Prove that the motion of a displaced lipuid in a U-shaped tube is a S.H.M
Simple harmonic motion is a type of periodic motion where the restoring force is directly proportional to the displacement from equilibrium and acts in the opposite direction. In the case of a mass attached to a spring, the motion is simple harmonic because the restoring force (provided by the spring) is directly proportional to the displacement from equilibrium (Hooke's Law) and acts in the opposite direction to the displacement, resulting in a sinusoidal motion.
Submerse the object in a completely full bucket. measure the volume of the displaced water due to the object. Multiply the volume of the displaced water by the density of the object to give mass.
Clue: 528/440 = 1.2 = 6/5. The wavelengths of the partials (harmonics) of an open pipe are in the proportions 1/1 fundamental 1/2 1st harmonic 1/3 2nd harmonic 1/4 3rd harmonic etc. I'm betting your pipe sounds an F, one of the lowest notes that most male voices can reach. Can you prove it mathematically?
You can determine if you are in motion by observing changes in your position relative to a fixed point. If you are moving with respect to that fixed point, you are in motion. You can also use a GPS device or accelerometer to measure speed and acceleration, which can confirm whether or not you are in motion.
Newton prove gravity by means of an apple falling on his head
Simple harmonic motion is a type of periodic motion where the restoring force is directly proportional to the displacement from equilibrium and acts in the opposite direction. In the case of a mass attached to a spring, the motion is simple harmonic because the restoring force (provided by the spring) is directly proportional to the displacement from equilibrium (Hooke's Law) and acts in the opposite direction to the displacement, resulting in a sinusoidal motion.
Gravatation and the 3 laws of motion
Submerse the object in a completely full bucket. measure the volume of the displaced water due to the object. Multiply the volume of the displaced water by the density of the object to give mass.
pluto
Galileo explained the backwatds motion of the planets
it is used to prove the fact that light is rectilinear in motion
Clue: 528/440 = 1.2 = 6/5. The wavelengths of the partials (harmonics) of an open pipe are in the proportions 1/1 fundamental 1/2 1st harmonic 1/3 2nd harmonic 1/4 3rd harmonic etc. I'm betting your pipe sounds an F, one of the lowest notes that most male voices can reach. Can you prove it mathematically?
It means the person who filed the motion did not appear at the hearing to prove their charges/case, and therefore the motion was dismissed either with or without prejudice.
If the motion has stopped before you arrive to investigate the object, then it would be pretty hard to tell. The only way to infer previous motion might be if you had seen it before, and when you return, it's no longer where you left it.
In theory, yes, but how you would define, leave alone measure or prove it, I struggle to imagine.
You can determine if you are in motion by observing changes in your position relative to a fixed point. If you are moving with respect to that fixed point, you are in motion. You can also use a GPS device or accelerometer to measure speed and acceleration, which can confirm whether or not you are in motion.
Build a very large pendulum and set it in motion. Then observe, think and explain what you observe over the course of a day.