Path 2 Path 1 Many amusement parks have rides that make vertical loops like the one shown below. For safety, the cars are attached to the rails in such a way that they cannot fall off. If the car goes over the top at just the right speed, gravity alone will supply the centripetal force. What other force acts and what is its direction if: (a) The car goes over the top at faster than this speed? (b) The car goes over the top at slower than this speed?
Path 2 Path 1 Many amusement parks have rides that make vertical loops like the one shown below. For safety, the cars are attached to the rails in such a way that they cannot fall off. If the car goes over the top at just the right speed, gravity alone will supply the centripetal force. What other force acts and what is its direction if: (a) The car goes over the top at faster than this speed? (b) The car goes over the top at slower than this speed?
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![Path 2
Path 1
Many amusement parks have rides that make
vertical loops like the one shown below. For
safety, the cars are attached to the rails in such
a way that they cannot fall off. If the car goes
over the top at just the right speed, gravity alone
will supply the centripetal force. What other
force acts and what is its direction if:
(a) The car goes over the top at faster than this
speed?
(b) The car goes over the top at slower than this
speed?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb5f0c3fd-6ca2-4af0-a072-e019a7926331%2F68613f09-3d37-497c-8c5e-4379a84c64d9%2Ffglk6jz_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Path 2
Path 1
Many amusement parks have rides that make
vertical loops like the one shown below. For
safety, the cars are attached to the rails in such
a way that they cannot fall off. If the car goes
over the top at just the right speed, gravity alone
will supply the centripetal force. What other
force acts and what is its direction if:
(a) The car goes over the top at faster than this
speed?
(b) The car goes over the top at slower than this
speed?
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