In an amusement park ride called The Roundup, passengers stand inside a 18.0 m -diameter rotating ring. After the ring has acquired sufficient speed, it tilts into a vertical plane, as shown in ( Figure 1). For help with math skills, you may want to review: Mathematical Expressions Involving Squares For general problem-solving tips and strategies for this topic, you may want to view a Video Tutor Solution of Vertical circle. Figure Rotation axis PELL 1 of 1 Part A Suppose the ring rotates once every 4.80 s. If a rider's mass is 59.0 kg, with how much force does the ring push on her at the top of the ride? Express your answer with the appropriate units. Value Submit μÀ Part B Units ? Units input for part A Previous Answers Request Answer X Incorrect; Try Again; 2 attempts remaining Review your calculations and make sure you round to 3 significant figures in the last step. Review Suppose the ring rotates once every 4.80 s. If a rider's mass is 59.0 kg, with how much force does the ring push on her at the bottom of the ride? Express your answer with the appropriate units.
In an amusement park ride called The Roundup, passengers stand inside a 18.0 m -diameter rotating ring. After the ring has acquired sufficient speed, it tilts into a vertical plane, as shown in ( Figure 1). For help with math skills, you may want to review: Mathematical Expressions Involving Squares For general problem-solving tips and strategies for this topic, you may want to view a Video Tutor Solution of Vertical circle. Figure Rotation axis PELL 1 of 1 Part A Suppose the ring rotates once every 4.80 s. If a rider's mass is 59.0 kg, with how much force does the ring push on her at the top of the ride? Express your answer with the appropriate units. Value Submit μÀ Part B Units ? Units input for part A Previous Answers Request Answer X Incorrect; Try Again; 2 attempts remaining Review your calculations and make sure you round to 3 significant figures in the last step. Review Suppose the ring rotates once every 4.80 s. If a rider's mass is 59.0 kg, with how much force does the ring push on her at the bottom of the ride? Express your answer with the appropriate units.
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Step 1: Know the basic concept:
VIEWStep 2: Know the given quantities:
VIEWStep 3: (a) Find the force exerted by the circle on the person when it is at the top position:
VIEWStep 4: (b) Find the force exerted by the circle on the person when it is at the bottom position:
VIEWStep 5: (c) Find the expression for the longest time period for the top position:
VIEWStep 6: (c) Calculate the longest time period for the top position:
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