Here is another example of Newton's Second Law. A cart rests on a horizontal frictionless surface....
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Here is another example of Newton's Second Law. A cart rests on a horizontal frictionless surface. It is attached to a hanging mass with a string that rides on a frictionless pulley. Once this system is released, it will accelerate according to Newton's Second Law. The only force on the system is caused by the weight of the hanging mass (m). Fys mig cart Hanging mass This system force is applied to the whole system which is the hanging mass, mi, and the cart, m2. We can now predict the acceleration of the system by dividing the system force by the summation of the system masses. Fays Mays Fyys 1) The mass of the cart is 2kg while the hanging mass is 1.3kg. Determine a) the system force, b) the system mass, and c) the acceleration of the system. 2) The masses from problem one are now switched. The cart now has a mass of 1.3kg and the hanging mass is now 2kg. Determine a) the system force, b) the system mass, and c) the acceleration of the system. How does the acceleration compare to problem one? Here is another example of Newton's Second Law. A cart rests on a horizontal frictionless surface. It is attached to a hanging mass with a string that rides on a frictionless pulley. Once this system is released, it will accelerate according to Newton's Second Law. The only force on the system is caused by the weight of the hanging mass (m). Fys mig cart Hanging mass This system force is applied to the whole system which is the hanging mass, mi, and the cart, m2. We can now predict the acceleration of the system by dividing the system force by the summation of the system masses. Fays Mays Fyys 1) The mass of the cart is 2kg while the hanging mass is 1.3kg. Determine a) the system force, b) the system mass, and c) the acceleration of the system. 2) The masses from problem one are now switched. The cart now has a mass of 1.3kg and the hanging mass is now 2kg. Determine a) the system force, b) the system mass, and c) the acceleration of the system. How does the acceleration compare to problem one?
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Smith and Roberson Business Law
ISBN: 978-0538473637
15th Edition
Authors: Richard A. Mann, Barry S. Roberts
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