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Hanger 1: 25 grams at 0 degrees Graph Hanger 2: 35 grams at 90 degrees Force Table Magnitude: 0.51 N Direction: 52.1 degrees Calculation Magnitude:
Hanger 1: 25 grams at 0 degrees Graph Hanger 2: 35 grams at 90 degrees Force Table Magnitude: 0.51 N Direction: 52.1 degrees Calculation Magnitude: 0.49 N Direction: 53.1 degrees Hanger 1: 100 grams at 0 degrees Graph Hanger 2: 50 grams at 90 degrees Force Table Magnitude: Direction: Calculation Magnitude: Direction:Hanger 1: 50 grams at 0 degrees Graph Hanger 2: 100 grams at 90 degrees Force Table Magnitude: Direction: Calculation Magnitude: Direction: If you keep the pulleys in their current position, is it possible to have the resulting force be outside the first quadrant (angles between 0 and 90 degrees)? Explain. How would you adjust the two pulleys so that the sum of the forces is in the fourth quadrant (angles between 270 and 360 degrees)?\f1]]. Adding perpendicular forces In this part of the lab, you are adding two forces, E and E, which are perpendicular. You may assume that E; is in the x direction and E is in the y direction. What is the expression for the magnitude of the resulting force F; + E which we would write as IF; + El? What is the angle of the resulting force, F; + F2"? Similarly to the previous part, you should ll out the table for each set of forces. You should write the experimentally determined values from the force table, the values determined from trigonometry and make a drawing showing the graphical addition of the two forces. The mass given for each hanger is the additional mass that you should add to the hanger. Your drawings must be to scale. Please use 2 cm to correspond to the weight from a 50 gram mass
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