38 draw a free-body diagram of the crate a.
Part B: Draw a free-body diagram for the girder. Draw the vectors starting at the black dots. The location and orientation of the vectors will be graded. The length of the vectors will not be graded. Vectors Given: F gravity, F tension (C on G) You must draw your own free body diagram no diagram is given. 2.2 Free-Body Diagram: Object Modeled as a Rigid Body The equilibrium equations (1.2) and (1.3) are used to determine unknown forces and moments acting on an object (modeled as a rigid body) in equilibrium. The first step in doing this is again to draw the free-body diagram of the object to identify all of the external forces and moments ... A 20 N crate is held at rest on an incline by a rope that is parallel to the incline as shown on the figure to the right. The incline is 30° above the horizontal. The coefficient of static friction, μs, between the crate and the incline is 0.35. a) Draw a free body diagram for the crate. Draw a free-body diagram of the crate a.