1. A train traveling at a constant speed of 26.8 m/s rounds a curve of radius...
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1. A train traveling at a constant speed of 26.8 m/s rounds a curve of radius 255 m. A chandelier suspended from the ceiling swings out an angle 0 from the vertical throughout the turn. a. Draw the free body diagram for the chandelier. Break any vectors that do not lie on axis' into their components. b. C. e. Write a sum of forces equation for the vertical direction. Explain why you have chosen to apply either the 1st or 2nd law. d. Combine the equations to establish an equation that can be used to calculate the angle the chandelier swings. Write a sum of forces equation for the horizontal direction. Explain why you have chosen to apply either the 1st or 2nd law. C. Calculate 0 2. The second hand on a wall clock is 11.5 cm long. a. What is the period of motion in seconds? b. What is the velocity of the tip of the second hand in m/s? What is the acceleration of the tip of the second hand in m/s? 1. A train traveling at a constant speed of 26.8 m/s rounds a curve of radius 255 m. A chandelier suspended from the ceiling swings out an angle 0 from the vertical throughout the turn. a. Draw the free body diagram for the chandelier. Break any vectors that do not lie on axis' into their components. b. C. e. Write a sum of forces equation for the vertical direction. Explain why you have chosen to apply either the 1st or 2nd law. d. Combine the equations to establish an equation that can be used to calculate the angle the chandelier swings. Write a sum of forces equation for the horizontal direction. Explain why you have chosen to apply either the 1st or 2nd law. C. Calculate 0 2. The second hand on a wall clock is 11.5 cm long. a. What is the period of motion in seconds? b. What is the velocity of the tip of the second hand in m/s? What is the acceleration of the tip of the second hand in m/s?
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It seems like you are working on a set of physics problems related to circular motion and simple harmonic motion Lets tackle each part stepbystep Problem 1 involves a train moving in a circular path a... View the full answer
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Fundamentals of Ethics for Scientists and Engineers
ISBN: 978-0195134889
1st Edition
Authors: Edmund G. Seebauer, Robert L. Barry
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