Question: THIS IS ALL THE DATA PROVIDED NO ADDITIONAL DOCUMENTS ARE PROVIDED Please do it as instructed as its my physics 12 lab which is around

THIS IS ALL THE DATA PROVIDED NO ADDITIONAL DOCUMENTS ARE PROVIDED

Please do it as instructed as its my physics 12 lab which is around 10% of my course please make sure its done neatly ,carefully and correctly. Additionally please make graph on a graph paper . Sorry for inconvenience, thank you in advance :)

this is the final question i dont have any material

THIS IS ALL THE DATA PROVIDED NO ADDITIONAL DOCUMENTS ARE PROVIDEDPlease doit as instructed as its my physics 12 lab which is around10% of my course please make sure its done neatly ,carefully andcorrectly. Additionally please make graph on a graph paper . Sorry for

Content Connections Torque and Static Equilibrium In this activity, you will need to apply the rules for rotational equilibrium to determine the mass of an unknown object that hangs from a parallel, stationary meter stick of negligible weight. Each of the arrangements that follow involve an experiment with a meter stick beam displaying 5.0 em increments, attached by a hinge to a wall. At various positions, one or more weights are hung from the beam, with a cable placed in such a way as to support the beam and keep it horizontal. In particular for each arrangement: - the cable is pulled upward at an angle #relative to the beam; - a Newton spring scale is attached to the cable so that its tension force F at the specific location can be measured; - both the angle and tension force are recorded in a table; - the process is repeated for a total of six different cable angles. There are three arrangements in total. For each one, your task is as follows: 1. Complete the table by a) calculating and recording sinf? for each of the measured angles; b) taking the inverse of these values and recording in the column 1/sin. 2. On grid paper, plot a graph of Force vs. 1/sin#, making sure to correctly label each axis. Using a ruler, draw a best-fit straight line through the plotted points. 3. Show work in determining the slope of vour line drawn, and write out the equation for this graph. 4. Using the hinge as a pivot, calculate the counter-clockwise torque acting on the beam due to the cable position shown in the diagram. Show work. 5. With the beam in rotational equilibrium, show work in determining the value of the unknown mass, based on its position in the diagram. Once done, be sure to include the plotted graphs with your submission. Note that marks will be deducted for incomplete and/or messy work. Content Connections Arrangement 1 Slope calculation: Equation: Counter-clockwise torque calculation: Calculation of mass m;: Content Connections Arrangement 2 Slope calculation: Equation: Counter-clockwise torque calculation: Calculation of mass ms: O Content Connections Arrangement 3 L m3 1.5 kg Angle 0(9) Force F (N) sing 1/sine 21 95 25 80 33 62 40 53 48 46 56 41 Slope calculation: Equation: Counter-clockwise torque calculation: Calculation of mass m3

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