Spinning Carnival Ride Floor Drops Out

10 years ago.
Spinning carnival ride floor drops out. T 1 f so t period 1. Made with tempo this was a spinning carnival ride. Background music is anchored. I dont think they make them anymore.
But on the gravatron the floor doesnt drop. The ride still appears in numerous amusement parks although travelling variants have been surpassed by the gravitron. In a rotor ride at a carnival people are rotated in a cylindrically walled room see fig. Basically you get into a big tube that spins around.
The rotor is an amusement park ride designed by german engineer ernst hoffmeister in the late 1940s. The ride was first demonstrated at oktoberfest 1949 citation needed and was exhibited at fairs and events throughout europe during the 1950s and 1960s. The floor drops away and you are stuck there. B if the coefficient of friction is 0 40 and the cylinder has a radius of 2 5 m what is the minimum angular speed.
This sticks you to the wall. 5 35 the room radius is 4 7 m and the rotation frequency is 0 5 revolutions per second when the floor drops out. Spinning around in an amusement ride designed to make you puke. Flat rides are usually considered to be those that move their passengers in a plane generally parallel to the ground such as rides that spin around a vertical axis like carousels and twists and ground level rides such as bumper cars and the whip.
Once the cylinder is spinning fast enough the floor drops out. The rotor is an amusement park ride where people stand against the inside of a cylinder. What is the amusement ride called that spins the floor drops and people stick to the wall. Magic mountains was called spin out.
That is the prototype name but the actual ride name varies park to park. What is the minimum coefficient of static friction so that the people will not slip down my work so far.