A car starts from rest, and accelerates at a uniform rate to a velocity of 40 m/s in 15 secs. If the car is moving In a circular track with a diameter equal to 1.5 mi, and assuming constant tangential acceleration, 1. Determine the car's tangential acceleration at the instant when the velocity is 40 m/s. 2. Determine the car's normal acceleration at the instant when the velocity is 40 m/s. "* 3. What was the car's acceleration?
A car starts from rest, and accelerates at a uniform rate to a velocity of 40 m/s in 15 secs. If the car is moving In a circular track with a diameter equal to 1.5 mi, and assuming constant tangential acceleration, 1. Determine the car's tangential acceleration at the instant when the velocity is 40 m/s. 2. Determine the car's normal acceleration at the instant when the velocity is 40 m/s. "* 3. What was the car's acceleration?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![A car starts from rest, and accelerates at a uniform rate to a velocity of 40 m/s in 15 secs. If the car is moving in a circular
track with a diameter equal to 1.5 mi, and assuming constant tangential acceleration,
1. Determine the car's tangential acceleration at the instant when the velocity is 40 m/s.
2. Determine the car's normal acceleration at the instant when the velocity is 40 m/s. 1
3. What was the car's acceleration?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F1de98a9d-f3dd-4f7c-8ee5-483854281690%2F7317d582-eb5c-4701-9091-aa516cb8bb0e%2F50uwa2_processed.png&w=3840&q=75)
Transcribed Image Text:A car starts from rest, and accelerates at a uniform rate to a velocity of 40 m/s in 15 secs. If the car is moving in a circular
track with a diameter equal to 1.5 mi, and assuming constant tangential acceleration,
1. Determine the car's tangential acceleration at the instant when the velocity is 40 m/s.
2. Determine the car's normal acceleration at the instant when the velocity is 40 m/s. 1
3. What was the car's acceleration?
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