2. Use the link provided in Canvas to view the setup of a meter stick connected...
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2. Use the link provided in Canvas to view the setup of a meter stick connected to a rigid rod at a point 10cm from one end and connected to a wire cable 10cm from the other end. The other end of the wire cable is connected to a force sensor whose readout tells you the tension in the wire cable. A mass is also suspended from the 50cm point on the meter stick. The system is in static equilibrium so the net torque around the pivot point should be zero (ideally). Complete the following steps: a) draw the configuration and write in the values for the angles, masses, and wire tension given in the simulation and indicate which rotational direction you are calling the positive direction b) fill out the table indicating the various torques acting relative to the pivot point where the meter stick is connected to the rod, remembering to include the appropriate directional sign c) indicate below the table if the sum of all individual torques from your table adds up to zero as expected (or if it's at least close enough to call it zero given typical real-world error in doing physical experiments) d) note some of the possible errors and inconsistencies in a real-world physical experiment of this type that could potentially contribute to the sum of torques you calculate not appearing to equal exactly zero as it should. a) 02= Force Sensor 01= M = 114 01=30.4 02=59.6 Fore = 0.77N Massm Pivot point b) Show your calculation work here, then enter the resulting values in the table below: Torque from hanging mass on meter stick (Nm) Torque from gravity acting on meter stick's own mass (Nm) Torque from support wire connected to meter stick (Nm) c) d) 2. Use the link provided in Canvas to view the setup of a meter stick connected to a rigid rod at a point 10cm from one end and connected to a wire cable 10cm from the other end. The other end of the wire cable is connected to a force sensor whose readout tells you the tension in the wire cable. A mass is also suspended from the 50cm point on the meter stick. The system is in static equilibrium so the net torque around the pivot point should be zero (ideally). Complete the following steps: a) draw the configuration and write in the values for the angles, masses, and wire tension given in the simulation and indicate which rotational direction you are calling the positive direction b) fill out the table indicating the various torques acting relative to the pivot point where the meter stick is connected to the rod, remembering to include the appropriate directional sign c) indicate below the table if the sum of all individual torques from your table adds up to zero as expected (or if it's at least close enough to call it zero given typical real-world error in doing physical experiments) d) note some of the possible errors and inconsistencies in a real-world physical experiment of this type that could potentially contribute to the sum of torques you calculate not appearing to equal exactly zero as it should. a) 02= Force Sensor 01= M = 114 01=30.4 02=59.6 Fore = 0.77N Massm Pivot point b) Show your calculation work here, then enter the resulting values in the table below: Torque from hanging mass on meter stick (Nm) Torque from gravity acting on meter stick's own mass (Nm) Torque from support wire connected to meter stick (Nm) c) d)
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