never know. So you need to make a experiment before you can really test it out.
Assumptions in this experiment may include that the sound source is omnidirectional, that there are no obstructions or reflectors altering the path of the sound waves, and that the environment is acoustically uniform to ensure consistent results in measuring the time intervals between the emitted sound and the corresponding echo.
The wind speed and the wave height are two things that must be taken into consideration when determining a safe speed for a boat.
the state of visibility
Tempo markings in music indicate the speed at which a piece should be played. They help musicians understand how fast or slow to perform the music, which affects the overall pacing and feel of the composition.
speed
Some examples:When you are determining safe loads - for lifts, for example.When you are determining safe operating temperatures - for sensitive equipment and for people.When you set speed limits.Some examples:When you are determining safe loads - for lifts, for example.When you are determining safe operating temperatures - for sensitive equipment and for people.When you set speed limits.Some examples:When you are determining safe loads - for lifts, for example.When you are determining safe operating temperatures - for sensitive equipment and for people.When you set speed limits.Some examples:When you are determining safe loads - for lifts, for example.When you are determining safe operating temperatures - for sensitive equipment and for people.When you set speed limits.
Then you are determining the object's average acceleration (provided the initial and final speed are in the same direction).
radar
Distance and Time