A daredevil is going to ride her rocket-powered motorcycle through a circular loop-the- loop which has a 3.0 meter radius. She has 50.0 meters to get up to speed before going into the loop. Assuming there is no friction or air resistance, what maximum force must be applied to the motorcycle over the 50.0 m in order for her to make it through the loop without losing consciousness? Most humans can experience accelerations up to 3g before losing consciousness. Assume the combined mass of the rider and motorcycle is 250 kg. I keep getting 367N but the study guide says 510 N (rounded from 514.5 N)
A daredevil is going to ride her rocket-powered motorcycle through a circular loop-the- loop which has a 3.0 meter radius. She has 50.0 meters to get up to speed before going into the loop. Assuming there is no friction or air resistance, what maximum force must be applied to the motorcycle over the 50.0 m in order for her to make it through the loop without losing consciousness? Most humans can experience accelerations up to 3g before losing consciousness. Assume the combined mass of the rider and motorcycle is 250 kg. I keep getting 367N but the study guide says 510 N (rounded from 514.5 N)
Related questions
Question
A daredevil is going to ride her rocket-powered motorcycle through a circular loop-the- loop which has a 3.0 meter radius. She has 50.0 meters to get up to speed before going into the loop. Assuming there is no friction or air resistance, what maximum force must be applied to the motorcycle over the 50.0 m in order for her to make it through the loop without losing consciousness? Most humans can experience accelerations up to 3g before losing consciousness. Assume the combined mass of the rider and motorcycle is 250 kg. I keep getting 367N but the study guide says 510 N (rounded from 514.5 N)
Expert Solution
This question has been solved!
Explore an expertly crafted, step-by-step solution for a thorough understanding of key concepts.
This is a popular solution!
Trending now
This is a popular solution!
Step by step
Solved in 4 steps