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As Shown in the Figure, a Uniform Rectangular Crate 0 h=0.69 mh = 0.69 \mathrm {~m}

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As shown in the figure, a uniform rectangular crate 0.40 m wide and 1.0 m tall sits on a horizontal surface. The crate weighs 460 N, and its center of gravity is at its geometric center. A horizontal force of magnitude F is applied at a distance h above the floor. Friction at the floor is great enough to prevent the crate from sliding. If h=0.69 mh = 0.69 \mathrm {~m} what minimum value of F is required to make the crate start to tip over?  As shown in the figure, a uniform rectangular crate 0.40 m wide and 1.0 m tall sits on a horizontal surface. The crate weighs 460 N, and its center of gravity is at its geometric center. A horizontal force of magnitude F is applied at a distance h above the floor. Friction at the floor is great enough to prevent the crate from sliding. If  h = 0.69 \mathrm {~m}  what minimum value of F is required to make the crate start to tip over?

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