subject
Physics, 14.03.2020 05:27 rdrboo

The rider starts from rest at location at the edge of the in-ramp and goes down the transition. Typically, as the rider approaches the flat at location he will crouch down to get his center of mass as low as possible and thus increase his speed. To simplify the problem, let us initially assume that the rider stays upright as he goes down so that his center of mass location relative to his feet does not change from what it was at location . In the following problems, you can use the foot as the unit length instead of meters. Note: g = 32 ft/s2. Estimate (a) Estimate the maximum speed a rider might have at location . 32 ft/s 32 ft/s Your value is acceptable. (b) For the speed you estimated in part (a), using Conservation of Energy, determine the maximum height the rider can rise up to as he goes up the vert. 16 ft 16 ft Calculations (c) For the rest of this problem consider just the motion of the center of mass of the rider. Consider a standard half-pipe with h = 13 ft with a 4 ft vert. Consider a 5.5 ft person whose center of mass is at his midheight. He starts from rest at location . What is his speed v2 at location if he does not crouch (his center of mass is at the same height relative to his feet)? (d) Based on your answer in part (c) above, how high (what is the location of his center of mass relative to location ) will he go up the vert on the other side? (e) If he wishes to go up beyond the edge of the vert, he will need to have greater kinetic energy when he is at location . To do this, the rider will pump as he goes back and forth on the half-pipe several times (he will crouch down as he approaches the flat to lower his center of mass) to further decrease his potential energy then spring back up to convert his internal muscular energy to kinetic energy. Suppose the rider in this case wishes to rise above the edge of the vert so that the change in his center of mass position is 20 ft relative to the flat section of the pipe (location ), what speed does he need to have when he is at location ? (f) In solving this problem we have made certain assumptions and approximations. Which of the following statements is true?i. The rider will start rotating as he approaches the highest point above the vert but this does not appreciably affect the mechanical energy of the rider. ii. The rider and his skateboard are considered to be one object. iii. You are correct in assuming that the rider's moment of inertia does not change. iv. It is assumed that the rider has only translational kinetic energy and potential energy

ansver
Answers: 2

Another question on Physics

question
Physics, 21.06.2019 23:30
What are chlorofluorocarbons and what impact do they have on the atmosphere?
Answers: 1
question
Physics, 22.06.2019 03:50
The force acting on a beam was measured under the same operating conditions and a sample of 5 data points was collected. this process was repeated by 3 observers. the pooled standard deviations of these 3 data sets was 1.21. determine the true mean force using all pooled data (with a 95% probability). the result should look like this: true mean = mean +/- margin of error
Answers: 1
question
Physics, 22.06.2019 05:20
Very large accelerations can injure the body, especially if they last for a considerable length of time. one model used to gauge the likelihood of injury is the severity index ( ), defined as =/ . in the expression, is the duration of the accleration, but is not equal to the acceleration. rather, is a dimensionless constant that = the number of multiples of that the acceleration is equal to.in one set of studies of rear-end collisions, a person's velocity increases by 13.7 km/h with an acceleration of 36.0 m/s2 . let the + direction point in the direction the car is traveling. what is the severity index for the collision?
Answers: 1
question
Physics, 22.06.2019 08:40
Apulley system is used to lift a 2,000 newton engine up a distance of 3 meters. the operator must apply a force of 250 newtons to the chain of the pulley system to lift the motor. to lift the engine 3 meters, the operator must pull a total of 30 meters of chain through the pulley system. what is the value of di?
Answers: 1
You know the right answer?
The rider starts from rest at location at the edge of the in-ramp and goes down the transition. Typi...
Questions
question
Geography, 26.06.2019 12:10
Questions on the website: 13722361