rected 26 degrees below the horizon. The stationary (not moving) sled has a mass of 175 kg and the coefficient of static friction between the ice and the sled is 0.22. You will need to use substitution and elimination to solve this question, similar to what was done in the sled example done in Tutorial last week. You are required to solve for the applied force (FA) needed to just start the bobsled moving and also calculate the frictional force (FF) and normal force (FN) when this applied force is being applied to the sled. a) What is the magnitude of the net force acting on the sled in the vertical direction for this particular scenario? b) What is the magnitude of the net force acting on the sled in the horizontal direction for this particular static scenario? c) Determine the magnitude of the applied force (FA) required to just start
rected 26 degrees below the horizon. The stationary (not moving) sled has a mass of 175 kg and the coefficient of static friction between the ice and the sled is 0.22. You will need to use substitution and elimination to solve this question, similar to what was done in the sled example done in Tutorial last week. You are required to solve for the applied force (FA) needed to just start the bobsled moving and also calculate the frictional force (FF) and normal force (FN) when this applied force is being applied to the sled.
b) What is the magnitude of the net force acting on the sled in the horizontal direction for this particular static scenario?
c) Determine the magnitude of the applied force (FA) required to just start the sled moving
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