In today's lab we will study Newton's Second Law. In the diagram below, mass #1 and...
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In today's lab we will study Newton's Second Law. In the diagram below, mass #1 and mass #2 are connected over a near massless, frictionless pulley. Assume the friction between mass #1 and the table is negligible. #1 #2 1. Sketch the graphs of the position versus time and velocity versus time for the cart on the table. Assume the cart starts at the origin, and moves in the positive direction. X V t 2. Draw the free body diagram for each mass, and clearly identify all of the forces present. ● ● 3. Write Newton's second law for each object in the direction of motion. 4. Solve the two equations found above for the acceleration a in terms of m₁, me and g (no FT) 5. Write down the equation you will use to find Tension In today's lab we will study Newton's Second Law. In the diagram below, mass #1 and mass #2 are connected over a near massless, frictionless pulley. Assume the friction between mass #1 and the table is negligible. #1 #2 1. Sketch the graphs of the position versus time and velocity versus time for the cart on the table. Assume the cart starts at the origin, and moves in the positive direction. X V t 2. Draw the free body diagram for each mass, and clearly identify all of the forces present. ● ● 3. Write Newton's second law for each object in the direction of motion. 4. Solve the two equations found above for the acceleration a in terms of m₁, me and g (no FT) 5. Write down the equation you will use to find Tension
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Related Book For
Vector Mechanics for Engineers Statics and Dynamics
ISBN: 978-0073212227
8th Edition
Authors: Ferdinand Beer, E. Russell Johnston, Jr., Elliot Eisenberg, William Clausen, David Mazurek, Phillip Cornwell
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